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Circadian Rhythms & Cardiovascular Health

Circadian rhythms are endogenous ~24-hour timing systems that coordinate sleep-wake cycles, metabolism, endocrine signaling, and cardiovascular physiology. Since the molecular clock machinery was identified, circadian biology has become a major focus of cardiovascular research. Numerous cardiovascular parameters, including heart rate, blood pressure, vascular tone, myocardial metabolism, and cardiac function, exhibit robust daily oscillations. Disruption of circadian rhythmicity has been associated with increased risk of hypertension, arrhythmias, myocardial infarction, atherosclerosis, and heart failure, making circadian regulation an important area in both basic and translational life sciences research[1][2][3].
At the mechanistic level, the core molecular clock is driven by heterodimerization of CLOCK and BMAL1, which activates transcription of Per and Cry genes. Accumulating PER and CRY proteins subsequently inhibit CLOCK/BMAL1 activity, forming the central transcription-translation feedback loop. Additional regulation is provided by REV-ERB and ROR family members that control BMAL1 expression and stabilize circadian oscillations. Cardiomyocyte intrinsic clocks regulate ion-channel expression, heart rate, myocardial metabolism, mitochondrial function, and intracellular signaling pathways. Loss of BMAL1 disrupts circadian homeostasis and contributes to cardiac remodeling, while circadian regulation of SCN5A, KCNH2, HCN4, and other ion-channel genes influences cardiac electrophysiology and rhythm stability[4][5][6][7][8][9].
In disease applications, circadian biology is extensively investigated in hypertension, myocardial infarction, arrhythmias, heart failure, and cardiometabolic disorders. Circadian misalignment caused by shift work, sleep disorders, jet lag, or irregular behavioral schedules is associated with elevated cardiovascular risk. Therapeutic strategies targeting REV-ERB, ROR, BMAL1, and related clock components, together with chronotherapy approaches that optimize treatment timing, are emerging areas in cardiovascular drug discovery. Important knowledge gaps remain, including cell-type-specific clock mechanisms in cardiovascular tissues, limited human validation of molecular findings, and insufficient clinical evidence for circadian-targeted therapies. Future studies integrating molecular clock networks, biomarkers, and precision chronotherapy may improve cardiovascular prevention and treatment strategies[1][2][3][5][10].

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Cat. No. Product Name Information Application Publication
HY-L031 Small Molecule Immuno-Oncology Compound Library
Immuno-Oncology is a type of immunotherapy that has the specific purpose of treating cancer. It works by stimulating our immune system to fight back. Normally, our immune system is able to destroy cancer cells in our body, however sometimes cancer cells can adapt and mutate, effectively hiding from our immune system. This is when tumors can develop and become a threat to our health. Immuno-oncology involves mobilizing lymphocytes to recognize and eliminate cancer cells using the body’s immune system. There are several immuno-oncology treatments available, including Immune cell therapy (CAR-T), monoclonal antibodies (mABs) and checkpoint inhibitors, cytokines and cancer vaccines. MCE Small Molecule Immuno-Oncology Compound Library offers 831 bioactive tumor immunology compounds that target some important checkpoints such as PD1/PD-L1, CXCR, Sting, IDO, TLR, etc. This library is a useful tool for Immuno-oncology research.
88
HY-L078 Gut Microbial Metabolite Library
Accumulating evidence has revealed that intestinal microbiota play an important role in human health and disease, including cardiovascular diseases, inflammatory bowel disease, diabetes, obesity, cancer, and depression, etc. Changes in the composition of gut microbiota associated with disease, referred to as dysbiosis, have been linked to pathologies. Indeed, the gut microbiome functions like an endocrine organ, generating bioactive metabolites which play important roles in human metabolism, health, and disease. Gut microbiome has become a novel therapeutic target for many diseases. Analysis and identification of gut microbial metabolite will contribute to the development of therapeutic methods. In order to meet the need of gut microbiome research, MCE carefully selected a unique collection of 475 gut microbial metabolites. MCE gut microbial metabolite library is a powerful tool for gut microbiome research and gut microbiome -related drug discovery.
85
HY-L123 Human Metabolite Library
Human metabolism is an integral part of cellular function that reflects individual differences in health, disease, diet, and lifestyle. Many health conditions such as obesity, diabetes, hypertension, heart disease, and cancer are associated with abnormal metabolic states. In the pathological state of the human body, metabolic pathways are significantly altered, resulting in aberrant levels of intermediates or end-products that can be viewed as potential diagnostic biomarkers or even therapeutic targets. Therefore, detection, identification and quantification of human metabolites are very important for drug metabolism research in drug development. MCE offers a unique collection of 6,767 human metabolites, including endogenous metabolites and exogenous metabolites, covering multiple structure types, such as lipids, amino acids, nucleic acids, carbohydrates, organic acids, biogenic amines, vitamins,. MCE Human Metabolites Library is a helpful tool for studying the relationship between diseases and metabolism.
85
HY-L046 Anti-Cardiovascular Disease Compound Library
Cardiovascular diseases (CVDs) are a group of disorders of the heart and blood vessels which include coronary heart disease, cerebrovascular disease, peripheral arterial disease, rheumatic heart disease, etc. CVDs are the number 1 cause of death globally. Smoking, unhealthy nutrition, aging population, lack of physical activity, arterial hypertension, or diabetes can promote cardiovascular disease like myocardial infarction or stroke. It is multifactorial and encompasses a multitude of mechanisms, such as eNOS uncoupling, reactive oxygen species formation, chronic inflammatory disorders and abnormal calcium homeostasis. Antioxidant, anti-inflammatory and anti-diabetes agents may reduce the cardiovascular disease risk. MCE supplies a unique collection of 2,468 compounds with confirmed anti-cardiovascular activity. These compounds mainly target metabolic enzyme, membrane transporter, ion channel, inflammation related signaling pathways. MCE Anti-Cardiovascular Disease Compound Library can be used for cardiovascular diseases related research and high throughput and high content screening for new drugs.
84
HY-L094 Food-Sourced Compound Library
The health benefits deriving from the consumption of certain foods have been common knowledge. All foods are made up of chemical substances. Chemicals in foods are largely harmless and often desirable. At present, numerous researchers have been focused on the beneficial role played by certain food components in the close relationship between food intake and health status. For example, polyphenols, a common class of compounds among foods, are well-known antioxidants, which may play a role in the prevention of several diseases including type 2 diabetes, cardiovascular diseases, and some types of cancer. MCE supplies a unique collection of 2,064 compounds from variety of foods. All compounds are with specific food source(s). MCE Food-Sourced Compound Library is the useful tool to discover molecules with pharmaceutical activity from foods.
84
HY-L0093V Chemspace Scaffold derived set
Diversity-based screening continues to be a vital tool for drug discovery. Efficiency and productivity can be improved by using screening libraries that offer maximum diversity whilst retaining drug-like properties. Chemspace Scaffold derived set composes 10,119 compounds, which including 3,373 scaffolds, 3 compounds per each. This library has exceptional coverage of drug-like chemical space.
83
HY-L009M Kinase Inhibitor Library Mini
Kinases is a class of enzymes that adds chemicals called phosphates to other molecules, such as sugars or proteins. Protein phosphorylation serves as a critical regulatory mechanism for numerous cellular processes including cell division, metabolism, and signal transduction, with approximately 50% of cellular functions in humans being regulated by kinase activity. In drug discovery, kinases represent a major category of therapeutic targets, and kinase inhibitors constitute an important class of pharmaceuticals that block the activity of specific disease-associated enzymes, particularly in cancer and inflammatory disorders. Small molecule kinase inhibitors represent one of the fastest-growing drug categories, having received U.S. Food and Drug Administration (FDA) approval for both oncological and non-oncological indications. As of September 2023, over 70 FDA-approved small molecule kinase inhibitors are commercially available. The MCE Kinase Inhibitor Library Mini contains 270 kinase inhibitors primarily targeting protein kinases (VEGFR, EGFR, BTK, CDK, Akt, etc.), lipid kinases (PI3K, PI4K, SK, etc.), and carbohydrate kinases. This collection includes 1-3 highly specific representative compounds per target, optimized for screening of kinase-related drug targets in pharmaceutical research.
83
HY-L0120V Asinex BioDesign Library
“BioDesign” approach incorporates key structural features of known pharmacologically relevant natural products (e.g. alkaloids and other secondary metabolites) into synthetically feasible medicinal chemistry scaffolds. In order to identify the privileged pharmacophores, ring systems and linkers, we have carried out statistical analysis of structural features of natural products, marketed drugs, and drug candidates. Saturated, fused ring, spiro, and bridged systems with a tendency towards multiple chiral centers are highly privileged among natural products and marketed drugs yet these structures are very poorly represented in commercial libraries. This library addressed this market need by incorporating these privileged elements into the design of novel synthetic molecules with high molecular framework diversity, multiple stereogenic centers (≥2), and degree of saturation (Fsp3 > 0.5).
83
HY-L032 Fragment Library
Fragment-based drug discovery (FBDD) is well suited for discovering both drug leads and chemical probes of protein function; it can cover broad swaths of chemical space and allows the use of creative chemistry. Fragment-based drug discovery is well-established in industry and has resulted in a variety of drugs entering clinical trials, with two, vemurafenib and venetoclax, already approved. FBDD also has key attractions for academia. Notably, it is able to tackle difficult or novel targets for which no chemical matter may be found in existing HTS collections. MCE designs a unique collection of 41,368 fragment compounds, all of which obey a heuristic rule called the “Rule of Three (RO3) ”, in which molecular weight ≤300 Da, the number of hydrogen bond donors (H-donors) ≤3, the number of hydrogen bond acceptors (H-acceptors) is ≤3 and cLogP is ≤3. This library is an important source of lead-like drugs.
83
HY-L087 Anti-Obesity Compound Library
Obesity is widely recognized as the largest and fastest growing public health problem and is associated with numerous chronic disorders including osteoarthritis, obstructive sleep apnea, gallstones, fatty liver disease, reproductive and gastrointestinal cancers, dyslipidemia, hypertension, type 2 diabetes, heart failure, coronary artery disease, stroke, etc. Although obesity has long been associated with serious health issues, it has only recently been regarded as a disease in the sense of being a specific target for medical therapy. Obesity may be viewed as the dysregulation of two physiological functions, appetite regulation and energy metabolism, which combine to create disordered energy balance. Consequently, developing obesity treatments that target novel pathways is a growing focus for both biopharmaceutical industries. MCE Anti-Obesity Compound Library owns a unique collection of 3,741 compounds, which mainly target signaling pathway of controlling appetite, fatty acid metabolism and energy expenditure, etc. This library is a useful tool for discovery anti-obesity drugs.
83
HY-L118 Sodium Channel Blocker Library
Sodium channels conduct sodium ions (Na+) through a cell's plasma membrane that are the source of excitatory currents for the nervous system and muscle. Na channels are classified according to the trigger that opens the channel for such ions, i.e. either a voltage-change (Voltage-gated, voltage-sensitive, or voltage-dependent sodium channel also called VGSCs or Nav channel) or a binding of a substance (a ligand) to the channel (ligand-gated sodium channels). Dysfunction in voltage-gated sodium channels correlates with neurological and cardiac diseases, including epilepsy, myopathies, pain and cardiac arrhythmias. Sodium channel blockers are used in the treatment of cardiac arrhythmia, pain and convulsion. MCE offers a unique collection of 199 sodium channel blocker and antagonists, all of which have the identified inhibitory effect on sodium channels. MCE Sodium Channel Blocker Library can be used for neurological and cardiac diseases drug discovery and sodium channel research.
83
HY-L119 Potassium Channel Compound Library
Potassium channels are the most widely distributed type of ion channel and are found in virtually all living organisms. There are four major classes of K channels: voltage-gated potassium channel, calcium-activated potassium channel, inwardly rectifying potassium channel and tandem pore domain potassium channel. There is growing evidence that dysfunction in potassium channels correlates with several diseases, such as chronic hypertension, diabetes, hypercholesterolemia and atherosclerosis, etc. MCE Potassium Channel Compound Library consists of 337 potassium channel inhibitor and activators, which is a useful tool to discover drugs for cardiovascular diseases and potassium channel research.
83
HY-L125 Anti-Pulmonary Fibrosis Compound Library
Pulmonary fibrosis (PF), also known as diffuse interstitial pulmonary fibrosis, is a very common end-stage manifestation of several diseases, including idiopathic pulmonary fibrosis (IPF), pulmonary hypertension, and scleroderma, characterised by excessive matrix deposition and destruction of the lung architecture, finally leading to respiratory insufficiency. PF has become a global disease with significantly increased incidence rate, and the most common form of pulmonary fibrosis is idiopathic pulmonary fibrosis (IPF). Lung fibrosis is a complex disease, a multitude of signal factors and signaling pathways is disrupted in this complex disease, such as TGF-β, Wnt, VEGF and PI3K–Akt. MCE offers a unique collection of 2,810 compounds with identified and potential anti-pulmonary fibrosis activity. MCE Anti-Pulmonary Fibrosis Compound Library is a useful tool for anti-pulmonary fibrosis drugs screening and other related research.
83
HY-L137 Molecular Glue Compound Library
Targeted protein degradation(TPD) is a novel and promising approach to new drug discovery and development. It shows great potential for treating diseases with “undruggable” pathogenic protein targets and for overcoming drug resistance. Molecular glues and PROTACs are both targeted protein degraders that have attracted the most attention. Molecular glues are small molecular degraders that mainly induce novel interaction between an E3 ligase and a target protein to form a ternary complex, leading to protein ubiquitination and subsequent proteasome degradation. Compared with PROTACs, molecular glues generally possess more favorable drug-like properties, such as lower MW, higher cell permeability, and better oral absorption. Molecular glues are emerging as a promising new therapeutic strategy. MCE supplies a unique collection of 124 molecular glues which target various proteins. MCE Molecular Glue Compound Library is a useful tool to conduct scientific research and disease mechanism study.
83
HY-L145 Antihypertensive Compound Library
The majority of hypertensive patients have primary (or essential) hypertension, that is, hypertension in which secondary causes are not present. Management aims to control arterial pressure, prevent end-organ damage (cerebrovascular, cardiovascular, and renal), and reduce the risk of premature death. Antihypertensive drugs may be divided into two broad groups, the first group being those which directly or indirectly block the renin–angiotensin system (RAS), for example, ACEIs, angiotensin receptor antagonists (ARAs), direct renin inhibitors (DRIs), and to a lesser extent β-blockers. The second group of drugs works by increasing water and sodium excretion, thereby reducing intravascular volume, or by causing vasodilatation through non-RAS pathways, for example, diuretics and calcium channel blockers (CCBs). MCE offers a unique collection of 930 compounds with identified and potential antihypertensive activity. MCE Antihypertensive Compound Library is critical for antihypertensive drug discovery and development.
83
HY-L152 F-Fragments Library
19F-NMR has proved to be a detection mode in fragment-based drug discovery (FBDD) for studies of protein structure and interactions. 19F shows high sensitivity for NMR detection, and the exquisite sensitivity of 19F chemical shifts and linewidths to ligand binding all make it a valuable approach in FBDD.F (Fluorine) -Fragments can be used for 19F-NMR detection after binding to target proteins, and can be used as an effective 19F-NMR tool for FBDD. MCE designs a unique collection of 5,077 F-fragments, all of which obey a heuristic rule called the “Rule of Three (RO3)”, in which molecular weight ≤300 Da, the number of hydrogen bond donors (H-donors) ≤3, the number of hydrogen bond acceptors (H-acceptors) is ≤3 and cLogP is ≤3. This F-fragments library is an important source of lead-like drugs.
83
HY-L185 Anti-Fibrosis Compound Library
Fibrosis is a kind of repair response to long-term tissue damage, which is mainly manifested by excessive deposition of extracellular matrix (ECM) and scar formation. Myofibroblasts are the main generating cells of extracellular matrix, and their activation process is related to various pathological mechanisms including Oxidative stress, chronic inflammation and cytokine secretion. Fibrosis can occur in many organs, such as kidneys, liver, heart, lungs, etc. Continuous fibrosis can lead to the destruction of the normal structure of tissues and organs, and if not controlled in time, may cause organ failure or even life-threatening. MCE contains 2,568 compounds targeting ant-fibrosis targets such as TGF-β, PI3K, Wnt, MMP, etc. These compounds have clear or potential anti-fibrosis activity and can be used for mechanism research and drug screening of fibrosis diseases.
83
HY-L191 Tibetan Medicine Compound Library
Tibetan medicine, as one of the treasures of traditional Chinese medicine, carries the profound cultural heritage of the Tibetan people and their unique understanding of health. Tibet is the birthplace of Tibetan medicine, and its plateau climate and unique ecological environment have nurtured its rich medicinal resources. Among them, cordyceps, saffron and snow lily are favored by people for their excellent medicinal value and unique growth characteristics. Tibetan medicine, with its profound heritage, plays a crucial role in the management of diseases that are unique to high-altitude regions, such as altitude stress. It facilitates a swifter adaptation to high-altitude conditions and mitigates the symptoms of altitude sickness by meticulously recalibrating the internal environment within the human body. For rheumatic diseases, cardiovascular diseases, etc., Tibetan medicine has also shown its remarkable effect. MCE included 1,146 natural products from Tibetan medicine, including animal, plant and mineral sources.
83
HY-L236 Amine Fragment Library
Fragment-based drug discovery (FBDD) offers a strategic advantage by categorizing fragment hits according to their functional groups. This approach facilitates both the further optimization of these hits and the rational design of larger compounds through fragment combination. The amine functional group plays a vital role in drug development, as evidenced by its presence in many marketed drugs like Galantamine, Tacrine, and Rivastigmine. It is instrumental in enhancing solubility, improving bioavailability, and ensuring shelf-life stability—all critical factors for drug efficacy. MCE offers a collection of 20,065 amine fragments for drug discovery. All of these compounds adhere to the Rule of Three (RO3) criteria for drug-likeness, which MCE offers a collection of 20,065 amine fragments for drug discovery, all of which stipulates a molecular weight ≤ 300 Da, ≤ 3 hydrogen bond donors, ≤ 3 hydrogen bond acceptors, and a cLogP ≤ 3.
83
HY-L245 Natural Product Diversity Scaffold Library
At the forefront of innovative drug discovery, every medicinal chemist faces the challenge of rapidly identifying high-quality hit compounds from vast repositories of chemical resources. The MCE Natural Product Diversity Scaffold Library is the result of a streamlined optimization process built upon our existing natural product collection. Adhering to the rigorous selection principle of "retaining only one representative compound per BMS scaffold", we have concentrated the diversity of thousands of compounds into a high-value, low-redundancy core set containing 2,256 compounds. All compounds are derived from natural sources, inheriting their inherent advantages of structural complexity and drug-likeness. By eliminating redundancy, the library size is significantly reduced without any compromise to chemical diversity. This approach effectively lowers the cost and time required for primary screening while simplifying downstream data analysis and structure-activity relationship (SAR) studies.
83
HY-L907 MCE Kinase Hinge Binder Fragment Library
The most prominent mechanism of action of kinase inhibitors is their competition with ATP by binding to the hinge region of the kinase protein. Once the kinase is blocked by an inhibitor, it loses the ability to transfer phosphate groups from ATP to other molecules, resulting in the loss of kinase activity. The hinge-binding region of kinase inhibitors mimics the interaction pattern between the ATP nucleobase and the kinase. MCE extracted thousands of kinase inhibitors from the ChEMBL database and isolated their molecular fragments. In certain cases, the amino and amide groups on the molecular fragments are crucial for binding in the hinge region. Therefore, we enhanced the diversity of the collected results by adding these two groups to unoccupied positions on the ring system. Subsequently, the fragments were assessed for their hinge region binding ability via docking at distinct kinases, we also applied pharmacophore constraints to ensure interactions with key amino acids in the kinase hinge region, ultimately obtaining kinase-related molecular fragments. MCE provides over 12,373 kinase fragment molecules that meet the above requirements and are available off the shelf, serving as an effective tool for screening and developing drugs targeting kinases.
83
HY-L918 Molecular Glue-like Compound Library
Targeted Protein Degradation (TPD) is a novel and promising approach to drug development. It shows great potential for targeting proteins traditionally considered "undruggable" due to the lack of enzymatic function and absence of binding sites by tagging them for degradation or recruiting natural degradation mechanisms. Molecular glues are a type of small-molecule degraders that primarily induce novel interactions between E3 ubiquitin ligases and target proteins, forming ternary complexes that lead to protein ubiquitination and subsequent proteasomal degradation. Compared with PROTACs, molecular glues generally have lower molecular weights, higher cell permeability, and better drug-like properties. Additionally, the design of molecular glues is relatively simple, without the requirements for complex linkers and ligand optimization. As a result, molecular glues have gradually emerged as a promising therapeutic approach for various diseases. Multiple types of molecular glues have been reported previously. Analysis of co-crystal complex structures reveals that CRBN-related molecular glues are more versatile. Therefore, MCE researchers select active molecules related to these targets as probes for artificial intelligence (AI) screening.Subsequently, molecular docking technology was used to verify whether the screened molecules retained the key pharmacophore features. Ultimately, we obtained 317 molecular glue analogs, and these compounds serve as powerful tools for the research of molecular glues.
83
HY-L923 Ion Channel Lead-like Compound Library
Ion channels are key proteins on the cell membrane that regulate the flow of ions across membranes. They participate in nearly all physiological processes, including nerve conduction, muscle contraction, heart rhythm, and pain perception. Abnormalities in their function can lead to various serious diseases such as arrhythmia, epilepsy, hypertension, neuropathic pain, and cancer. Therefore, ion channels are highly valuable drug targets—over 15% of approved drugs target ion channels currently, demonstrating their irreplaceable therapeutic value in cardiovascular, neurological, and analgesic fields. MCE has collected a library of over 5,000 reported ion channel-related bioactive compounds targeting major sites such as Na+ channels, K+ channels, Ca2+ channels, GABA receptors, iGluRs, and others. Using AI models, these compounds are characterized through both 2D representations (molecular fingerprints, pharmacophores) and 3D representations (3D conformation) to screen for a collection of lead-like compounds highly similar to known active molecules. Additionally, an hERG channel prediction algorithm integrating XGB and ISE mapping strategy is employed to assess and exclude potential cardiotoxicity in the library.. This step significantly reduces safety risks in subsequent screenings, particularly for ion channel drug development related to cardiovascular systems (e.g., Nav1.5, Cav1.2), effectively minimizing failures due to hERG inhibition and serving as a valuable tool for ion channel drug screening.
83
HY-L934 CRBN Ligand Library
CRBN, namely cereblon, is the substrate recognition subunit of the E3 ubiquitin ligase complex in the ubiquitin-proteasome system. A CRBN ligand library refers to a collection of numerous fragments that can specifically bind to the CRBN protein. These ligands are mostly designed based on validated CRBN-binding warheads and modified through AI-driven molecular generation optimization systems. They not only include classic lenalidomide-derived structures but also cover novel non-lenalidomide scaffolds. After drug-likeness filtering, these ligands exhibit structural diversity and favorable druggable properties. They can be further optimized and modified to facilitate the development of novel molecular glue degraders, accelerate the discovery of molecular glues that induce interactions between CRBN and new substrate proteins, and enable the exploration of novel CRBN substrates for identifying previously unknown CRBN-binding proteins. MCE compiles 122 fragments that can specifically bind to the CRBN protein, with molecular weights ranging from 200 to 500. Compounds developed based on the library ligands target multiple disease targets such as cancer and autoimmune diseases, further advancing the development of Molecular Glues and PROTACs therapeutic agents.
83
HY-L935 Molecular Glue POI binding Fragment library
POI (Protein of Interest) refers to the target protein, namely the disease-causing protein or key functional protein that undergoes degradation or functional modulation in molecular glue-mediated processes. The Molecular Glue POI Library consists of a series of fragments that can specifically bind to different types of POIs. As key components of molecular glues, these ligands form stable interactions with target proteins, laying the foundation for molecular glues to induce the interaction between POIs and E3 ubiquitin ligases. The covered POIs include various types such as cancer-associated GSPT1, androgen receptors, and abnormally aggregated proteins linked to neurodegenerative diseases. This fragment library can be applied to the screening and optimization of targeted protein degraders. By screening ligands with high affinity and strong selectivity for specific POIs from the library, core structures can be identified to develop novel molecular glues. For instance, optimization of ligands targeting GSPT1 has yielded molecular glue degraders with enhanced degradation activity. Since many POIs are difficult to drug due to the lack of traditional small-molecule binding pockets, some ligands in the POI Ligand Library can modulate such POIs by inducing protein-protein interactions, thereby further expanding the scope of drug discovery for undruggable targets. MCE has compiled a POI Fragment Library comprising thousands of POI fragments with molecular weights ranging from 150 to 400. This compound library can be widely applied in Molecular Glue research and development.
83
HY-L936V0 Molecular Glue Virtual Library
Molecular Glue Virtual Library is constructed using generative AI technology, integrating the structural features, activity data of known molecular glues, and interaction information of ternary complexes (target protein-E3-molecular glue). Endowed with structural novelty, drug-likeness, diversity and synthesizability, it is applicable to molecular glue-based AI drug screening and large-scale virtual screening. MCE builds this library based on high-quality molecular building blocks by virtue of robust computing power, coupled with rigorous reaction rules and optimized compound generation strategies. To ensure library quality, molecules with high synthetic difficulty, poor drug-likeness, PAINS and other undesirable molecules are excluded first. Subsequently, scaffold-based compound analysis is performed to screen drug-like diverse molecules for synthesizability evaluation; those with excessively high synthetic difficulty are removed, ultimately forming a large-scale molecular glue virtual library with structural diversity, synthesizability and drug-likeness. Compounds in the library can be synthesized in only 1-2 chemical reaction steps. With MCE’s experienced chemical synthesis team, custom synthesis of different scales from milligram to kilogram can be easily achieved to meet diverse customer needs.
83
HY-L949 Spirocyclic Privileged Scaffold Lead-like Library
Spirocyclic compounds, with rigid 3D structures, high Fsp³ and strong conformational restriction, are highly privileged scaffolds in small-molecule drug screening. They overcome drawbacks of planar aromatic compounds such as poor solubility, high off-target risks and weak druggability. Their orthogonal bicyclic geometry fits well into protein pockets, improving target affinity, subtype selectivity, metabolic stability and membrane permeability, making them ideal for hit identification against kinases, GPCRs, PPIs and other targets. Spirocyclic scaffolds have been widely applied in oncology, antivirals, hypertension and CNS diseases, leading to many approved drugs and clinical candidates. SAR studies show that spiro-atom chirality, ring size and heteroatom substitution dominate bioactivity and selectivity, with the scaffold mainly serving as a conformational anchor. Azaspirocycles, spirooxindoles and spirosteranes target GPCRs, kinases, MDM2-p53 and PPIs. Approved drugs including irbesartan, spironolactone and rolapitant confirm their druggability, while revumenib and SAR405838 show promise against undruggable targets. The MCE Spirocyclic Druglike Library contains over 1,000 diverse, stereospecific molecules selected by Lipinski’s rules. It covers privileged cores such as azaspirocycles, oxaspirocycles and spirooxindoles. These molecules bear rich chiral centers and distinct 3D orientations, reducing non-specific binding and enhancing screening efficiency. Featuring novel scaffolds, the library offers a highly innovative starting point for drug discovery.
83
HY-108841 Raleukin
Raleukin (Kineret) is a recombinant, nonglycosylated human interleukin-1 receptor (IL-1R) antagonist. Raleukin significantly reduces neutrophil accumulation in blood vessels and brain infarct volume as well as improves motor coordination performance in ischemic stroke mice model. Anakinra can be used to study chronic inflammatory disorders like rheumatoid arthritis and cardiovascular recurrence post-myocardial infarction.

Species: Human

57
HY-10626 T0901317
T0901317 is an orally active and highly selective LXR agonist with an EC50 of 20 nM for LXRα. T0901317 activates FXR with an EC50 of 5 μM. T0901317 is RORα and RORγ dual inverse agonist with Ki values of 132 nM and 51 nM, respectively. T0901317 induces apoptosis and inhibits the development of atherosclerosis in low-density lipoprotein (LDL) receptor-deficient mice.
50
HY-N0155 Nobiletin
Nobiletin is a poly-methoxylated flavone from the citrus peel that improves memory loss. Nobiletin is a retinoid acid receptor-related orphan receptors (RORs) agonist. Nobiletin can reduce reactive oxygen species (ROS) levels in differentiated C2C12 myotubes and has anti-inflammation and anti-cancer properties, including anti-angiogenesis, anti-proliferation, anti-metastasis and induced apoptosis.
28
HY-B0193 Prazosin
Prazosin is an α-adrenergic receptor antagonist. Prazosin can reduce inflammation, relieve anxiety, alleviate panic, prevent memory decline, and modulate the pain-relieving effects of opioids. Prazosin can be used in the study of hypertension and Alzheimer’s disease.
18
HY-P0233 Melittin
Melittin is a PLA2 activator, stimulates the activity of the low molecular weight PLA2, while it does not the increase activity of the high molecular weight PLA2.
17
HY-14422 SR1078
SR1078 is a selective agonist of retinoic acid receptor-related orphan receptor α/γ (RORα/RORγ). SR1078 directly binds to the ligand binding domain of RORα and RORγ and increases the transcriptional activity of these receptors, leading to stimulation of RORα/γ target gene transcription.
ROR  
Cancer  
16
HY-14413 SR3335
SR3335 (ML 176) is a selective RORα inverse agonist that directly binds to RORα with a Ki of 220 nM.
14
HY-N2333 Resiniferatoxin
Resiniferatoxin ((+)-Resiniferatoxin), is a selective agonist of transient receptor potential vanilloid 1 (TRPV1) receptor agonist. Resiniferatoxin can be isolated from the Euphorbia resinifera plant. Resiniferatoxin eliminates TRPV1+ primary sensory afferents and blunt cardiac sympathetic afferent reflex for a relatively long period.
14
HY-113071 Mevalonic acid
Mevalonic acid (MVA) is a precursor substance of the mevalonate pathway, which is essential for cell growth and proliferation. Mevalonic acid is effective in inhibiting Simvastatin (HY-17502)-induced decrease in C2C12 cell viability in vitro. Mevalonic acid can be used in studies of myopathy and heart failure.
13
HY-B1610I Sodium citrate dihydrate, for molecular biology
Sodium citrate (Trisodium citrate) dihydrate, for molecular biology is an orally active natural product that can be found in citrus fruits. Sodium citrate dihydrate can inhibit the proliferation of tumor cells and induce apoptosis. Sodium citrate dihydrate has antibacterial, anti-tumor and antioxidant activities. Sodium citrate dihydrate can be prepared as a cosolvent or buffer.
13
HY-113071A Mevalonic acid lithium salt
Mevalonic acid (MVA) lithium salt is a precursor substance of the mevalonate pathway, which is essential for cell growth and proliferation. Mevalonic acid lithium salt is effective in inhibiting Simvastatin (HY-17502)-induced decrease in C2C12 cell viability in vitro. Mevalonic acid lithium salt can be used in studies of myopathy and heart failure.
13
HY-N2037 Higenamine
Higenamine (Norcoclaurine), a β2-AR agonist with antioxidant capability, is a key component of the Chinese herb aconite root that prescribes for treating symptoms of heart failure in the oriental Asian countries. Higenamine is also a α1-adrenergic receptor antagonist with hypotensive effect. is a selective LSD1 inhibitor (IC50=1.47 μM) that can be isolated from aconite. Higenamine hydrochloride has anti-inflammatory and antibacterial activity. Higenamine protects myocyte Apoptosis and ischemia/reperfusion (I/R) injury through selective activation of beta2-adrenergic receptor (β2-AR). Higenamine also reduces I/R-induced myocardial infarction in mice. Higenamine can attenuate IL-1β-induced Apoptosis through ROS-mediated PI3K/Akt signaling pathway. Higenamine protects brain cells from oxygen deprivation. Higenamine can promote bone formation in osteoporosis through the SMAD2/3 pathway. Higenamine can be used to study cancer, inflammation, cardiorenal syndrome and other diseases.
12
HY-14414 GSK4112
GSK4112 (SR6452) is a Rev-erbα agonist with an EC50 value of 0.4 μM. GSK4112 can be used as a chemical tool to probe the function of Rev-erbα in transcriptional repression, regulation of circadian biology, and metabolic pathways.
11
HY-104064 1A-116
1A-116, a potent Rac1 inhibitor, is specific for W56 residues, can prevent EGF-induced Rac1 activation and block Rac1-P-Rex1 interaction. 1A-116 can induce apoptosis and inhibit cell proliferation, migration and cycle progression in a concentration-dependent manner. 1A-116 also demonstrates a high antimetastatic activity in vivo.
9
HY-15490A PF-670462
PF-670462 is a selective CKI ε/δ inhibitor. PF-670462 effectively regulates the phase of the circadian rhythm.
8
HY-16594 Lactacystin
Lactacystin is a potent, orally active, irreversible, cell-permeable, selective 20S proteasome inhibitor (IC50 = 4.8 μM). Lactacystin also inhibits the lysosomal enzyme cathepsin A. Lactacystin inhibits cell growth and induces apoptosisand cell cycle arrest, and has antiviral and antioxidative activity. Lactacystin induces neurite outgrowth and hypertension. Lactacystin has the potential for the research of cancer, Neurological Disease, hypertension and Malaria, and so on.

Source: Streptomyces OM-6519

8
HY-D2295 Mito-FerroGreen
Mito-FerroGreen is a mitochondria-specific Fluorescent indicator used to detect mitochondrial Fe2+ levels (excitation: 488 nm; emission: 500-550 nm). Mito-FerroGreen can be applied to research related to colorectal cancer and chronic heart failure.
7
HY-100813 Saclofen
Saclofen is an orally active and a competitive GABAB receptor antagonist with an IC50 of 7.8 μM. Saclofen has weak antagonistic effects on GABAB1b and GABAB2 heterodimeric recombinant receptors. Saclofen inhibits the binding of Baclofen (HY-B0007) to rat cerebellar membranes and blocks Baclofen-induced circadian phase shifts, and exhibits anti-inflammatory and analgesic effects in rats.
5
HY-12776 GSK805
GSK805 is an orally active and CNS penetrant RORγt inhibitor. GSK805 inhibits RORγ and Th17 cells differentiation with pIC50 values of 8.4 and >8.2. GSK805 inhibits the function of Th17 cells. GSK805 can be used for the research of immunity.
5
HY-D0098 Fluorescein-5-maleimide
Fluorescein-5-maleimide (N-(5-Fluoresceinyl)maleimide) is a fluorescent dye. Fluorescein-5-maleimide can be used to detect the redox state of thiols in eukaryotic cells. Fluorescein-5-maleimide can label peptides and is used to detect negatively charged nanoparticles. Fluorescein-5-maleimide can also label actin to explore its interaction with cardiac myosin-binding protein C (cMyBP-C), which helps in developing small molecule modulators for heart failure. Fluorescein-5-maleimide can screen mutant proteins that contain cysteine residues. The excitation wavelength of Fluorescein-5-maleimide is 494 nm, and the emission wavelength is 519 nm.
5
HY-112173 Prolylleucine
Prolylleucine (Z-Pro-D-Leu) is a dipeptide containing branched-chain amino acids. Prolylleucine (Z-Pro-D-Leu) can affect the circadian rhythms and behaviour of animals.
4
HY-106262B Delcasertib hydrochloride
Delcasertib (KAI-9803) hydrochloride is a potent and selective δ-protein kinase C (δPKC) inhibitor. Delcasertib (KAI-9803) hydrochloride could ameliorate injury associated with ischemia and reperfusion in animal models of acute myocardial infarction (MI).
4
HY-W015883A Fumaric acid disodium
Fumaric acid disodium is an unsaturated dicarbonic acid, an intermediate product of the citric acid cycle that provides intracellular energy in the form of ATP. Fumaric acid disodium exerts anti-inflammatory effects by inhibiting the NF-κB signaling pathway dependent on p38 MAPK. Fumaric acid disodium can be used in the study of pregnancy-induced hypertension.
4
HY-NP013 Oxidized low density lipoprotein (mouse)
Oxidized low density lipoprotein (mouse) (Mouse ox-LDL) is an oxidized low density lipoprotein (LDL). Oxidized low density lipoprotein (mouse) induces atherosclerosis (AS) by facilitating endothelial dysfunction and accelerating the VSMCs growth and migration. Oxidized low density lipoprotein (mouse) can be used to construct an in vitro model of AS.
4
HY-W015883 Fumaric acid
Fumaric acid is an unsaturated dicarbonic acid, an intermediate product of the citric acid cycle that provides intracellular energy in the form of ATP. Fumaric acid exerts anti-inflammatory effects by inhibiting the NF-κB signaling pathway dependent on p38 MAPK. Fumaric acid can be used in the study of pregnancy-induced hypertension.
4
HY-K1011A 3-Color Prestained Protein Marker (10-180 kDa)

MCE 3-Color Prestained Protein Marker (10-180 kDa) consists of 10 prestained recombinant proteins with an apparent molecular weight range of 10–180 kDa. This marker enables real-time monitoring of protein migration during SDS-PAGE and facilitates evaluation of protein transfer efficiency. The 250 μL is defined as the base specification. All larger sizes correspond to incremental volumes of this base.

4
HY-112537A D-Glucose 6-phosphate dipotassium
D-Glucose 6-phosphate dipotassium is a key central node metabolite in glucose metabolism. It serves as the initiating metabolite for glycolysis and the pentose phosphate pathway, as well as a substrate for glycogen synthesis. D-Glucose 6-phosphate dipotassium acts as a metabolic stress signal, which activates the mTOR pathway to promote protein synthesis, especially when phosphoglucose isomerase (PGI) is inhibited, thereby participating in cardiac remodeling processes. D-Glucose 6-phosphate dipotassium can be used in research related to non-insulin-dependent diabetes mellitus and heart failure.
3
HY-P2141A TRV-120027 TFA
TRV120027 TFA, a β-arrestin-1-biased agonist of the angiotensin II receptor type 1 (AT1R), engages ?-arrestins while blocking G-protein signaling. TRV120027?TFA induces?acute?catecholamine?secretion?through cation channel subfamily C3 (TRPC3) coupling, promotes the formation of a macromolecular complex composed of AT1R–β-arrestin-1–TRPC3–PLCγ at the plasma membrane. TRV120027 TFA inhibits angiotensin II–mediated vasoconstriction and increases cardiomyocyte contractility. TRV120027 TFA has the potential for the?acute decompensated heart failure (ADHF) treatment.
3
HY-Y0344J Sodium chloride, for molecular biology
Sodium chloride is an orally active salt. Sodium chloride induces the expression of ATP1A1. Sodium chloride induces the pro-inflammatory cytokines IL-2, TNFα, IL-9 and several chemokines. Sodium chloride enhances the anti-tumor activities of Digoxin (HY-B1049) against small cell lung cancer. Sodium chloride drives autoimmune disease by the induction of pathogenic Th17 cells.
3
HY-113252 2-Methoxyestrone
2-Methoxyestrone is an estrogen metabolite with antimitotic activity. 2-Methoxyestrone acts as a liver-specific prohormone that undergoes demethylation to form active 2-hydroxyestrogens, and it can also interconvert with 2-Methoxyestradiol (HY-12033) via the 17β-hydroxysteroid dehydrogenase pathway. In the presence of all-trans retinoic acid, 2-Methoxyestrone exerts a strong, concentration-dependent inhibitory effect on cell growth. 2-Methoxyestrone delays the progression of pulmonary hypertension in rats, alleviates right ventricular and pulmonary vascular remodeling, and relieves proliferative pulmonary hypertension in rats. 2-Methoxyestrone can be used in studies related to proliferative pulmonary hypertension.
3
HY-P2141 TRV-120027
TRV120027, a β-arrestin-1-biased agonist of the angiotensin II receptor type 1 (AT1R), engages β-arrestins while blocking G-protein signaling. TRV120027 induces acute catecholamine secretion through cation channel subfamily C3 (TRPC3) coupling, promotes the formation of a macromolecular complex composed of AT1R-β-arrestin-1-TRPC3-PLCγ at the plasma membrane. TRV120027 inhibits angiotensin II-mediated vasoconstriction and increases cardiomyocyte contractility. TRV120027 has the potential for the acute decompensated heart failure (ADHF) treatment.
3
HY-I0626 Cytosine
Cytosine is one of the four main bases found in DNA and RNA. Cytosine modifications exhibit circadian oscillations that are involved in epigenetic diversity and aging. Cytosine can be used in cancer research.
3
HY-W010991 N-[3-(2-Furyl)acryloyl]-Phe-Gly-Gly
N-[3-(2-Furyl)acryloyl]-Phe-Gly-Gly (FAPGG) is a specific substrate of angiotensin converting enzyme (ACE) with a Ki of 2.546×10-4 M. It is used as a chromogenic probe for quantitative detection of ACE activity. N-[3-(2-Furyl)acryloyl]-Phe-Gly-Gly can be hydrolyzed by ACE to generate N-[3-(2-furyl)acryloyl]-Phe (FAP) and Gly-Gly, and the ACE inhibitory effect is monitored by photometry. FAPGG competitively binds to the active center of ACE and is a key tool for screening ACE inhibitors such as Captopril (HY-B0368) and Dioscorin. Its reversible mechanism of action supports hypertension research and drug development targeting the renin-angiotensin system.
3
HY-P4911 SDF-1α (human)
SDF-1α (human) is a mononuclear cells chemoattractant that can bind to CXCR4. SDF-1α plays a central role in stem cell homing, retention, survival, proliferation, cardiomyocyte repair, angiogenesis and ventricular remodelling following myocardial infarction. SDF-1α (human) can be used in cardiovascular disease research.
2
HY-119506 KL044
KL044, a stabilizer of the clock protein cryptochrome (CRY) , is a potent chemical probe with a pEC50 value of 7.32, leading to the extension of the circadian period and repression of Per2 activity.
2
HY-134194 KL201
KL201 a circadian clock modulator, is a isoform-selective cryptochrome 1 (CRY1) stabilizer. KL201 has no stabilizing effect on CRY2. KL201 lengthens the period of circadian rhythms in cells and tissues.
2
HY-115519 (E/Z)-GO289
(E/Z)-GO289 is a potent and selective casein kinase 2 (CK2) inhibitor (IC50=7 nM). (E/Z)-GO289 strongly lengthens circadian period. (E/Z)-GO289 exhibits cell type–dependent inhibition of cancer cell growth that correlated with cellular clock function.
2
HY-P4911A SDF-1α (human) TFA
SDF-1α (human) TFA is a mononuclear cells chemoattractant that can bind to CXCR4. SDF-1α plays a central role in stem cell homing, retention, survival, proliferation, cardiomyocyte repair, angiogenesis and ventricular remodelling following myocardial infarction. SDF-1α (human) TFA can be used in cardiovascular disease research.
2
HY-108468 KL001
KL001 is a first-in-class cryptochrome (CRY, a flavoproteins that are sensitive to blue light, and is involved in the circadian rhythms of plants and animals) stabilizer which specifically interacts with CRY1 and CRY2. KL001 prevents ubiquitin-dependent degradation of CRY, resulting in lengthening of the circadian period. KL001 has the potential to control fasting hormone-induced gluconeogenesis.
2
HY-P99201 Zilovertamab
Zilovertamab (UC-961) is a humanised monoclonal antibody against ROR1 that blocks Wnt5a-induced ROR1 signalling.

Species: Human

2
HY-P99590 Sotatercept
Sotatercept (ACE-011) is a soluble activin receptor 2A (ACVR2A) type IgG Fc fusion protein. Sotatercept combines activin and growth differentiation factor to try to restore the balance between growth promotion and growth inhibition signal pathways. Sotatercept has potential application in pulmonary arterial hypertension, anemia, bone loss, erythropoiesis, multiple myeloma (MM) osteolytic lesions.
2
HY-E70182 Hyaluronidase 2
Hyaluronidase 2 (EC:3.2.1.35; HYAL2) is a hyaluronidase. Hyaluronidase 2 cleaves high-molecular-weight hyaluronan into intermediate, ~20 kDa, and tetrasaccharide fragments. Hyaluronidase 2 directly interacts with CD44 and ERM proteins, reduces CD44 hyaluronan binding capacity and ERM activation. Hyaluronidase 2 can be used for the research of gliomas, inflammatory bowel disease, congenital heart defects, heart failure.
1
HY-A0220 Rescinnamine
Rescinnamine is a derivative of the indole alkaloid reserpine. Rescinnamine shows sedative effects. Rescinnamine can be used for hypertension research.
1
HY-P99177 Enibarcimab
Enibarcimab is a humanized, non-neutralizing monoclonal antibody targeting adrenomedullin (ADM). Enibarcimab binds to the N-terminus of ADM, retains ADM in the circulation, and mobilizes interstitial ADM to increase the level of active bio-ADM, ultimately stabilizing blood vessels. Enibarcimab can be used in research related to septic shock and acute heart failure.

Species: Human

1
HY-N3198A Sophoramine
Sophoramine ((-)-Sophoramine) is a prejunctional α2-adrenoceptor inhibitor that can be found in the seeds of Sophora alopecuroides. Sophoramine inhibits prejunctional α2-adrenoceptors to facilitate norepinephrine release from adrenergic nerves. Sophoramine shows cytotoxic activity against human cancer cells, positive inotropic activity, and activity in rodent arrhythmia models. Sophoramine can be used for the research of arrhythmias.
1
HY-P99891 Rovelizumab
Rovelizumab is a humanized monoclonal leukointegrin antibody. Rovelizumab is a monoclonal antibody directed against the CD11/CD18 cell adhesion proteins. Rovelizumab can be used for research of multiple sclerosis (MS), hemorrhagic shock, myocardial infarction (MI) and stroke.

Species: Human

1
HY-W089353 8-Phenyl-BODIPY 505/515
8-Phenyl-BODIPY 505/515 is a molecular rotor based on the BODIPY scaffold, specifically used as a microviscosity probe. The working principle of 8-Phenyl-BODIPY 505/515 is based on the restriction of molecular motion by viscosity: in a high-viscosity environment, the rotational freedom of its chemical bonds is inhibited, which leads to a significant extension of fluorescence lifetime. This property makes 8-Phenyl-BODIPY 505/515 an effective tool for monitoring changes in the viscosity of intracellular microenvironments via fluorescence lifetime imaging (FLIM) technology.
1
HY-Y0319B1 Potassium acetate, for molecular biology
Potassium acetate, for molecular biology is an acetate salt commonly used as a deicing agent, food preservative and potassium source. Potassium acetate, for molecular biology can serve as an activator for preparing waste tea-based activated carbon, and is applied to the adsorption of Acid Blue 25 dye.
1
HY-145626 Ozuriftamab
Ozuriftamab is a human IgG1 kappa antibody of ROR2. Ozuriftamab can be used to synthesize ADC such as Ozuriftamab vedotin (HY-145627). Recommend Isotype Controls: Human IgG1 kappa, Isotype Control (HY-P99001).

Species: Human

Cancer  
1
HY-113440 5-Methoxytryptophol
5-Methoxytryptophol is a 5-methoxyindole alcohol structurally homologous to Melatonin (HY-B0075). It is secreted by the mammalian pineal gland and exhibits an inverse circadian rhythm. 5-Methoxytryptophol regulates bone metabolism by activating the ERK1/2 pathway. It reduces the levels of pro-inflammatory cytokines TNF-α and IL-1β, as well as proteolytic enzymes MMP-1 and MMP-2, in serum and dental pulp tissues, thereby ameliorating acute pulpitis. 5-Methoxytryptophol induces rapid sleep in mice, while high doses cause respiratory depression and death. 5-Methoxytryptophol. 5-Methoxytryptophol can be used in studies related to acute pulpitis, hypnosis, and bone metabolism.
1
HY-P990209 Anti-Mouse IL-7Rα/CD127 Antibody (A7R34)
Anti-Mouse IL-7Rα/CD127 Antibody (A7R34) is a rat-derived IgG2a κ type antibody inhibitor, targeting to mouse IL-7Rα/CD127. Anti-Mouse IL-7Rα/CD127 Antibody (A7R34) blocks IL-7 signaling. Anti-Mouse IL-7Rα/CD127 Antibody (A7R34) can be used for the researches of cancer,infection, inflammation, immunology, cardiovascular and metabolic disease, such as abdominal aortic aneurysms, helicobacter felis-induced gastritis and diabetes.

Species: Mouse

1
HY-121107 Chrysene
Chrysene is a high molecular weight (HMW), polycyclic aromatic hydrocarbon (PAH) known for its recalcitrance and carcinogenic properties.
1
HY-113345 Zymostenol
Zymostenol (5a-Cholest-8-en-3b-ol) is a late-stage precursor in the biosynthesis of cholesterol. Zymostenol is a RORγ agonist (EC50: 1 μM).

Source: human fibroblasts

1
HY-B2243B Anhydrous sodium dihydrogen phosphate, for molecular biology
Anhydrous sodium dihydrogen phosphate, for molecular biology is an inorganic salt compound that can be used as a buffer and nutritional supplement. Anhydrous sodium dihydrogen phosphate, for molecular biology can be used in molecular biology experiments.
1
HY-P2543 Neuropeptide Y (3-36) (human, rat)
Neuropeptide Y (3-36) (human, rat) is a neuropeptide Y fragment derived from humans or rats. Neuropeptide Y is an extremely abundant neurotransmitter in central and peripheral neurons, and it participates in the regulation of psychomotor activity, circadian rhythm, feeding behavior and cardiovascular function. Neuropeptide Y (3-36) (human, rat) can serve as a substrate to be sequentially degraded from its N-terminus by AfuS28, and it requires binding to AfuS28 and SedB to be decomposed into amino acids, dipeptides and tripeptides[1].
1
HY-14803 Tasimelteon
Tasimelteon (BMS-214778) is an orally active and selective dual melatonin receptor agonist (DMRA). Tasimelteon has 2.1-4.4 times greater affinity for the MT2 receptor than for the MT1 receptor. Tasimelteon is a circadian regulator and has the potential for Non-24-Hour Sleep-Wake Disorder (Non-24).
1
HY-159059 Ganoderma lucidum polysaccharide
Ganoderma Lucidum/Reishi Extract is a Ganoderma lucidum extract. Ganoderma Lucidum/Reishi Extract reduces the expression of c-Myc, BCL-2, BCL-XL, TERT, PDGFB, eIF4G, Survivin, β-catenin, and eIF4E. Ganoderma Lucidum/Reishi Extract downregulates the gene expression of MMP-9. Ganoderma Lucidum/Reishi Extract upregulates the expression of IL8. Ganoderma Lucidum/Reishi Extract is applicable to the research of inflammatory breast cancer. Ganoderma Lucidum is used in the research of various diseases, such as allergy, arthritis, hypertension, neurasthenia, inflammation, and cancer.
1
HY-N2253 Neoruscogenin
Neoruscogenin, a member of the steroidal sapogenin family, is a high-affinity agonist of the nuclear receptor RORα (NR1F1) (EC50 = 0.11 µM).
1
HY-145967 FT709
FT709 is a potent and selective USP9X inhibitor, an IC50 of 82 nM. USP9X has been linked with centrosome function, chromosome alignment during mitosis, EGF receptor degradation, chemo-sensitization, and circadian rhythms.
1
HY-D1553 BODIPY-C12
BODIPY-C12 is a boron-dipyrromethene derivative containing a lipophilic tail (excitation 490 nm). BODIPY-C12 is a hydrophobic molecular and sensitivity to the surrounding environment and can be used to quantify viscosity, critical micelle concentration, and critical micelle temperature.
1
HY-113168 Butyrylcarnitine
Butyrylcarnitine is an endogenous metabolite found in plasma. Elevated levels of Butyrylcarnitine are closely associated with abnormalities in lipid and energy metabolism. Butyrylcarnitine can serve as a diagnostic and prognostic indicator for certain diseases, such as heart failure and head and neck cancer.
1
HY-143712 Allolithocholic acid
Allolithocholic acid is an orally active metabolite of Lithocholic acid (HY-B0172). Allolithocholic acid is a dual GPBAR1 agonist (EC50 = 2.7 μM) and RORγt inverse agonist (IC50 = 3.4 μM). Allolithocholic acid modulates immune and metabolic pathways, regulates immune cell polarization, prevents M1 macrophage and Th17 CD4 cell polarization. Allolithocholic acid improves insulin sensitivity, reduces liver lipid accumulation, reverses liver immunological, inflammatory and metabolic signaling dysregulation, restores bile acid homeostasis, adipose tissue histopathology/function, and intestinal microbiota composition, modulates intestinal immunity. Allolithocholic acid can be used for the researches of cancer, inflammayion, immunology and metabolic disease.
1
HY-109521A Manganese chloride tetrahydrate, molecular biology grade,≥99.0% (KT)
Manganese chloride (tetrahydrate), molecular biology grade,≥99.0% (KT) is an orally active and a blood-brain barrier penetrant compound. It affects the activities of multiple enzymes in cells, such as regulating the activities of histone acetyltransferase (HAT) and histone deacetylase (HDAC), thereby affecting gene expression. It has multiple activities such as neurotoxicity, embryotoxicity, and reproductive toxicity. It is currently mainly used in neurodegenerative diseases and toxicology research.
1
HY-148765 CLK8
CLK8 is a potent and specific CLOCK inhibitor that can disrupt the interaction between CLOCK and BMAL1 and interfere with nuclear translocation of CLOCK. CLK8 can be used for the research of disorders associated with dampened circadian rhythms.
1
HY-W019981B Magnesium chloride hexahydrate, for molecular biology
Magnesium chloride hexahydrate (MgCl2 hexahydrate), for molecular biology is the hexahydrate form of magnesium dichloride. Magnesium chloride hexahydrate can be used as a source of magnesium ion and a co-foactor for many enzymes. Magnesium chloride hexahydrate increases the activity of Ca2+ ATPase.
1
HY-125801 3-Oxo-5β-cholanoic acid
3-Oxo-5β-cholanoic acid (Dehydrolithocholic acid), a bile acid metabolite, inhibits the diferentiation of TH17 cells by directly binding to the key transcription factor RORγt (Kd=1.13 μM).
1
HY-P80033 BMAL1 Antibody (YA581)
BMAL1 Antibody (YA581) is a Rabbit-derived and non-conjugated IgG monoclonal antibody, targeting to BMAL1.

Host: Rabbit; Reactivity: Human, Mouse, Rat

1
HY-17503S2 (S)-Metoprolol-d7
(S)-Metoprolol-d7 is the deuterium labeled Metoprolol. Metoprolol (Toprol) is a selective β1 receptor blocker used in treatment of several diseases of the cardiovascular system, especially hypertension[1][2].
/
HY-D0021S EthD-d5 bromide
EthD-d5 bromide is the deuterium labeled Ethidium bromide. EthD bromide is an intercalating agent commonly used as a fluorescent tag (nucleic acid stain) in molecular biology laboratories for techniques such as agarose gel electrophoresis.
/
HY-17503S1 (R)-Metoprolol-d7
(R)-Metoprolol-d7 is the deuterium labeled Metoprolol. Metoprolol (Toprol) is a selective β1 receptor blocker used in treatment of several diseases of the cardiovascular system, especially hypertension[1][2].
/
HY-B0632S Diltiazem-d6
Diltiazem-d6 is the deuterium labeled Diltiazem. Diltiazem is an orally active L-type Ca2+ channel blocker, with antihypertensive and antiarrhythmic effects. Diltiazem can be used for the research of cardiac arrhythmia, hypertension, and angina pectoris.
/
HY-113252R 2-Methoxyestrone (Standard)
2-Methoxyestrone (Standard) is the analytical standard of 2-Methoxyestrone (HY-113252). This product is intended for research and analytical applications. 2-Methoxyestrone is an estrogen metabolite with antimitotic activity. 2-Methoxyestrone acts as a liver-specific prohormone that undergoes demethylation to form active 2-hydroxyestrogens, and it can also interconvert with 2-Methoxyestradiol (HY-12033) via the 17β-hydroxysteroid dehydrogenase pathway. In the presence of all-trans retinoic acid, 2-Methoxyestrone exerts a strong, concentration-dependent inhibitory effect on cell growth. 2-Methoxyestrone delays the progression of pulmonary hypertension in rats, alleviates right ventricular and pulmonary vascular remodeling, and relieves proliferative pulmonary hypertension in rats. 2-Methoxyestrone can be used in studies related to proliferative pulmonary hypertension.
/
HY-B0347S3 Lacidipine-13C4
Lacidipine-13C4 is 13C labeled Lacidipine (HY-B0347). Lacidipine is an orally active and highly selective L-type calcium channel blocker that acts on smooth muscle calcium channels, primarily dilates peripheral arteries, reduces peripheral resistance, and has long-lasting anti-hypertensive activity. Lacidipine protects HKCs from apoptosis induced by ATP depletion and recovery by modulating the caspase-3 pathway. Lacidipine can be used in studies of hypertension, atherosclerosis and acute kidney injury (AKI).
/
HY-W728545 Labetalol-d6 hydrochloride
Labetalol hydrochloride-d6 (AH-5158 hydrochloride-d6) is deuterium labeled Labetalol hydrochloride (HY-B1108). Labetalol (AH5158) hydrochloride is an orally available, selective α1-adrenergic recepto and non-selective β-adrenergic receptor competitive antagonist. Labetalol hydrochloride is an antihypertensive molecule that partially crosses the blood-brain barrier and has little effect on cardiac output. Labetalol hydrochloride can be used in the study of cardiovascular diseases, such as hypertension during pregnancy.
/
HY-B0592S Trandolapril-d5
Trandolapril-d5 is a deuterium labeled Trandolapril (RU44570). Trandolapril is an orally active angiotensin converting enzyme (ACE) inhibitor for hypertension and congestive heart failure (CHF).
/
HY-170862 E3 Ligase Ligand-linker Conjugate 163
E3 Ligase Ligand-linker Conjugate 163 is the E3 ligase ligand (E3 ligase Ligand 58, HY-170861)-linker conjugate part of AH078 (HY-170859). AH078 is a PROTAC that targets the degradation of CK1δ and CK1ε, and can be used for research related to circadian rhythm disorders.
/
HY-162051 CYP1B1-IN-6
CYP1B1-IN-6 (compound 19) is a fluorescence molecular probes which inhibits CYP1B1 activity. CYP1B1-IN-6 can identify tumor sites in fluorescence imaging and photoacoustic imaging modes.
/
HY-P11105 Short neuropeptide F
Short neuropeptide F is an insect neurohormone involved in regulating insect locomotor activity and circadian rhythm.
/
HY-12879G IWP-4 (GMP)
IWP-4 (GMP) is the GMP-grade form of IWP-4 (HY-12879). IWP-4 is a Wnt inhibitor with an IC50 of 25 nM. IWP-4 specifically inhibits casein kinase 1δ/ε (CK1δ/ε), with an IC50 of 1.06 μM against wild-type CK1δ, 1.02 μM against the CK1δ kinase domain, and 7.07 μM against CK1ε; it shows enhanced inhibitory activity against the M82F CK1δ mutant (IC50 = 0.14 μM). IWP-4 is applicable to research related to cancer, Alzheimer's disease (AD), and heart failure.
/
HY-112663 Monazomycin
Monazomycin is a polyene-like antibiotic produced by Streptomyces. Monazomycin molecular weight is about 1200.

Source: Streptoverticillium mashuense

/
HY-D1045A Dabcyl acid sodium
Dabcyl acid sodium (DABCYL sodium) is a nonfluorescent chromophore and a quencher. Dabcyl acid sodium can be used as molecular beacon nucleic acid probes to recognize and report the presence of specific nucleic acids in homogeneous solutions.
/
HY-P990574 Derlotuximab
Derlotuximab is a CHO-expressed, scFv-Fc (huIgG1) type chimeric antibody that targets Histone H1. The predicted molecular weight (MW) of Derlotuximab is 145.1 kDa. The isotype control for Derlotuximab can be referenced as Human IgG1 kappa, Isotype Control (HY-P99001).

Species: Human

/
HY-N16465 Cinnamtannin D1
Cinnamtannin D1 is an orally active polyphenolic compound with immunosuppressive activity. Cinnamtannin D1 regulates the balance of Th17/Treg cells by inhibiting AHR expression. Cinnamtannin D1 reduces apoptosis and ROS in INS-1 cells and primary cultured murine islets induced by Palmitic acid (PA) (HY-N0830). Cinnamtannin D1 reduces Th17 cell differentiation via downregulating p-STAT3/RORγt and promotes Treg cell differentiation via upregulating p-STAT5/Foxp3. Cinnamtannin D1 exerts excellent anti-arthritic efficacy in collagen-induced arthritis (CIA) model of mice. Cinnamtannin D1 can be used for the study of rheumatoid arthritis (RA).
/
HY-103276 Alytesin
Alytesin, a bombesin-like peptide, is found in extracts of the skin of Alytes obstetricans. Alytesin reduces gastric acid secretion and induces hypertension. Alytesin also induces short-term anorexigenic effects in neonatal chicks
/
HY-125801S 3-Oxo-5β-cholanoic acid-d4
3-Oxo-5β-cholanoic acid-d4 (Dehydrolithocholic acid-d4) is the deuterium labeled 3-Oxo-5β-cholanoic acid (HY-125801). 3-Oxo-5β-cholanoic acid (Dehydrolithocholic acid), a bile acid metabolite, inhibits the diferentiation of TH17 cells by directly binding to the key transcription factor RORγt (Kd=1.13 μM).
/
HY-P2306 Cyclo(Arg-Ala-Asp-D-Phe-Cys)
Cyclo(Arg-Ala-Asp-D-Phe-Cys), a cyclic RAD peptide, is a positive or negative control peptide of cyclo(Arg-Gly-Asp-D-Phe-Cys) (HY-P2300). Cyclo(Arg-Ala-Asp-D-Phe-Cys) can be used for multicolor ultrasound molecular imaging (USMI).
/
HY-183265 GO847
GO847 is an orally active casein kinase 2 (CK2) inhibitor with an IC50 of 40.2 nM. GO847 increases intracellular ATP levels, impairs Mitochondrial metabolic flexibility, and promotes excessive mitochondrial ROS production. GO847 alters the period length of cellular circadian rhythms. GO847 inhibits the growth of acute myeloid leukemia cells. GO847 can be used for the research of acute myeloid leukemia.
/
HY-D1121 Acid black 24
Acid black 24 is a black agent whose staining effect is effectively removed by nanoscale zero-valent iron (NZVI) particles. The maximum unit removal capacity is 609.4 mg of dye per gram of NZVI.
/
HY-134193 KL101
KL101, a selective cryptochrome 1 (CRY1) stabilizer, is a circadian clock modulator. KL101 can stabilize the CRY1 protein and regulate its interaction with the core feedback loop of the biological clock, thereby modulating the circadian rhythm cycle of mammals.
/
HY-145581S Mitiperstat-d3
Mitiperstat-d3 (AZD4831-d3) is the deuterated -labeled Mitiperstat (HY-145581).Mitiperstat (AZD4831) is an effective oral inhibitor of myeloperoxidase (MPO). Mitiperstat inhibits MPO and thyroid peroxidase (TPO) with IC50s of 1.5 nM and 0.69 μM. Mitiperstat exhibits a weak inhibitory activity against CYP3A4 with an IC50 of 6 μM. Mitiperstat can reduce inflammation and improve microvascular function, and it can be used in studies related to heart failure, preserved or mildly reduced ejection fraction, non-alcoholic fatty liver disease, and chronic obstructive pulmonary disease.
/
HY-15407S3 Sacubitril-13C4
Sacubitril-13C4 (AHU-377-13C4) is a 13C-labeled version of Sacubitril (HY-15407). Sacubitril is an orally active inhibitor of neprilysin NEP (IC50=5 nM). Sacubitril is used in research on heart failure, hypertension and COVID-19.
/
HY-P990448 Anti-IL-20Ra Antibody
The Anti-IL-20Ra Antibody is a humanized antibody expressed in CHO that targets IL-20Ra. The predicted molecular weight (MW) of the Anti-IL-20Ra Antibody is 150 kDa.

Species: Human

/
HY-P2687 Ularitide
Ularitide (Urodilatin), natriuretic peptide, is a vasodilator. Ularitide binds to and activates renal receptors. Ularitide also regulates renal dopamine metabolism Ularitide can be used in the research of heart failure.
/
HY-A0084S Procainamide-d4 hydrochloride
Procainamide-d4 hydrochloride is deuterated labeled Procainamide. Procainamide hydrochloride is an antiarrhythmic agent used in the study of cardiac arrhythmias.
/
HY-17497S Acebutolol-d7
Acebutolol-d7 is a deuterium labeled Acebutolol. Acebutolol is a selective β1 adrenergic receptor antagonist used in the treatment of hypertension, angina pectoris and cardiac arrhythmias.
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HY-P0205A Saralasin acetate hydrate
Saralasin ([Sar1,Ala8] Angiotensin II) acetate hydrate is an octapeptide analog of angiotensin II. Saralasin acetate hydrate is a competitive angiotensin II receptor antagonist with a Ki value of 0.32 nM for 74% of the binding sites, and has partial agonist activity as well. Saralasin acetate hydrate can be used for the research of renovascular hypertension, renin-dependent (angiotensinogenic) hypertension.
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HY-145149S Duostatin 5-13C,d3
Duostatin 5-13C,d3 is the 13C-labeled Duostatin 5 (HY-145149). Duostatin 5 is a ADC Cytotoxin designed based on MMAF (HY-15579) and can be used to synthesize ADCs. The preparation of Duostatin 5 has the advantages of fewer synthetic steps, simple operation, less difficulty in quality control, and more stable chemical synthesis process. Duostatin 5 can be linked to the antibody targeting 5T4 (ZV05) by cross-linking with interchain cysteines through a disubstituted C-Lock linker. Duostatin 5 is a click chemistry reagent. It contains an azide group and can undergo copper-catalyzed azide-alkyne cycloaddition (CuAAc) with molecules containing alkyne groups. It can also undergo ring strain-driven alkyne-azide cycloaddition (SPAAC) with molecules containing DBCO or BCN groups[1][2].
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HY-N3167 Nyasicoside
Nyasicoside is a norlignan glucosides that can be isolated from Curculigo capitulate. Nyasicoside has potent activity against ouabain-induced arrhythmia in the heart preparations of guinea pig.
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HY-143712R Allolithocholic acid (Standard)
Allolithocholic acid (Standard) is the analytical standard of Allolithocholic acid (HY-143712). This product is intended for research and analytical applications. Allolithocholic acid is an orally active metabolite of Lithocholic acid (HY-B0172). Allolithocholic acid is a dual GPBAR1 agonist (EC50 = 2.7 μM) and RORγt inverse agonist (IC50 = 3.4 μM). Allolithocholic acid modulates immune and metabolic pathways, regulates immune cell polarization, prevents M1 macrophage and Th17 CD4 cell polarization. Allolithocholic acid improves insulin sensitivity, reduces liver lipid accumulation, reverses liver immunological, inflammatory and metabolic signaling dysregulation, restores bile acid homeostasis, adipose tissue histopathology/function, and intestinal microbiota composition, modulates intestinal immunity. Allolithocholic acid can be used for the researches of cancer, inflammayion, immunology and metabolic disease.
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HY-P10541 HSP70/DnaK substrate peptide
HSP70/DnaK substrate peptide is a short peptide that the HSP70/DnaK molecular chaperone can bind and act on. HSP70/DnaK substrate peptide can be used to study the mechanism of action of HSP70/DnaK in molecular chaperone function.
HSP  
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HY-P11852 NOTA-cRY9M
NOTA-cRY9M is a reagent targeting FGFR1 with a Kd value of 58 nM, and exhibits subtype selectivity for FGFR2-4. When radiolabeled as [68Ga]Ga-NOTA-cRY9M, it functions as a stabilizer, imaging contrast enhancer, and tumor-targeting agent, and accumulates in FGFR1-positive non-small cell lung cancer xenograft models. NOTA-cRY9M can be used in studies related to non-small cell lung cancer.
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HY-P11049 Stroke-homing peptide
Stroke-homing peptide is a homing peptide. Stroke-homing peptide can home to ischemic stroke brain tissue and detect the apoptotic neuronal cells. Stroke-homing peptide can be used for the research of molecular imaging and selective drug delivery to stroke tissue.
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HY-N10319R Artepillin C (Standard)
Artepillin C (Standard) is the analytical standard of Artepillin C (HY-N10319). This product is intended for research and analytical applications. Artepillin C is an orally active CREB/CRTC2 inhibitor and TRPA1 covalent agonist (EC50=1.8 μM). Artepillin C inhibits CREB/CRTC2-mediated gene transcription and downregulates BMAL1 expression to regulate glucose and lipid metabolism. Artepillin C can also activate TRPA1 channels to induce spicy taste signals. Artepillin C can inhibit tumor cell proliferation, induce apoptosis, improve insulin resistance and inhibit liver lipid synthesis. Artepillin C can be used in the study of metabolic syndrome, tumor prevention and treatment, and inflammation.
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HY-N12656 Versipelostatin
Versipelostatin is a GRP78/Bip molecular chaperone down-regulator and can be isolated from the culture broth of Streptomyces versipellis 4083-SVS6.

Source: Streptomyces versipellis 4083-SVS6

HSP  
Cancer  
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HY-P1306 Obestatin(rat)
Obestatin(rat), encoded by the Ghrelin gene, is a cpeptide, comprised of 23 amino acids. Obestatin(rat) suppresses food intake, inhibits jejunal contraction, and decreases body-weight gain. Obestatin is an endogenous ligand of G-protein coupled receptor 39 (GPR39). Obestatin(rat) has anti-inflammatory, anti-myocardial infarction and antioxidant activities.
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HY-P11651 Livagen
Livagen is a peptide with an activity of inducer with activity that increases the number of nucleolus organizers per cell and the number of nucleoli per cell. Livagen can be used for the research of nucleolus-related cellular processes.
Others  
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HY-P4260 LPP Tripeptide
LPP Tripeptide is a blood pressure lowering tripeptides. LPP Tripeptide can be used for research of hypertension.
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HY-W665456 Fmoc-PNA-U-OH
Fmoc‑PNA‑U‑OH is a peptide nucleic acid monomer that can be used for the synthesis of peptide nucleic acids (PNAs). Fmoc‑PNA‑U‑OH exhibits specific binding to adenine, resistance to enzymatic degradation, and strong hybridization properties. Fmoc‑PNA‑U‑OH can be applied in research fields such as gene diagnosis, molecular biology, and antisense therapy.
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HY-174935B DBCO-PEG3400-NHS
DBCO-PEG3400-NHS is a dibenzocyclooctyne-conjugated polyethylene glycol derivative bearing an NHS group. DBCO-PEG-NHS forms a stable covalent linkage with the amino group of target molecules via the NHS ester at one end, while introducing a DBCO group at the other end, thus preparing for subsequent click chemical conjugation with any azide-bearing molecule or material.
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HY-P0233AS Melittin-13C18,15N3 TFA
Melittin-13C18,15N3 TFA is the 15N- and 13C-labeled Melittin TFA (HY-P0233A). Melittin TFA is a PLA2 activator, stimulates the activity of the low molecular weight PLA2, while it does not the increase activity of the high molecular weight PLA2.
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HY-B1812S3 Veratrole-d6
Veratrole-d6 is the deuterium labeled Veratrole. Veratrole (1,2-Dimethoxybenzene) is a key compound that widely exists in plants and attracts pollinators. The release of Veratrole has a circadian rhythm and plays an important role in plant reproduction, species differentiation, and interactions with pollinators. In addition, Veratrole can be demethylated by cytochrome P-450 in Streptomyces setonii.
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HY-N18772 Arthrospira platensis extract
Arthrospira platensis extract is a nutrient-rich and bioactive substance derived from spirulina (Arthrospira platensis) that enhances the immune system, has antioxidant and anti-inflammatory effects, and has potential cardiovascular health benefits.
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HY-120521 Urodilatin
Urodilatin is an analogue of ANF-(99-126). Urodilatin is a diuretic-natriuretic regulatory peptide. Urodilatin can be used for research of acute renal failure, congestive heart failure, and bronchial asthma, etc.
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HY-N15743 Anti-Heart Failure Agent 2
Anti-Heart Failure Agent 2 (Compound 1) is an anti-heart failure agent with anti-inflammatory activity found in processed Cornus officinalis. Anti-Heart Failure Agent 2 inhibits NO release in LPS-induced RAW264.7 cells. Anti-Heart Failure Agent 2 alleviates myocardial ischemia-reperfusion injury, reduces myocardial infarction size, and improves myocardial histopathological changes. Anti-Heart Failure Agent 2 is promising for research of heart failure.
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HY-P1245A Neuropeptide SF (human) acetate
Neuropeptide SF (human) acetate augments paraventricular corticotrophin-releasing hormone (CRH) release and increases adrenocorticotropic hormone (ACTH) and corticosterone levels in the plasma. Neuropeptide SF (human) acetate play a physiologic role in the regulation of such circadian functions as the activity of motor centers and the HPA axis, through the release of CRH.
CRFR  
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HY-W744298 Trandolapril-d3
Trandolapril-d3 is the deuterium labeled Trandolapril (HY-B0592). Trandolapril (RU44570) is a nonsulfhydryl proagent that is hydrolysed to the active diacid Trandolaprilat. Trandolapril is an orally administered angiotensin converting enzyme (ACE) inhibitor that has been used in the treatment of hypertension and congestive heart failure (CHF), and after myocardial infarction (MI).
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HY-P990510 Anti-SLC40A1 Antibody
Anti-SLC40A1 Antibody is a human-derived antibody expressed in CHO, targeting SLC40A1. The predicted molecular weight (MW) of Anti-SLC40A1 Antibody is 150 kDa.

Species: Human

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HY-17380S (S)-Timolol-d9 maleate
(S)-Timolol-d9 (maleate) is deuterium labeled (S)-Timolol (Maleate). (S)-Timolol Maleate (L-714,465 Maleate) is a non-cardioselective hydrophilic β-adrenoceptor blocker. (S)-Timolol Maleate is widely used as standard medication for intraocular pressure (glaucoma) by preventing the production of aqueous humor. (S)-Timolol Maleate can be used for hypertension, angina pectoris and myocardial infarction.
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HY-117616 Laurotetanine
Laurotetanine ((+)-Laurotetanine) is an potent and orally active isoquinoline alkaloid and could be extracted from the roots of Litsea cubeba (Lour.) Pers. Laurotetanine exerts an anti-asthmatic effect by inhibition of IgE, histamine, and inflammatory reactions via down-regulating MUC5AC and NF-κB signaling pathways.
NF-κB  
Cancer  
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HY-119802S Practolol-d7
Practolol-d7 is the deuterium labeled Practolol. Practolol is a potent and selective β1-adrenergic receptor antagonist. Practolol can be used for the research of cardiac arrhythmias.
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HY-P11858 DP1 peptide
DP1 peptide is a high-affinity ROR1-binding peptide with a Kd value of 74.9 nM. When labeled with 68Ga, DP1 peptide serves as a PET imaging agent, which features rapid tumor uptake, favorable target-to-nontarget ratios in various tumor models, and renal clearance, enabling non-invasive quantitative visualization of ROR1 expression. DP1 peptide can be used in research related to melanoma, hepatocellular carcinoma, colorectal cancer, and non-small cell lung cancer.
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HY-P3317 Azaline
Azaline (Azaline A) is a gonadotropin-releasing hormone (GnRH) receptor antagonist with a KD value of 0.48 nM. Azaline can effectively induce histamine release, with an effect comparable to that of GnRH, and it can completely inhibit ovulation at a dose of 2.0-3.0 μg per female rat. Azaline has potential applications in regulating reproductive functions.
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HY-P992337 CS5001 Antibody
CS5001 Antibody is an IgG1 human monoclonal antibody targeting ROR1. CS5001 Antibody can be used for the synthesis of the ADC CS5001. It is applicable to research related to advanced solid tumors and lymphomas. The recommended isotype control is human IgG1 kappa (HY-P99001).

Species: Human

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HY-Y0537J Potassium chloride, meets analytical specification of Ph. Eur., BP, USP, FCC, E508, ≤0.0001% Al
Potassium chloride, meets analytical specification of Ph. Eur., BP, USP, FCC, E508, ≤0.0001% Al is a neutral potassium salt that can be used for buffer preparation, and can be used in biochemical research.
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HY-P2060 CGP 44099
CGP 44099 is a renin inhibitor. CGP 44099 can be used to study the ischemic injury and reperfusion arrhythmias in rat hearts.
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HY-N20270 Trichosanthis fructus extract
Trichosanthis fructus extract is an extract of Trichosanthis fructus that can be used in research on angina pectoris, heart failure, myocardial infarction, pulmonary heart disease, and cerebral ischemia.
Others  
Pain  
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HY-N19029 Vernodalin
Vernodalin is an orally active, cytotoxic sesquiterpene lactone with a Kd value of 9.55 μM for p38 MAPK. Vernodalin downregulates the expression of phosphorylated ERK, JNK, AKT, PI3K, mTOR, p38MAPK, FAK, MMP-2, MMP-9, and uPA, while upregulates the expression of TIMP-1 and TIMP-2. Vernodalin increases ROS production, upregulates the expression of Bax and caspase 3, downregulates the expression of Bcl-2, and induces apoptosis (apoptosis), oxidative stress response and cell cycle arrest. Vernodalin inhibits the proliferation, adhesion and metastasis of cancer cells. Vernodalin enhances the activity of VEGF-B, AMPK and eNOS signaling pathways. Vernodalin alleviates myocardial injury and restores hemodynamic parameters. Vernodalin inhibits the growth of Trypanosoma brucei rhodesiense. Vernodalin can be used in research related to various cancers including gastric cancer, colorectal cancer and lung cancer, as well as African human trypanosomiasis and myocardial infarction.
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HY-P10290 Neuropeptide Y (human) free acid
Neuropeptide Y (human) free acid is the deamidated form of Neuropeptide Y (human, rat, mouse) (HY-P0198). The amidation of Neuropeptide Y C-terminal tyrosine is critical for its function. Non-amidated Neuropeptide Y fails to elicit G protein signaling.
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HY-160513 Fmoc-PNA-Abasic(Boc)-OH
Fmoc‑PNA‑Abasic(Boc)‑OH is a synthetic peptide nucleic acid modified with Fmoc and Boc protecting groups. Fmoc‑PNA‑Abasic(Boc)‑OH can be used in molecular biology research.
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HY-N15744 Anti-Heart Failure Agent 3
Anti-Heart Failure Agent 3 (Compound 2) is an anti-heart failure agent with anti-inflammatory activity found in processed Cornus officinalis. Anti-Heart Failure Agent 3 inhibits NO release in LPS-induced RAW264.7 cells. Anti-Heart Failure Agent 3 alleviates myocardial ischemia-reperfusion injury, reduces myocardial infarction size, and improves myocardial histopathological changes. Anti-Heart Failure Agent 3 is promising for research of heart failure.
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HY-P2018 FK 33-824
FK 33-824, a synthetic analogue of Met-enkephalin, is a selective agonist of the μ-opioid receptor (μ-OR).
/
HY-B1812R Veratrole (Standard)
Veratrole (Standard) is the analytical standard of Veratrole. This product is intended for research and analytical applications. Veratrole (1,2-Dimethoxybenzene) is a key compound that widely exists in plants and attracts pollinators. The release of Veratrole has a circadian rhythm and plays an important role in plant reproduction, species differentiation, and interactions with pollinators. In addition, Veratrole can be demethylated by cytochrome P-450 in Streptomyces setonii.
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HY-N21954 Jacoline N-oxide
Jacoline N-oxide is a jacobine-like pyrrolizidine alkaloid N-oxide found in Jacobaea hybrid plants. Jacoline N-oxide shows no significant positive correlation with cinnabar moth (Tyria jacobaeae) oviposition preference (number of eggs or egg batches per plant) in Jacobaea F2 hybrid plants.
Others  
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HY-B0251S Eplerenone-d3
Eplerenone-d3 is the deuterium labeled Eplerenone. Eplerenone (Epoxymexrenone) is a selective, competitive and oreally active aldosterone antagonist with an IC50 of 138 nM. Eplerenone has low affinity for progesterone, androgen, estrogen and glucocorticoid receptors. Eplerenone can be used for hypertension and heart failure after myocardial infarction reserch.
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HY-18660S Ciraparantag-d8 (tetra(hydrochloride) diacetate)
Ciraparantag-d8 (PER977-d8) tetrahydrochloride diacetate is the deuterium labeled Ciraparantag (HY-18660). Ciraparantag is a thrombin and factor Xa inhibitor. Ciraparantag is a broad-spectrum reversal agent for anticoagulants, including low-molecular-weight heparin, unfractionated heparin, and certain direct oral anticoagulants. It is reported to antagonize the effects of all coagulants except VKAs and agratroban.
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HY-N18371 Decumbenine
Decumbenine (2-1) is an isoquinoline alkaloid found in Corydalis decumbens (Thunb.) Pers.
/
HY-P991895 PLG-101
PLG-101 is a human anti-CD8 antibody. PLG-101 can be used in research on acute myocardial infarction .

Species: Human

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HY-N15745 Anti-Heart Failure Agent 4
Anti-Heart Failure Agent 4 (Compound 3) is an anti-heart failure agent with anti-inflammatory activity found in processed Cornus officinalis. Anti-Heart Failure Agent 4 inhibits NO release in LPS-induced RAW264.7 cells. Anti-Heart Failure Agent 4 alleviates myocardial ischemia-reperfusion injury, reduces myocardial infarction size, and improves myocardial histopathological changes. Anti-Heart Failure Agent 4 is promising for research of heart failure.
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HY-174935C DBCO-PEG5000-NHS
DBCO-PEG5000-NHS is a dibenzocyclooctyne-conjugated polyethylene glycol derivative bearing an NHS group. DBCO-PEG-NHS forms a stable covalent linkage with the amino group of target molecules via the NHS ester at one end, while introducing a DBCO group at the other end, thus preparing for subsequent click chemical conjugation with any azide-bearing molecule or material.
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HY-106136 TIK-301
TIK-301 (PD-6735) is a chlorinated melatonin derivative and a potent, high-affinity and orally active melatonin MT1 and MT2 receptors agonist with Kis of 0.081 nM and 0.042 nM, respectively. TIK-301 is also a 5-HT2B/5-HT2C receptors antagonist with antidepressant action. TIK-301 has the potential for sleep disorders and other circadian rhythm disorders treatment.
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HY-143712S1 Allolithocholic Acid-d4
Allolithocholic Acid-d4 (3α-hydoxy-5α-Cholaoic Acid-d4, allo-LCA-d4) is deuterium labeled Allolithocholic acid (HY-143712). Allolithocholic acid is an orally active metabolite of Lithocholic acid (HY-B0172). Allolithocholic acid is a dual GPBAR1 agonist (EC50 = 2.7 μM) and RORγt inverse agonist (IC50 = 3.4 μM). Allolithocholic acid modulates immune and metabolic pathways, regulates immune cell polarization, prevents M1 macrophage and Th17 CD4 cell polarization. Allolithocholic acid improves insulin sensitivity, reduces liver lipid accumulation, reverses liver immunological, inflammatory and metabolic signaling dysregulation, restores bile acid homeostasis, adipose tissue histopathology/function, and intestinal microbiota composition, modulates intestinal immunity. Allolithocholic acid can be used for the researches of cancer, inflammayion, immunology and metabolic disease.
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HY-I0626S Cytosine-13C2,15N3
Cytosine-13C2,15N3 is the 13C-labeled and 15N-labeled Cytosine. Cytosine is one of the four main bases found in DNA and RNA. Cytosine modifications exhibit circadian oscillations that are involved in epigenetic diversity and aging.
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HY-P5415 DABCYL-GABA-Ser-Gln-Asn-Tyr-Pro-Ile-Val-Gln-EDANS
DABCYL-GABA-Ser-Gln-Asn-Tyr-Pro-Ile-Val-Gln-EDANS is a biological active peptide. (DABCYL-GABA-Ser-Gln-Asn-Tyr-Pro-Ile-Val-Gln-EDANS is also called HIV protease substrate I in some literature. It is widely used for the continuous assay for HIV protease activity. The 11-Kd protease (PR) encoded by the human immunodeficiency virus 1 (HIV-1) is essential for the correct processing of viral polyproteins and the maturation of infectious virus, and is therefore a target for the design of selective acquired immunodeficiency syndrome (AIDS) therapeutics. The FRET-based fluorogenic substrate is derived from a natural processing site for HIV-1 PR. Incubation of recombinant HIV-1 PR with the fluorogenic substrate resulted in specific cleavage at the Tyr-Pro bond and a time-dependent increase in fluorescence intensity that is linearly related to the extent of substrate hydrolysis. The fluorescence quantum yields of the HIV-1 PR substrate in the FRET assay increased by 40.0- and 34.4-fold, respectively, per mole of substrate cleaved. Because of its simplicity and precision in the determination of reaction rates required for kinetic analysis, this substrate offers many advantages over the commonly used HPLC or electrophoresis-based assays for peptide substrate hydrolysis by retroviral PRs. Abs/Em = 340nm/490nm.)
HIV  
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HY-P990310 19G9
19G9 is a human antibody expressed in CHO, targeting RG1. The predicted molecular weight (MW) of 19G9 is 145 kDa. The isotype control for 19G9 can refer to Human IgG1 kappa, Isotype Control (HY-P99001).

Species: Human

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HY-174935D DBCO-PEG10000-NHS
DBCO-PEG10000-NHS is a dibenzocyclooctyne-conjugated polyethylene glycol derivative bearing an NHS group. DBCO-PEG-NHS forms a stable covalent linkage with the amino group of target molecules via the NHS ester at one end, while introducing a DBCO group at the other end, thus preparing for subsequent click chemical conjugation with any azide-bearing molecule or material.
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HY-P992376 huXBR1-402
huXBR1-402 (NBE-002 Antibody) is a high-affinity (Kd=5.8 nM) humanized chimeric rabbit/human monoclonal antibody that targets ROR1. huXBR1-402 specifically binds to the Ig/Fz domain epitope of human ROR1, directly inhibits the proliferation of ROR1-positive tumor cells and induces apoptosis of leukemia cells (apoptosis).

Species: Human

ROR  
Cancer  
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HY-P5153 ProTx-III
ProTx-III is a selective and potent inhibitor of voltage-gated sodium channel Nav1.7, with an IC50 of 2.1 nM. ProTx-III is a spider venom peptide isolated from the venom of the Peruvian green velvet tarantella. ProTx-III has a typical inhibitor cystine knot motif (ICK). ProTx-III is able to reverse the pain response. ProTx-III can be used to study diseases such as chronic pain, epilepsy, and arrhythmia.
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HY-Y1309S 1-Naphthol-d8
1-Naphthol-d8 is the deuterium labeled 1-Naphthol. 1-naphthol is an excited state proton transfer (ESPT) fluorescent molecular probe.
/
HY-P1129 AR-M1896
AR-M1896 is a GalR2 selective agonist with a binding IC50 of 1.76 nM for rat GalR2. AR-M1896 can be used for the research of acute myocardial infarction and neuropathic pain.
/
HY-N10987 Spiranthesol
Spiranthesol is an active compound. Spiranthesol can be isolated from the aerial parts of Spiranthes sinensis(Pers.) .

Source: Spirantes sinensis

Others  
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HY-D1609 BODIPY FL Verapamil hydrochloride
BODIPY FL Verapamil hydrochloride is a fluorescent dye, it can be used as a molecular probe to label tissues and cells. BODIPY FL Verapamil hydrochloride is a substrate for both ABCB1 and ABCC1.
/
HY-P3834 Antiarrhythmic peptide (cattle atrium)
Antiarrhythmic peptide (cattle atrium), a hexapeptide, shows a protective effect against experimental agent induced arrhythmias.
/
HY-B1812S2 Veratrole-d10
Veratrole-d10 is the deuterium labeled Veratrole. Veratrole (1,2-Dimethoxybenzene) is a key compound that widely exists in plants and attracts pollinators. The release of Veratrole has a circadian rhythm and plays an important role in plant reproduction, species differentiation, and interactions with pollinators. In addition, Veratrole can be demethylated by cytochrome P-450 in Streptomyces setonii.
/
HY-10984S Pomalidomide-d5
Pomalidomide-d5 is deuterium labeled Pomalidomide. Pomalidomide, the third-generation immunomodulatory agent, acts as molecular glue. Pomalidomide interacts with the E3 ligase cereblon and induces degradation of essential Ikaros transcription factors.
/
HY-P11041 VS-IP1
VS-IP1 is an interfering peptide that blocks viperin-mediated STAT1 degradation, thereby preventing coxsackievirus B3 (CVB3)-induced acute heart failure (AHF).
/
HY-P4138 Antennapedia Peptide FAM-labeled
Antennapedia Peptide FAM-labeled is a fluorophore labeled peptide. Antennapedia Peptide FAM-labeled also can be used for the research of cancer as a molecular probe.
/
HY-B0209S Metolazone-d7
Metolazone-d7 is deuterium labeled Metolazone. Metolazone (SR-720-22) is primarily used to treat congestive heart failure and high blood pressure.
/
HY-B0191S Bimatoprost-d5
Bimatoprost-d5 is a deuterium labeled Bimatoprost. Bimatoprost is a prostaglandin analog and is a topical hypotensive agent frequently used for treating ocular hypertension and glaucoma. Bimatoprost also has an antiadipogenic effect.
/
HY-P991906 TRPH-222 Antibody
TRPH-222 Antibody (CD22-4AP Antibody) is an anti-human CD22 antibody site-specifically modified at one site per heavy chain to express formylglycine (FG), allowing site-specific conjugation of a maytansinoid payload, a protease-insensitive spacer, and a functional group for coupling to an aldehyde on antibody FG residues. TRPH-222 Antibody can generate antibody drug conjugate (ADC) (TRPH-222) with an ADC payload and a linker. TRPH-222 Antibody can be used for the study of NHL (non-Hodgkin's lymphoma).

Species: Human

Cancer  
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HY-157356 Violet Red Bile Glucose Agar
Violet Red Bile Glucose Agar can be used for counting intestinal bacteria and identification of enterobacteriaceae. The composition of 1 liter of Violet Red Bile Glucose Agar contains: 7.0 g gelatin pancreatic enzyme hydrolysate, 3.0 g yeast extract powder, 1.5 g sodium deoxycholate, 10.0 g glucose, 5.0 g sodium chloride, 0.03 g neutral red, 0.002 g crystal violet, and 15.0 g agar in per liter.
Bacterial  
/
HY-134192 TH301
TH301 is a Phenylpyrazole derivative. TH301 selectively stabilize CRY2. TH301 dose-dependently prolongs circadian period.
/
HY-B0432AS4 Propafenone-(phenyl-d5) hydrochloride
Propafenone-(phenyl-dd5) (hydrochloride) is the deuterium labeled Propafenone hydrochloride[1]. Propafenone hydrochloride is a class of anti-arrhythmic medication, which treats illnesses associated with rapid heart beats such as atrial and ventricular arrhythmias[2].
/
HY-179514 Gala-SR
Gala-SR (Gala-SR1078) is an RORα agonist. Gala-SR ameliorates rhythm disorders by enhancing the amplitude of the circadian rhythm. Gala-SR can be used for the study of periodontitis.
/
HY-116046 GR 196429
GR 196429 is a melatonin receptor agonist with some selectivity for the MT1 subtype. GR 196429 produces both sleep-promoting effects and alterations of circadian rhythm, as well as stimulating melatonin release in mice.
/
HY-N21583 Dracoflavan B2
Dracoflavan B2 is an allosteric activator of pyruvate carboxylase (PC) that enhances Oxaloacetic acid (HY-W010382) production by inducing conformational changes in the BCCP domain, restores mitochondrial function, and improves metabolism, while also exhibiting anti-inflammatory activity. Dracoflavan B2 can be used for research on myocardial infarction.
/
HY-N0155R Nobiletin (Standard)
Nobiletin (Standard) is the analytical standard of Nobiletin. This product is intended for research and analytical applications. Nobiletin is a poly-methoxylated flavone from the citrus peel that improves memory loss. Nobiletin is a retinoid acid receptor-related orphan receptors (RORs) agonist. Nobiletin can reduce reactive oxygen species (ROS) levels in differentiated C2C12 myotubes and has anti-inflammation and anti-cancer properties, including anti-angiogenesis, anti-proliferation, anti-metastasis and induced apoptosis.
/
HY-148766 VU661
VU661, a phenazine carboxamide, is a modulator of circadian rhythms to produce a period lengthening of the circadian rhythm. VU661 is a redox-active small molecule .
/
HY-P2632 RAD16-I
RAD16-I (RADA16) is a non-directed self-assembling peptide hydrogel. Under physiological conditions, RAD16-I spontaneously forms a three-dimensional nanofiber network that mimics the extracellular matrix, and possesses excellent properties such as high water content, biocompatibility and degradability. RAD16-I serves as an ideal scaffold for three-dimensional cell culture. RAD16-I not only maintains cell viability and induces self-organization, but also supports cell adhesion, proliferation, differentiation and insulin secretion, effectively stabilizes islet clusters and promotes directed differentiation of the cardiac lineage. RAD16-I can construct a cell-friendly nano-microenvironment for research related to diseases such as myocardial infarction and diabetes.
/
HY-P3227 Cyclo(Ala-Arg-Gly-Asp-Mamb)
Cyclo(Ala-Arg-Gly-Asp-Mamb) is a selective RGD peptide antagonist and has the potential for Pulmonary arterial hypertension research.
/
HY-103292 [Phe8Ψ(CH-NH)Arg9]-Bradykinin
[Phe8Ψ(CH-NH)Arg9]-Bradykinin is a selective Bradykinin receptor B2 agonist (not cleaved by protein kinase I/II). [Phe8Ψ(CH-NH)Arg9]-Bradykinin has potential for the research of hypertension.
/
HY-P990609 KHK-2866
KHK-2866 is a recombinant humanized monoclonal antibody targeting heparin-binding epidermal growth factor-like growth factor (HB-EGF). The predicted molecular weight (MW) of KHK-2866 is 147.68 kDa. KHK-2866 can be used for tumor research.

Species: Human

/
HY-N12410 3,5-Diprenyl-4-hydroxyacetophenone
3,5-Diprenyl-4-hydroxyacetophenone (compound 8) is a calmodulin-targeting molecule compound isolated from the aerial parts of Ageratina grandifolia.
Others  
/
HY-P11572 NAVPITPTLNR
NAVPITPTLNR, a casein-derived peptide, is an angiotensin I‐converting enzyme (ACE) inhibitor. NAVPITPTLNR can be used for hypertension research.
/
HY-P11859 NP1
NP1 is a NOTA-chelated linear precursor based on the ROR1-targeting peptide. After labeling with [18F]AlF, NP1 yields [18F]AlF-NP1, a PET imaging probe with excellent ROR1 specificity (KD = 141.7 nM), rapid tumor uptake and high target-to-background ratio, which is suitable for non-invasive visualization of various ROR1-overexpressing tumors.
/
HY-P1704 Cyclosporin E
Cyclosporin E (11-Demethylcyclosporin A) is a cyclic oligopeptide that can be isolated from fungi such as TTrichoderma polysporum and other imperfect fungi. Cyclosporin E belongs to the Cyclosporins family. Cyclosporin E can be used for studying the structure-activity relationships and molecular dynamic properties of cyclosporin compounds. As a structural control compound, Cyclosporin E holds significant research value in the fields of medicinal chemistry and biophysics.

Source: Trichoderma polysporum

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HY-113071AR Mevalonic acid lithium salt (Standard)
Mevalonic acid lithium salt (Standard) is the analytical standard of Mevalonic acid lithium salt. This product is intended for research and analytical applications. Mevalonic acid (MVA) lithium salt is a precursor substance of the mevalonate pathway, which is essential for cell growth and proliferation. Mevalonic acid lithium salt is effective in inhibiting Simvastatin (HY-17502)-induced decrease in C2C12 cell viability in vitro. Mevalonic acid lithium salt can be used in studies of myopathy and heart failure.
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HY-N10452 Methyl maslinate
Methyl maslinate is a β-adrenergic antagonist. Methyl maslinate is a potent cardiotonic and antidysrhythmic agent. Methyl maslinate has the potential for hypertension research.
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HY-A0115S2 Ramiprilat-d4 hydrochloride
Ramiprilat-d4 hydrochloride is deuterated labeled Ramiprilat (HY-A0115). Ramiprilat (HOE 498 diacid), an active metabolite of Ramipril, is a potent and orally active angiotensin converting enzyme (ACE) inhibitor with a Ki value of 7 pM. Ramiprilat can be used for high blood pressure and heart failure research.
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HY-D2510 Cy3-PEG2000-SH
Cy3-PEG2000-SH (Cy3-PEG-Thiol) is a near infrared fluorescent labeling reagent that combines Cy3 fluorescent dye, polyethylene glycol (PEG) and sulfhydryl (SH) polyethylene glycol derivatives, and is suitable for molecular coupling. Cy3-PEG2000-SH is absorbed at 550nm and has high solubility and end-group substitution rate.
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HY-108468R KL001 (Standard)
KL001 (Standard) is the analytical standard of KL001 (HY-108468). This product is intended for research and analytical applications. KL001 is a first-in-class cryptochrome (CRY, a flavoproteins that are sensitive to blue light, and is involved in the circadian rhythms of plants and animals) stabilizer which specifically interacts with CRY1 and CRY2. KL001 prevents ubiquitin-dependent degradation of CRY, resulting in lengthening of the circadian period. KL001 has the potential to control fasting hormone-induced gluconeogenesis.
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HY-A0154R Deslanoside (Standard)
Deslanoside (Standard) is the analytical standard of Deslanoside. This product is intended for research and analytical applications. Deslanoside (Desacetyllanatoside C) is a rapidly acting cardiac glycoside used to treat congestive heart failure and supraventricular arrhythmias due to reentry mechanisms, and to control ventricular rate in the treatment of chronic atrial fibrillation. Deslanoside inhibits the Na-K-ATPase membrane pump, resulting in an increase in intracellular sodium and calcium concentrations .
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HY-P990407 Anti-EPOR Antibody
Anti-EPOR Antibody is a humanized antibody expressed in CHO, targeting EPOR. The predicted molecular weight (MW) of Anti-EPOR Antibody is 150 kDa. The isotype control for Anti-EPOR Antibody can refer to Human IgG2 kappa, Isotype Control (HY-P99002).

Species: Human

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HY-W011425A NTPO trisodium
NTPO trisodium is a DNA damage inducer, causing genomic DNA damage and fragmentation, activating ATR-mediated cell cycle checkpoints. The DNA damaging effects of NTPO trisodium are abrogated by base excision repair (BER) but not nucleotide excision repair (NER).
Others  
Cancer  
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HY-B0202S3 Irbesartan-d7
Irbesartan-d7 is deuterated labeled Irbesartan (HY-B0202). Irbesartan (SR-47436) is an orally active Ang II type 1 (AT1) receptor blocker (ARB). Irbesartan can relax the blood vessels, low blood pressure and increase the supply of blood and oxygen to the heart. Irbesartan can be used for the research of high blood pressure, heart failure, and diabetic kidney disease.
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HY-D2513 Cy3-PEG10000-SH
Cy3-PEG10000-SH (Cy3-PEG-Thiol) is a near infrared fluorescent labeling reagent that combines Cy3 fluorescent dye, polyethylene glycol (PEG) and sulfhydryl (SH) polyethylene glycol derivatives, and is suitable for molecular coupling. Cy3-PEG10000-SH is absorbed at 550nm and has high solubility and end-group substitution rate.
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HY-136177R Tris(2,4-di-tert-butylphenyl)phosphate (Standard)
Tris(2,4-di-tert-butylphenyl)phosphate (Standard) is the analytical standard of Tris(2,4-di-tert-butylphenyl)phosphate. This product is intended for research and analytical applications. Tris(2,4-di-tert-butylphenyl)phosphate is an active compound from the leaves of Vitex negundo L. shows anti-inflammatory activity with evidence of inhibition for secretory Phospholipase A2 (sPLA2) through molecular docking.
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HY-B0632S2 Diltiazem-d4
Diltiazem-d4 is deuterium labeled Diltiazem. Diltiazem is an orally active L-type Ca2+ channel blocker. Diltiazem shows antihypertensive and antiarrhythmic effects. Diltiazem can be used for the research of cardiac arrhythmia, hypertension, and angina pectoris.
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HY-18206S1 (S)-Lisinopril-d5 sodium
(S)-Lisinopril-d5 (sodium) (MK-521-d5 (sodium)) is deuterium labeled Lisinopril. Lisinopril (MK-521) is angiotensin-converting enzyme inhibitor, used in treatment of hypertension, congestive heart failure, and heart attacks.
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HY-14803S Tasimelteon-d5
Tasimelteon-d5 is the deuterium labeled Tasimelteon. Tasimelteon (BMS-214778) is an orally active and selective dual melatonin receptor agonist (DMRA). Tasimelteon has 2.1-4.4 times greater affinity for the MT2 receptor than for the MT1 receptor. Tasimelteon is a circadian regulator and has the potential for Non-24-Hour Sleep-Wake Disorder (Non-24).
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HY-B0432AS3 Propafenone-d5 hydrochloride(Ethyl)
Propafenone-d5 Ethyl (hydrochloride) is the deuterium labeled Propafenone hydrochloride. Propafenone (SA-79)hydrochloride is a class of anti-arrhythmic medication, which treats illnesses associated with rapid heart beats such as atrial and ventricular arrhythmias.
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HY-B1812S4 Veratrole-d2-1
Veratrole-d2-1 is the deuterium labeled Veratrole (HY-B1812). Veratrole (1,2-Dimethoxybenzene) is a key compound that widely exists in plants and attracts pollinators. The release of Veratrole has a circadian rhythm and plays an important role in plant reproduction, species differentiation, and interactions with pollinators. In addition, Veratrole can be demethylated by cytochrome P-450 in Streptomyces setonii.
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HY-17494S1 Timolol-d9 maleate
Timolol-d9 (maleate) is deuterium labeled Timolol. Timolol is a β-blocker available for both topical and systemic administration. Topical Timolol is primarily used to reduce intraocular pressure with open-angle glaucoma and ocular hypertension. Timolol can also be used for the research of infantile hemangiomas, hypertension, myocardial infarction, migraine prophylaxis, and atrial fibrillation.Timolol also has cardioprotective effect.
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HY-P991758 Anti-Mouse PDGFRα Antibody (APA5)
Anti-Mouse PDGFRα Antibody (APA5) reacts with mouse PDGFRα. Anti-Mouse PDGFRα Antibody (APA5) can be used to block PDGFRα in vitro and in vivo. Anti-Mouse PDGFRα Antibody (APA5) can be used for the study of pulmonary hypertension. Recommend Isotype Controls: Rat IgG2a kappa, Isotype Control (HY-P990679).

Species: Mouse

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HY-P992108 Efadirelaxin alfa
Efadirelaxin alfa (RELAX10) is a highly selective agonist of relaxin/insulin-like family peptide receptor RXFP1. After subcutaneous administration in animal experiments, Efadirelaxin alfa exhibits a significantly prolonged terminal half-life (7 days in mice, 3.75 days in rats), and shows no activity against related receptors such as RXFP2 and RXFP3. Efadirelaxin alfa has significant anti-cardiac hypertrophy and anti-fibrotic effects. Efadirelaxin alfa effectively attenuates and reverses cardiac hypertrophy and collagen deposition by regulating the TGF-β1/Smad2 and AKT/eNOS signaling pathways. Efadirelaxin alfa improves cardiac systolic function without causing fluctuations in blood pressure or heart rate, demonstrating favorable safety. Efadirelaxin alfa is currently mainly used in studies related to heart failure.

Species: Human

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HY-N2037R Higenamine (Standard)
Higenamine (Norcoclaurine), a β2-AR agonist with antioxidant capability, is a key component of the Chinese herb aconite root that prescribes for treating symptoms of heart failure in the oriental Asian countries. Higenamine is also a α1-adrenergic receptor antagonist with hypotensive effect. is a selective LSD1 inhibitor (IC50=1.47 μM) that can be isolated from aconite. Higenamine hydrochloride has anti-inflammatory and antibacterial activity. Higenamine protects myocyte Apoptosis and ischemia/reperfusion (I/R) injury through selective activation of beta2-adrenergic receptor (β2-AR). Higenamine also reduces I/R-induced myocardial infarction in mice. Higenamine can attenuate IL-1β-induced Apoptosis through ROS-mediated PI3K/Akt signaling pathway. Higenamine protects brain cells from oxygen deprivation. Higenamine can promote bone formation in osteoporosis through the SMAD2/3 pathway. Higenamine can be used to study cancer, inflammation, cardiorenal syndrome and other diseases.
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HY-100713S Temocapril-d5
Temocapril-d5 is the deuterium labeled Temocapril. Temocapril is an angiotensin-converting enzyme (ACE) inhibitor. Temocapril hydrochloride can be used for the research of hypertension, congestive heart failure, acute myocardial infarction, insulin resistance, and renal diseases.
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HY-W015883AR Fumaric acid disodium (Standard)
Fumaric acid disodium (Standard) is the analytical standard of Fumaric acid disodium (HY-W015883A). This product is intended for research and analytical applications. Fumaric acid disodium is an unsaturated dicarbonic acid, an intermediate product of the citric acid cycle that provides intracellular energy in the form of ATP. Fumaric acid disodium exerts anti-inflammatory effects by inhibiting the NF-κB signaling pathway dependent on p38 MAPK. Fumaric acid disodium can be used in the study of pregnancy-induced hypertension.
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HY-169220S RORγ/DHODH-IN-1
RORγ/DHODH-IN-1 (compound 1404), a deuterium labeled compound, is a dual RORγ and DHODH inhibitor with IC50 values of 9.7 nM and 100 nM, repaectively. RORγ/DHODH-IN-1 blocks the replication of SARS-CoV-2, HCMV, and non-enveloped DNA virus (HAdV5).
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HY-174935 DBCO-PEG1000-NHS
DBCO-PEG1000-NHS is a dibenzocyclooctyne-conjugated polyethylene glycol derivative bearing an NHS group. DBCO-PEG-NHS forms a stable covalent linkage with the amino group of target molecules via the NHS ester at one end, while introducing a DBCO group at the other end, thus preparing for subsequent click chemical conjugation with any azide-bearing molecule or material.
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HY-P10391 Ser-Ala-Pro
Ser-Ala-Pro is an X-Pro structure specific angiotensin-converting enzyme (ACE) inhibitory peptide. Ser-Ala-Pro has the potential for hypertension research.
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HY-B0202AS Irbesartan-d7 hydrochloride
Irbesartan-d7 hydrochloride is deuterated labeled Irbesartan hydrochloride (HY-B0202A). Irbesartan (SR-47436) hydrochloride is an orally active Ang II type 1 (AT1) receptor blocker (ARB). Irbesartan hydrochloride can relax the blood vessels, low blood pressure and increase the supply of blood and oxygen to the heart. Irbesartan hydrochloride can be used for the research of high blood pressure, heart failure, and diabetic kidney disease.
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HY-100813R Saclofen (Standard)
Saclofen (Standard) is the analytical standard of Saclofen.
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HY-N1933R Allocryptopine (Standard)
Allocryptopine (Standard) is the analytical standard of Allocryptopine. This product is intended for research and analytical applications. Allocryptopine, a derivative of tetrahydropalmatine, is extracted from Macleaya cordata (Thunb.) Pers. Papaveraceae. Allocryptopine has antiarrhythmic effects and potently blocks human ether-a-go-go related gene (hERG) current.
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HY-51327 CK1-IN-5
CK1-IN-5 (compound B-AZ) is an inhibitor of CK1. CK1-IN-5 lengthened the circadian period by inhibits AtCKL3/AtCKL4 activity.
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HY-D2511 Cy3-PEG3400-SH
Cy3-PEG3400-SH (Cy3-PEG-Thiol) is a near infrared fluorescent labeling reagent that combines Cy3 fluorescent dye, polyethylene glycol (PEG) and sulfhydryl (SH) polyethylene glycol derivatives, and is suitable for molecular coupling. Cy3-PEG3400-SH is absorbed at 550nm and has high solubility and end-group substitution rate.
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HY-B1433S Perindoprilat-d3 disodium
Perindoprilat-d3 disodium is deuterated labeled Perindoprilat (HY-B1433). Perindoprilat (S 9780) is an angiotensin-converting enzyme (ACE) inhibitor with the IC50 value ranging from 1.5 to 3.2 nM. Perindoprilat can be used in hypertension research.
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HY-B0592S2 rac-Trandolapril-d5
rac-Trandolapril-d5 (rac-RU44570-d5) is deuterium labeled Trandolapril. Trandolapril (RU44570) is a nonsulfhydryl proagent that is hydrolysed to the active diacid Trandolaprilat. Trandolapril is an orally administered angiotensin converting enzyme (ACE) inhibitor that has been used in the treatment of hypertension and congestive heart failure (CHF), and after myocardial infarction (MI).
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HY-B0432AS2 Propafenone-d5 hydrochloride
Propafenone-d5 (hydrochloride) is the deuterium labeled Propafenone hydrochloride. Propafenone (SA-79) hydrochloride is a class of anti-arrhythmic medication, which treats illnesses associated with rapid heart beats such as atrial and ventricular arrhythmias[1].
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HY-N15418 Mikanolide
Mikanolide is a sesquiterpene that has antibacterial properties. Mikanolide inhibits the growth of Staphylococcus aureus with a zone of 14 mm at a concentration of 100 μg per disk.
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HY-169222S RORγ/DHODH-IN-2
RORγ/DHODH-IN-2 (Compound 1311) is an orally active dual inhibitor of RORγ/DHODH with IC50 values of 11.9 nM and 90 nM, respectively. RORγ/DHODH-IN-2 exhibits antiviral activity by inhibiting the activity of SARS-CoV-2, HCMV, HAdV5, and MPXV, with IC50 values of 27 nM, 20 nM, 9.1 nM, and 1.8 nM, respectively.
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HY-119816S Piretanide-d4
Piretanide-d4 is the deuterium labeled Piretanide. Piretanide is an oral active, relatively safe and effective diuretic. Piretanide has the potential for the research of congestive heart failure with a potential advantage of having potassium-sparing properties. Piretanide can also be used for the research of hypertension[1][2].
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HY-113440R 5-Methoxytryptophol (Standard)
5-Methoxytryptophol (Standard) is the analytical standard of 5-Methoxytryptophol. This product is intended for research and analytical applications. 5-Methoxytryptophol is a 5-methoxyindole alcohol structurally homologous to Melatonin (HY-B0075). It is secreted by the mammalian pineal gland and exhibits an inverse circadian rhythm. 5-Methoxytryptophol regulates bone metabolism by activating the ERK1/2 pathway. It reduces the levels of pro-inflammatory cytokines TNF-α and IL-1β, as well as proteolytic enzymes MMP-1 and MMP-2, in serum and dental pulp tissues, thereby ameliorating acute pulpitis. 5-Methoxytryptophol induces rapid sleep in mice, while high doses cause respiratory depression and death. 5-Methoxytryptophol. 5-Methoxytryptophol can be used in studies related to acute pulpitis, hypnosis, and bone metabolism.
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HY-104064R 1A-116 (Standard)
1A-116 (Standard) is the analytical standard of 1A-116 (HY-104064). This product is intended for research and analytical applications. 1A-116, a potent Rac1 inhibitor, is specific for W56 residues, can prevent EGF-induced Rac1 activation and block Rac1-P-Rex1 interaction. 1A-116 can induce apoptosis and inhibit cell proliferation, migration and cycle progression in a concentration-dependent manner. 1A-116 also demonstrates a high antimetastatic activity in vivo.
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HY-N13047 Ningnanmycin
Ningnanmycin is a plant antiviral agent. Ningnanmycin binds to specific residues on the TMV CP disc, inhibits CP assembly, disassembles the CP disc into monomers, and disrupts the structure of the TMV CP disc to reduce pathogenicity. Ningnanmycin binds to key amino acids of PVY CP, interferes with CP-CP interactions, inhibits CP assembly and virion formation, and blocks PVY replication. Ningnanmycin induces the expression of antiviral response genes PRXIIB, PRXIIE, PUB4 and PER42, thereby activating the host defense system. Ningnanmycin can be used in studies related to Tobacco Mosaic Virus infection and Potato Virus Y infection.

Source: Streptomyces noursei var.

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HY-14803R Tasimelteon (Standard)
Tasimelteon (Standard) is the analytical standard of Tasimelteon. This product is intended for research and analytical applications. Tasimelteon (BMS-214778) is an orally active and selective dual melatonin receptor agonist (DMRA). Tasimelteon has 2.1-4.4 times greater affinity for the MT2 receptor than for the MT1 receptor. Tasimelteon is a circadian regulator and has the potential for Non-24-Hour Sleep-Wake Disorder (Non-24).
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HY-N2333R Resiniferatoxin (Standard)
Resiniferatoxin (Standard) is the analytical standard of Resiniferatoxin (HY-N2333). This product is intended for research and analytical applications. Resiniferatoxin ((+)-Resiniferatoxin), is a selective agonist of transient receptor potential vanilloid 1 (TRPV1) receptor agonist. Resiniferatoxin can be isolated from the Euphorbia resinifera plant. Resiniferatoxin eliminates TRPV1+ primary sensory afferents and blunt cardiac sympathetic afferent reflex for a relatively long period.
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HY-N2253R Neoruscogenin (Standard)
Neoruscogenin (Standard) is the analytical standard of Neoruscogenin. This product is intended for research and analytical applications. Neoruscogenin, a member of the steroidal sapogenin family, is a high-affinity agonist of the nuclear receptor RORα (NR1F1) (EC50 = 0.11 μM).
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HY-18204S Valsartan-d9
Valsartan-d9 is deuterium labeled valsartan. Valsartan is an angiotensin II receptor antagonist and has the potential for high blood pressure and heart failure research.
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HY-10984S2 Pomalidomide-d4
Pomalidomide-d4 is the deuterium labeled Pomalidomide. Pomalidomide, the third-generation immunomodulatory agent, acts as molecular glue. Pomalidomide interacts with the E3 ligase cereblon and induces degradation of essential Ikaros transcription factors<
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HY-W109973 L-Tartaric acid diammonium
L-Tartaric acid diammonium (L-(+) -tartaric acid) is an orally active weak organic acid that can be isolated from grapes. L-Tartaric acid diammonium has vasodilatory and antihypertensive effects. L-Tartaric acid diammonium can be used as flavorings and antioxidants in a range of foods and beverages. L-Tartaric acid diammonium can be used in laser frequency doubling and optical limiting applications.
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HY-P3429 SAMβA
SAMβA is conjugated to the cell permeable peptide TAT47-57. SAMβA, a rationally designed selective antagonist of Mfn1-βIIPKC association. SAMβA is a selective inhibitor of mitofusin 1-βIIPKC association improves heart failure outcome in rats.
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HY-B0437AS Sotalol-d6 hydrochloride
Sotalol-d6 (hydrochloride) is a deuterium labeled Sotalol hydrochloride. Sotalol hydrochloride is an orally active, non-selective competitive β-adrenergic receptor blocker. Sotalol hydrochloride is a potent antiarrhythmic agent that can be used for the research of pediatric arrhythmias. Sotalol hydrochloride blocks β-receptors, and potassium KCNH2 channels.
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HY-P3557A Mibenratide TFA
Mibenratide TFA, a small cyclic peptide, is an adrenergic β1 receptor antagonist. Mibenratide TFA can be used for heart failure research.
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HY-N1933 Allocryptopine
Allocryptopine, a derivative of tetrahydropalmatine, is extracted from Macleaya cordata (Thunb.) Pers. Papaveraceae. Allocryptopine has antiarrhythmic effects and potently blocks human ether-a-go-go related gene (hERG) current.
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HY-DY1088 Fluorescein-5-maleimide (solution)
Fluorescein-5-maleimide (solution) (N-(5-Fluoresceinyl)maleimide (solution)) is a fluorescent dye. Fluorescein-5-maleimide can be used to detect the redox state of thiols in eukaryotic cells. Fluorescein-5-maleimide can label peptides and is used to detect negatively charged nanoparticles. Fluorescein-5-maleimide can also label actin to explore its interaction with cardiac myosin-binding protein C (cMyBP-C), which helps in developing small molecule modulators for heart failure. Fluorescein-5-maleimide can screen mutant proteins that contain cysteine residues. The excitation wavelength of Fluorescein-5-maleimide is 494 nm, and the emission wavelength is 519 nm.

Solvent and concentration: DMSO: 10 mM
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HY-P99886 Pexelizumab
Pexelizumab (h5G1. 1-SC) is a humanized scFv monoclonal antibody directed against the C5 complement component. Pexelizumab inhibits apoptosis and leukocyte infiltration. Pexelizumab can be used for the research of cerebral IR injury and myocardial infarction.

Species: Human

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HY-D2170 AF488 streptavidin
AF488 streptavidin is a fluorescently labeled streptavidin. AF488 streptavidin is a streptavidin conjugated to Alexa Fluor 488, with 4 fluorophores per protein molecule, enabling stoichiometric fluorescent labeling of cell surface targets. AF488 streptavidin can form a complex with biotinylated E07 aptamer to stain cells expressing EGFR, and the staining is reversible after treatment with mA9 detoxifying oligonucleotides (Ex/Em = 470/520 nm).
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HY-174935A DBCO-PEG2000-NHS
DBCO-PEG2000-NHS is a dibenzocyclooctyne-conjugated polyethylene glycol derivative bearing an NHS group. DBCO-PEG-NHS forms a stable covalent linkage with the amino group of target molecules via the NHS ester at one end, while introducing a DBCO group at the other end, thus preparing for subsequent click chemical conjugation with any azide-bearing molecule or material.
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HY-128677 NCC007
NCC007 is a dual casein kinase Iα (CKIα) and δ (CKIδ) inhibitor with IC50s of 1.8 and 3.6 μM, respectively. NCC007 can be used in research of modulating mammalian circadian rhythms.
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HY-17429S Flecainide-d4 acetate
Flecainide-d4 (acetate) is the deuterium labeled Flecainide acetate. Flecainide acetate (R-818) is a class 1C antiarrhythmic agent especially used for the management of supraventricular arrhythmia; works by blocking the Nav1.5 sodium channel in the heart, causing prolongation of the cardiac action potential.
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HY-B1812S Veratrole-d4
Veratrole-d4 is the deuterium labeled Veratrole. Veratrole (1,2-Dimethoxybenzene) is a key compound that widely exists in plants and attracts pollinators. The release of Veratrole has a circadian rhythm and plays an important role in plant reproduction, species differentiation, and interactions with pollinators. In addition, Veratrole can be demethylated by cytochrome P-450 in Streptomyces setonii.
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HY-P5107A Low molecular weight protamine acetate
Low molecular weight protamine acetate (LMWP acetate;TDSP5 acetate) is a truncated arginine-rich protamine peptide, which also acts as an antidote for heparin/low molecular weight heparin and a cell-penetrating delivery vector. Low molecular weight protamine acetate neutralizes heparin-induced anticoagulant activities, including aPTT, anti-Xa and anti-IIa activities. Low molecular weight protamine acetate translocates across mammalian cell membranes, delivers conjugated impermeable molecules through tumor tissues, enhances the skin permeability of conjugated epidermal growth factor, and accelerates wound healing when conjugated with epidermal growth factor. Low molecular weight protamine acetate retains the in vitro cell proliferation activity of conjugated EGF, and also enables site-specific conjugation with peptides or proteins via genetic recombination. Low molecular weight protamine acetate can be used in studies related to colon cancer, skin wounds and diabetic skin wounds.
VEGFR  
Cancer  
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HY-B1812S1 Veratrole-d2
Veratrole-d2 is the deuterium labeled Veratrole. Veratrole (1,2-Dimethoxybenzene) is a key compound that widely exists in plants and attracts pollinators. The release of Veratrole has a circadian rhythm and plays an important role in plant reproduction, species differentiation, and interactions with pollinators. In addition, Veratrole can be demethylated by cytochrome P-450 in Streptomyces setonii.
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HY-105168 TAK 044
TAK 044 is an antagonist of Endothelin Receptor. TAK 044 strongly inhibits ET-induced deterioration in various animal models. TAK 044 can be used in study ET-related diseases such as acute myocardial infarction,acute renal failure, acute hepatic malfunction, and subarachnoid hemorrhage.
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HY-161096 Antitumor agent-127
Antitumor agent-127 (compound 1) is a parent macrocyclic peptide. Antitumor agent-127 displays nanomolar cell-based binding to ROR1 and relatively good internalization in 786-O and MDA-MB-231 tumor cell lines.
ROR  
Cancer  
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HY-I0626S1 Cytosine-13C,15N2
Cytosine-13C,15N2 is the 13C and 15N labeled Cytosine. Cytosine is one of the four main bases found in DNA and RNA. Cytosine modifications exhibit circadian oscillations that are involved in epigenetic diversity and aging.
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HY-P4257 L-Isoleucyl-L-arginine
L-Isoleucyl-L-arginine is a dipeptide formed from L-isoleucine and L-arginine residues. L-Isoleucyl-L-arginine is a potent angiotensin-converting enzyme (ACE) inhibitor. L-Isoleucyl-L-arginine can be used for research of hypertension.
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HY-18206S Lisinopril-d5
Lisinopril-d5 is the deuterium labeled Lisinopril. Lisinopril (MK-521) is angiotensin-converting enzyme inhibitor, used in treatment of hypertension, congestive heart failure, and heart attacks.
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HY-B1409S Isosorbide dinitrate-13C6
Isosorbide dinitrate-13C6 is the 13C labeled Isosorbide dinitrate. Isosorbide dinitrate (ISDN) is an NO donor that prevents LV remodeling and degradation of cardiac function following myocardial infarction (MI).
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HY-B0185G Lidocaine (GMP)
Lidocaine (GMP) is Lidocaine (HY-B0185) produced by using GMP guidelines. GMP small molecules work appropriately as an auxiliary reagent for cell therapy manufacture. Lidocaine inhibits sodium channels involving complex voltage and using dependence. Lidocaine decreases growth, migration and invasion of gastric carcinoma cells via up-regulating miR-145 expression and further inactivation of MEK/ERK and NF-κB signaling pathways. Lidocaine is an amide derivative and has potential for the research of ventricular arrhythmia.
Apoptosis   ERK   MEK   Sodium Channel   NF-κB  
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HY-N8228 17-Hydroxyneomatrine
17-Hydroxyneomatrine, extracted from Sophora flavescens, can well inhibit the growth of human cervical carcinoma Hela cells, has the wide-range antibacterial, anti-allergy, anti-tumor, anti-arrhythmia, swelling-subsiding diuresis, immunizing, and biological regulation functions.
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HY-15935 X-Gluc Dicyclohexylamine
X-Gluc Dicyclohexylamine is a dye reagent for the detection of β-glucuronidase, an enzyme produced by Escherichia coli. X-Gluc sodium can be used to detect E. coli contamination in food, water and the urinary tract. X-Gluc sodium is also widely used in molecular biology experiments to label and detect the expression of target genes (GUS reporter system).
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HY-P5119 Tat-peptide control 168-189
Tat-peptide 168-189 is a cell-permeable and Tat-labeled fusion peptide, corresponding to residues 168-189 of rat G3BP1. Tat sequence from HIV, is placed at the least conserved end of the sequence, for cell permeability. Tat-peptide 168-189 is the negtive control of Tat-peptide 190-208 (HY-P5118), as Tat-peptide 190-208 increases axon growth and increases the number of neurites per neuron.
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HY-17503S Metoprolol-d7
Metoprolol-d7 is the deuterium labeled Metoprolol. Metoprolol (Toprol) is a selective β1 receptor blocker used in treatment of several diseases of the cardiovascular system, especially hypertension[1][2].
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HY-P5119A Tat-peptide control 168-189 TFA
Tat-peptide 168-189 is a cell-permeable and Tat-labeled fusion peptide, corresponding to residues 168-189 of rat G3BP1. Tat sequence from HIV, is placed at the least conserved end of the sequence, for cell permeability. Tat-peptide 168-189 is the negtive control of Tat-peptide 168-189 TFA (HY-P5118A), as Tat-peptide 168-189 TFA increases axon growth and increases the number of neurites per neuron.
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HY-P5118 Tat-peptide 190-208
Tat-peptide 190-208 is a cell-permeable and Tat-labeled fusion peptide, corresponding to residues 190-208 of rat G3BP1. Tat sequence from HIV, is placed at the least conserved end of the sequence, for cell permeability. Tat-peptide 190-208 increases axon growth and increases the number of neurites per neuron. Tat-peptide 190-208 likely exhibits an axon intrinsic mechanism. Tat-peptide 190-208 can be used for ischemic protection during endovascular repair for intracranial aneurysms.
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HY-W587817 6-Sulfatoxymelatonin sodium
6-Sulfatoxymelatonin sodium is a metabolite of Melatonin (HY-B0075) and serves as a detection marker for Melatonin. 6-Sulfatoxymelatonin sodium shows a decreasing trend with increasing age, and its urinary excretion is closely correlated with plasma Melatonin levels, which can reflect changes in the secretion phase of melatonin. 6-Sulfatoxymelatonin sodium is associated with reduced risks of diabetic retinopathy and coronary heart disease, and can act as a biomarker for microvascular and macrovascular complications of type 2 diabetes mellitus. 6-Sulfatoxymelatonin sodium can be used in studies related to type 2 diabetes mellitus and coronary heart disease.
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HY-P5118A Tat-peptide 190-208 TFA
Tat-peptide 190-208 TFA is a cell-permeable and Tat-labeled fusion peptide, corresponding to residues 190-208 of rat G3BP1. Tat sequence from HIV, is placed at the least conserved end of the sequence, for cell permeability. Tat-peptide 190-208 TFA increases axon growth and increases the number of neurites per neuron. Tat-peptide 190-208 TFA likely exhibits an axon intrinsic mechanism. Tat-peptide 190-208 TFA can be used for ischemic protection during endovascular repair for intracranial aneurysms.
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HY-17494S (Rac)-Timolol-d5 maleate
rac Timolol-d5 (maleate) is a labelled racemic (S)-Timolol maleate. (S)-Timolol Maleate (L-714,465 Maleate) is a non-cardioselective hydrophilic β-adrenoceptor blocker. (S)-Timolol Maleate is widely used as standard medication for intraocular pressure (glaucoma) by preventing the production of aqueous humor. (S)-Timolol Maleate can be used for hypertension, angina pectoris and myocardial infarction.
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HY-P992008 PF-07868489
PF-07868489 is a recombinant monoclonal antibody targeting GDF2/BMP-9. PF-07868489 can be used for the research of pulmonary arterial hypertension (PAH). Recommend Isotype Controls: Human IgG1 kappa, Isotype Control (HY-P99001).

Species: Human

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HY-P3557 Mibenratide
Mibenratide, a small cyclic peptide, is an adrenergic β1 receptor antagonist. Mibenratide can be used for heart failure research.
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HY-177846 Liposomal Melatonin
Liposomal Melatonin is a specialized delivery system that encapsulates melatonin within tiny liposomes. These liposomes act as protective shells, enhancing the absorption and bioavailability of melatonin. Melatonin is an antioxidant, anti-inflammatory, fr
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HY-P3678 Neuropeptide Y (18-36) (porcine)
Neuropeptide Y (18-36) (porcine) is a competitive neuropeptide Y (NPY) cardiac receptor antagonist. Neuropeptide Y (18-36) (porcine) inhibits the binding of I-NPY to cardiac ventricular membranes in a concentration-dependent manner with an IC50 value of 158 nM and an Ki value of 140 nM. Neuropeptide Y (18-36) (porcine) can be used for the research of congestive heart failure.
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HY-W039283 MCH-1 antagonist 2
MCH-1 antagonist 2 (l-BROMO-2,4-DIFLUORO-5-NITROBEN-ZENE) is a melanin concentrating hormone-1 (MCH1) receptor-selective 4-aryl piperidine. MCH-1 antagonist 2 can be used for the research of depression, anxiety, obesity, urge incontinence, urinary incontinence, major depression, bipolar disorder, agoraphobia, specific phobia, social phobia, obsessive-compulsive disorder, post-traumatic stress disorder, acute stress disorder, urinary frequency, urinary urgency, nocturia, enuresis, bulimia, bulimia nervosa, anorexia nervosa, major depressive disorder, dysthymic disorder, bipolar 1 and 2 disorders, schizoaffective disorder, cognitive disorders with depressed mood, personality disorders, insomnia, hypersomnia, narcolepsy, circadian rhythm sleep disorder, nightmare disorder, sleep terror disorder, sleepwalking disorder, panic disorder, social anxiety disorder, generalized anxiety disorder, overactive bladder.
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HY-10984S1 Pomalidomide-d3
Pomalidomide-d3 is the deuterium labeled Pomalidomide. Pomalidomide, the third-generation immunomodulatory agent, acts as molecular glue. Pomalidomide interacts with the E3 ligase cereblon and induces degradation of essential Ikaros transcription factors.
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HY-W015787 2-Hydroxyphenylethanol
2-Hydroxyphenylethanol is a molecular chaperone that rescues misfolded P123S mutant pendrin, promoting translocation from the cytoplasm to the plasma membrane. 2-Hydroxyphenylethanol can be used for the research of pendred syndrome.
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HY-P990355 Anti-CD5 Antibody
Anti-CD5 Antibody is a human-derived antibody expressed in CHO, targeting CD5. Anti-CD5 Antibody contains huIgG1 heavy chains and huκ light chains, with a predicted molecular weight (MW) of 145.05 kDa.

Species: Human

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HY-P990005 Mouse IgG2a Fc, Isotype Control
Mouse IgG2a Fc, Isotype Control, is a Fc fragment of mouse IgG2a only and does not contain the Fab fragments. The molecular mass is about 52 kDa.
Others  
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HY-P6437A Drp1 peptide inhibitor P110 TFA
Drp1 peptide inhibitor P110 (Compound P110) TFA is a selective Drp1 peptide inhibitor with neuroprotective properties. Drp1 peptide inhibitor P110 TFA can inhibit the activation of Drp1, prevent MPTP (HY-15608)-induced Drp1 mitochondrial translocation, and alleviate MPTP-induced dopaminergic neuron loss, dopaminergic nerve terminal damage, and behavioral deficits, and can be used in the study of Alzheimer's disease. Additionally, Drp1 peptide inhibitor P110 TFA can reduce mitochondrial damage and organ injury in animal models of Huntington's disease, cerebral ischemic injury, and myocardial infarction.
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HY-113238F FITC-Lithocholic acid 3-sulfate
FITC-Lithocholic acid 3-sulfate (FITC-Sulfolithocholic acid) is a FITC-labeled Lithocholic acid 3-sulfate, which is a sulfated biliary metabolite. Lithocholic acid 3-sulfate selectively inhibits Th17 cell differentiation by targeting RORγt. Lithocholic acid 3-sulfate can be used for the research of pathogenesis of cholestatic liver diseases.
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HY-N7177 Hydroxytanshinone IIA
Hydroxytanshinone IIA is a hydrolytic metabolite of Tanshinone IIA (HY-N0135). Tanshinone IIA inhibits angiogenesis by targeting the protein kinase domain of VEGF/VEGFR2. Hydroxytanshinone IIA exhibits antioxidant and anti-inflammatory activities. Hydroxytanshinone IIA can be used in studies of angina pectoris and myocardial infarction.
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HY-N9528 Lyciumin A
Lyciumin A, a cyclic octapeptide, exhibits inhibitory activity on proteases, renin and angiotensin-converting enzyme. Lyciumin A can be used for the research of hypertension.
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HY-P99645 Goflikicept
Goflikicept (RPH 104) is a fusion protein that selectively binds and inactivates both circulating IL-1β and IL-1α. Goflikicept has the potential for the research of ST-segment elevation myocardial infarction (STEMI).
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HY-B0573BS Propranolol-d7
Propranolol-d7 is the deuterium labeled Propranolol. Propranolol is a nonselective β-adrenergic receptor (βAR) antagonist, has high affinity for the β1AR and β2AR with Ki values of 1.8 nM and 0.8 nM, respectively. Propranolol inhibits [3H]-DHA binding to rat brain membrane preparation with an IC50 of 12 nM. Propranolol is used for the study of hypertension, pheochromocytoma, myocardial infarction, cardiac arrhythmias, angina pectoris, and hypertrophic cardiomyopathy.
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HY-P99946 Erlizumab
Erlizumab (rhuMAb) is a monoclonal antibody against the Integrin b2/ITGB2/CD18 subunit of the Mac-1 receptor. Erlizumab can reduce reperfusion injury in myocardial infarction.

Species: Human

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HY-P6437 Drp1 peptide inhibitor P110
Drp1 peptide inhibitor P110 (Compound P110) is a selective Drp1 peptide inhibitor with neuroprotective properties. Drp1 peptide inhibitor P110 can inhibit the activation of Drp1, prevent MPTP-induced Drp1 mitochondrial translocation, and alleviate MPTP-induced dopaminergic neuron loss, dopaminergic nerve terminal damage, and behavioral deficits, and can be used in the study of Alzheimer's disease. Additionally, Drp1 peptide inhibitor P110 can reduce mitochondrial damage and organ injury in animal models of Huntington's disease, cerebral ischemic injury, and myocardial infarction.
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HY-121107S Chrysene-d12
Chrysene-d12 is the deuterium labeled Chrysene. Chrysene is a high molecular weight (HMW), polycyclic aromatic hydrocarbon (PAH) known for its recalcitrance and carcinogenic properties.
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HY-Y0261AS Ammonium sulphate-d8
Ammonium sulphate-d8 is the deuterium labeled Ammonium sulphate,≥99.0%,AR. Ammonium sulphate,≥99.0%,AR is an inorganic sulfate salt used for molecular biology.
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HY-P1245 Neuropeptide SF (human)
Neuropeptide SF human augments paraventricular corticotrophin-releasing hormone (CRH) release and increases adrenocorticotropic hormone (ACTH) and corticosterone levels in the plasma. Neuropeptide SF human play a physiologic role in the regulation of such circadian functions as the activity of motor centers and the HPA axis, through the release of CRH.
CRFR  
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HY-157521 AANAT-IN-1
AANAT-IN-1 is an arylalkylamine N-acetyltransferase (AANAT) inhibitor with a sheep AANAT IC50 of 9.9 μM. AANAT-IN-1 binds to the active site of sheep AANAT, interacting with amino acid residues via hydrogen bonds, hydrophobic interactions, ionic interactions, and water bridges, inhibiting the enzyme's catalytic activity. AANAT-IN-1 can be used for the researches of circadian rhythm-associated neuropsychiatric conditions, seasonal affective disorder, and other diseases associated with abnormally elevated melatonin levels.
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HY-P3429A SAMβA TFA
SAMβA TFA is a rationally designed selective antagonist of Mfn1-βIIPKC association and can bind to TAT (HY-P0281). SAMβA TFA is a selective inhibitor of mitofusin 1-βIIPKC association improves heart failure outcome in rats.
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HY-N1924 Crassicauline A
Crassicauline A (Crassicaulin A) is a diester-type diterpenoid alkaloid. Crassicauline A exhibits feeding deterrent activity against adult Tribolium castaneum, with a EC50 of 1134.5 ppm. Crassicauline A induces arrhythmia at a dose of 0.10 mg/kg.
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HY-P10728 B7-33
B7-33 is a single-chain relaxin mimetic and a selective relaxin receptor 1 (RXFP1) agonist. B7-33 phosphorylates ERK1/2 without inducing activation of the cAMP signaling pathway. B7-33 exhibits anti-fibrotic and cardioprotective activities. B7-33 can be used in the research of vascular diseases such as cardiomyopathy, myocardial infarction and fibrosis.
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HY-N11222 Nonanoylcarnitine
Nonanoylcarnitine is a metabolite associated with chronic environmental exposure to polycyclic aromatic hydrocarbons (PAH) and fragmented QRS waves in acute myocardial infarction. Nonanoylcarnitine can be used as a potential biomarker for the metabolic outcome of PAH exposure and the prognosis of acute myocardial infarction.
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HY-P991209 Nebratamig
Nebratamig (GNC-035) is an anti-ROR1/anti-CD3/anti-PD-L1/anti-4-1BB tetra-specific antibody with potential immunostimulatory and antineoplastic activities.

Species: Human

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HY-Y0850U3 PVA (Mw 125000, 98-99% hydrolyzed, ~2800 polymerization)
PVA (Polyvinyl alcohol) (Mw 125000, 98-99% hydrolyzed, ~2800 polymerization) is a water-soluble, biodegradable, biocompatible and non-immunogenic polymer. PVA (Mw 125000, 98-99% hydrolyzed, ~2800 polymerization) causes no irritation to rabbit eyes, no skin sensitization in guinea pigs, promotes the proliferation of human skin keratinocytes, and reduces the loss of corneal endothelial cells. The LD50 of PVA (Mw 125000, 98-99% hydrolyzed, ~2800 polymerization) in rats and dogs is greater than 10 g/kg. PVA (Mw 125000, 98-99% hydrolyzed, ~2800 polymerization) is hardly absorbed by the digestive system, causes no adverse effects upon long-term oral administration, and shows no mutagenicity or carcinogenicity. However, repeated intravenous or portal vein injection of PVA (Mw 125000, 98-99% hydrolyzed, ~2800 polymerization) may induce pathological changes such as glomerular lesions, anemia, hypertension or liver fibrosis in rats or dogs. Crosslinked nanofibers prepared by modifying PVA (Mw 125000, 98-99% hydrolyzed, ~2800 polymerization) can be used in studies related to wound dressings and other applications.
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HY-B0573S Propranolol-d7 hydrochloride
Propranolol-d7 (hydrochloride) is a deuterium labeled Propranolol hydrochloride. Propranolol hydrochloride is a nonselective β-adrenergic receptor (βAR) antagonist, has high affinity for the β1AR and β2AR with Ki values of 1.8 nM and 0.8 nM, respectively. Propranolol hydrochloride inhibits [3H]-DHA binding to rat brain membrane preparation with an IC50 of 12 nM. Propranolol hydrochloride is used for the study of hypertension, pheochromocytoma, myocardial infarction, cardiac arrhythmias, angina pectoris, and hypertrophic cardiomyopathy.
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HY-N10319 Artepillin C
Artepillin C is an orally active CREB/CRTC2 inhibitor and TRPA1 covalent agonist (EC50=1.8 μM). Artepillin C inhibits CREB/CRTC2-mediated gene transcription and downregulates BMAL1 expression to regulate glucose and lipid metabolism. Artepillin C can also activate TRPA1 channels to induce spicy taste signals. Artepillin C can inhibit tumor cell proliferation, induce necroptosis, improve insulin resistance and inhibit liver lipid synthesis. Artepillin C can be used in the study of metabolic syndrome, tumor prevention and treatment, and inflammation.
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HY-P991222 AMG-529
AMG-529 is a humanized monoclonal antibody against ASGR1 that binds to ASGR1, blocks ligand binding, and causes a dose-dependent increase in ALP (a biomarker of ASGR1 inhibition). AMG-529 can be used for the research of cardiovascular diseases.

Species: Human

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HY-76632 4-Hydroxyisophthalic acid
4-Hydroxyisophthalic acid activates antioxidant enzymes (such as catalase CAT and superoxide dismutase SOD), scavenges free radicals, and exhibits antioxidant property. 4-Hydroxyisophthalic acid activates AChE and BChE, enhances neuronal function and improves Tau-induced neurobehavioral defects. 4-Hydroxyisophthalic acid improves the cognitive defects, and ameliorates circadian rhythm disorders of fruit flies.
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HY-NP192 Sericin
Sericin is an orally active globular protein produced by silkworm cocoons. Sericin inhibits the expression of COX2, iNOS, TLR4, MAPK and NF-κB; reduces the levels of IL-18, IL-1 and CCL2; antagonizes the activity of AChE; and downregulates the expression of Bcl-2. Sericin enhances the PI3K/AKT-mediated insulin signaling pathway. Sericin inhibits the activity of tyrosinase (Tyrosinase), scavenges ROS, chelates metal ions, and increases the levels of antioxidant enzymes. Sericin induces apoptosis and arrests the cell cycle. Sericin exhibits antibacterial, moisturizing, cardioprotective and anticoagulant properties. Sericin can be used in research related to type 2 diabetes, hyperlipidemia, obesity, Alzheimer's disease, colon cancer, peripheral nerve injury and ischemic myocardial infarction.
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HY-14184S Macitentan-d4
Macitentan-d4 is a deuterium labeled Sulfamethoxazole. Macitentan is an orally active, non-peptide dual ETA and ETB (endothelin) receptor antagonist. Macitentan has the potential for idiopathic pulmonary fibrosis (IPF) and pulmonary arterial hypertension (PAH).
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HY-N3431 Kaempferol-7-O-rhamnoside
Kaempferol-7-O-rhamnoside is a PD-1/PD-L1 inhibitor and farnesoid X receptor (FXR) agonist. Kaempferol-7-O-rhamnoside demonstrates cardioprotective potential targeting the AMPKα1 signaling pathway. Kaempferol-7-O-rhamnoside significantly upregulates the mRNA expression of AMPKα1 in H9c2 cardiomyocytes. Kaempferol-7-O-rhamnoside reverses APAP-induced reduction of glutathione (GSH) content and increase of ROS production in L02 cells. Kaempferol-7-O-rhamnoside has the potential for heart failure.
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HY-D0227ES THAM-d11 (for molecular biology)
Trometamol(Tris),for molecular biology-d11 is the deuterium labeled Trometamol(Tris),for molecular biology.
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HY-P5107 Low molecular weight protamine
Low molecular weight protamine (LMWP;TDSP5) is a truncated arginine-rich protamine peptide, as well as a heparin/low-molecular-weight heparin antidote and a cell-penetrating delivery carrier. Low molecular weight protamine neutralizes heparin-induced anticoagulant activities, including aPTT, anti-Xa and anti-IIa activities, and also neutralizes anti-Xa activity of commercially available low-molecular-weight heparin preparations. Low molecular weight protamine translocates across mammalian cell membranes, delivers conjugated impermeable molecules across tumor tissues, enhances skin permeability of conjugated epidermal growth factor, and accelerates wound healing when conjugated with epidermal growth factor. Low molecular weight protamine retains the in vitro cell proliferation activity of conjugated EGF, and also enables site-specific conjugation with peptides or proteins via genetic recombination. Low molecular weight protamine can be used in studies related to colon adenocarcinoma, skin wounds and diabetic skin wounds.
VEGFR  
Cancer  
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HY-119152 CMX-2043
CMX-2043 is a novel analogue of α-Lipoic Acid (HY-N0492). CMX-2043 is effective in antioxidant effect, activation of insulin receptor kinase, soluble tyrosine kinase, and Akt phosphorylation. CMX-2043 shows protection against ischemia-reperfusion injury (IRI) in rat model.
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HY-P5244 Tripeptide-32
Tripeptide-32 is a bioactive peptide that targets the PER1 gene. Tripeptide-32 can regulate circadian rhythms and stimulate the synthesis of cellular repair proteins, with anti-aging activity.
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HY-N2160 6'''-Feruloylspinosin
6'''-Feruloylspinosin is an orally active RORα activator that crosses the blood-brain barrier, with a Kd of 0.308 μM, and is found in natural sources. 6'''-Feruloylspinosin modulates AMPK and mTOR phosphorylation. 6'''-Feruloylspinosin promotes autophagy through the AMPK/mTOR signaling pathway, inhibits GSK3β phosphorylation at Tyr216, and activates the PGC-1α/Nrf2/HO-1 pathway. 6'''-Feruloylspinosin regulates neurotransmitter levels, enhances mRNA expression of GABAA α1, α5, and GABAB R1 receptor subunits, increases brain 5-HT and GABA, restores melatonin levels, and ameliorates anxiety-like behaviors. 6'''-Feruloylspinosin regulates oxidative stress homeostasis, inhibits mitochondrial dysfunction, decreases MDA while increasing GSH. 6'''-Feruloylspinosin can be used for research on Alzheimer's disease, acute myocardial infarction, heart failure with insomnia, and insomnia.
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HY-B1812 Veratrole
Veratrole (1,2-Dimethoxybenzene) is a key compound that widely exists in plants and attracts pollinators. The release of Veratrole has a circadian rhythm and plays an important role in plant reproduction, species differentiation, and interactions with pollinators. In addition, Veratrole can be demethylated by cytochrome P-450 in Streptomyces setonii.
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HY-D0850 Tartaric acid disodium dihydrate
Tartaric acid disodium dehydrate (L-(+) -tartaric acid) is an orally active weak organic acid that can be isolated from grapes. Tartaric acid disodium dehydrate has vasodilatory and antihypertensive effects. Tartaric acid disodium dehydrate can be used as flavorings and antioxidants in a range of foods and beverages. Tartaric acid disodium dehydrate can be used in laser frequency doubling and optical limiting applications.
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HY-I0626R Cytosine (Standard)
Cytosine (Standard) is the analytical standard of Cytosine. This product is intended for research and analytical applications. Cytosine is one of the four main bases found in DNA and RNA. Cytosine modifications exhibit circadian oscillations that are involved in epigenetic diversity and aging.
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HY-N0181A Lumisterol
Lumisterol (9β,10α-Ergosterol) is a photoproduct of 7-dehydrocholesterol, present in the skin, and acts as an orally active VDR non-genomic modulator and ROR inverse agonist. Lumisterol binds to the SARS-CoV-2 Mpro substrate-binding pocket and the RdRP active site, inhibiting enzyme activity. Lumisterol induces NRF2-regulated antioxidant responses, p53 phosphorylation and nuclear translocation, and intracellular free radical scavenging. Lumisterol inhibits the proliferation of epidermal keratinocytes and melanoma cells, modulates cell cycle progression, and suppresses basal and TNFα-induced NFκB transcriptional activity. Lumisterol inhibits RORγ transcriptional activity and IL-17 production. Lumisterol is used in research on UVB-induced skin damage, melanoma, psoriasis, vitamin D deficiency, and COVID-19.
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HY-145627 Ozuriftamab vedotin
Ozuriftamab vedotin (BA3021), an antibody-drug conjugate (ADC), is a conditionally active biologic (CAB) anti-receptor tyrosine kinase orphan receptor 2 (ROR2) humanized monoclonal antibody Ozuriftamab (HY-145626) conjugated to VcMMAE (HY-15575). Ozuriftamab vedotin has antitumor activities.
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HY-N0654 Corypalmine
Corypalmine is an alkaloid identified in the dried tubers of Corydalis Decumbens Pers, with an oral bioavailability of 4.6% in mice. Corypalmine exhibits poor gastrointestinal absorption properties, which correlate with its high hydrophilicity and low permeability.
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HY-I0626S2 Cytosine-d2
Cytosine-d2 is the deuterium labeled Cytosine. Cytosine is one of the four main bases found in DNA and RNA. Cytosine modifications exhibit circadian oscillations that are involved in epigenetic diversity and aging.
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HY-P990607 Indatuximab
Indatuximab is a CHO-expressed chimeric antibody that targets Syndecan-1/CD138. The predicted molecular weight (MW) of Indatuximab is 145.5 kDa. The isotype control for Indatuximab can refer to Human IgG4 kappa, Isotype Control (HY-P99003).

Species: Human

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HY-D0785 NBD-F
NBD-F (4-Fluoro-7-nitrobenzofurazan) is a pro-fluorescent reagent which is developed for amino acid analysis. NBD-F reacts with primary or secondary amines to produce a fluorescent product and used for analysis of amino acids and low molecular weight amines.
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HY-Y0308H Sodium phosphate dibasic, for molecular biology
Sodium phosphate dibasic (Disodium hydrogen phosphate), for molecular biology, is a type of phosphate salt that can be used in molecular biology research to prepare stable buffers free of RNase/DNase/protease.
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HY-P990951 Vixticibart
Vixticibart (REGN-5381) is a fully human IgG4 monoclonal antibody and NPR1 agonist that targets NPR1. Vixticibart stabilizes the receptor in an activated conformation by binding to the N-terminal domain of NPR1, and enhances the activity of endogenous ligands ANP and BNP without blocking ligand binding when these ligands are present. Vixticibart exerts vasodilatory and hypotensive effects by inducing cGMP production, preferentially dilating venous vessels to reduce systolic and venous pressure, but does not induce diuresis and may trigger a compensatory increase in heart rate. Vixticibart produces a synergistic hypotensive effect when combined with angiotensin-converting enzyme inhibitors or angiotensin receptor blockers, and is currently mainly used in research related to heart failure and hypertension.

Species: Human

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HY-N6711 Equisetin
Equisetin is an N-methylserine-derived acyl tetramic acid, quorum sensing inhibitor (QSI), herbicides and antibiotics. Equisetin specifically inhibits the anionic carriers of substrates in the inner mitochondrial membrane. Equisetin inhibits the activity of HIV-1 integrase, 11β-HSD1, and 2,4-dinitrophenol (Dnp)-stimulated ATPase (IC50 = ~8 nmol per mg of protein). Equisetin exhibits growth inhibition of bacteria, anti-inflammatory, amelioration of lipid-associated disorders, and cytotoxic effects.

Source: marine fungus Fusarium sp. Z10

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HY-P0205 Saralasin
Saralasin ([Sar1,Ala8] Angiotensin II) is an octapeptide analog of angiotensin II. Saralasin is a competitive angiotensin II receptor antagonist with a Ki value of 0.32 nM for 74% of the binding sites, and has partial agonist activity as well. Saralasin can be used for the research of renovascular hypertension, renin-dependent (angiotensinogenic) hypertension.
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HY-Y0181 D-Pipecolinic acid
D-Pipecolinic acid is a D-form cyclic amino acid with a piperidine ring structure, which is used to enhance molecular rigidity and stability.
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HY-W012815 3-Methylcatechol
3-Methylcatechol is a phenolic derivative that can be produced by Pseudomonas putida MC2. 3-Methylcatechol can serve as a molecular building block in chemical synthesis to produce other active compounds.

Source: Rhodococcus sp. strain ZWL3NT

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HY-Y0537B Potassium chloride, for molecular biology
Potassium chloride, for molecular biology is potassium chloride that can be used in molecular biology. Potassium chloride, for molecular biology affects the stability of biological membranes by disrupting the electrostatic interactions between proteins and lipids. Potassium chloride, for molecular biology affects the solubility of myofibrillar proteins and the integrity of mitochondria. Potassium chloride, for molecular biology is commonly used in homogenization buffers and protein extraction procedures.
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HY-W250124 Ribonucleic acid (yeast)
Ribonucleic acid (RNA) (yeast) is a ribonucleic acid isolated from yeast, characterized as a polynucleotide containing primary and secondary phosphate groups, amino groups, and purine-pyrimidine hydroxyl groups per 4 corrected phosphorus atoms. Ribonucleic acid (yeast) is widely used in scientific research as a substrate for nuclease detection, a carrier in ethanol precipitation processes, and a standard control for molecular biology techniques.
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HY-W015883R Fumaric acid (Standard)
Fumaric acid (Standard) is the analytical standard of Fumaric acid (HY-W015883). This product is intended for research and analytical applications. Fumaric acid is an unsaturated dicarbonic acid, an intermediate product of the citric acid cycle that provides intracellular energy in the form of ATP. Fumaric acid exerts anti-inflammatory effects by inhibiting the NF-κB signaling pathway dependent on p38 MAPK. Fumaric acid can be used in the study of pregnancy-induced hypertension.
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HY-W251598B Sodium bicarbonate, for molecular biology
Sodium bicarbonate, for molecular biology (Sodium hydrogen carbonate for molecular biolog; Soda bicarbonate for molecular biolog) is an inorganic salt. Sodium bicarbonate can maintain the pH of the culture medium, thereby affecting the expression of inducible nitric oxide synthase (iNOS) and nitric oxide (NO) production in macrophages and reversing the acidosis of the tumor microenvironment. Sodium bicarbonate is widely used in the fields of food, cosmetics, etc. Its main uses include buffers, flavoring agents, disinfectants, pharmaceuticals, and proton gradient regulators. Sodium bicarbonate is also commonly used as an antacid to inhibit gastrointestinal diseases, neutralize gastric acid, and reduce gastric discomfort.
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HY-P99110 Lanadelumab
Lanadelumab (SHP643) is a human IgG1 monoclonal antibody against plasma kallikrein (pKal) with an Ki value of 0.12 nM. Lanadelumab inhibits both free and HMWK (high molecular weight kininogen)-bound pKal. Lanadelumab has the potential for the research of hereditary angioedema.

Species: Human

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HY-129763 Di-4-ANEPPS
Di-4-ANEPPS is a voltage-sensitive dye that acts on voltage-gated ion channels (such as sodium channels) and inhibits sodium current, significantly reducing sodium current density, although specific values like IC50 remain unclear. It mainly binds to the voltage-sensitive regions on the cell membrane, changing its fluorescence properties to reflect membrane potential changes and thus affecting the function of ion channels to exert its activity. This substance can be used in cardiovascular research, such as the electrophysiology of cardiomyocytes, myocardial ischemia, and the effects of drugs on cardiomyocytes. It is of great value in evaluating drug cardiotoxicity and exploring the mechanisms of arrhythmias.
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HY-P0205B Saralasin TFA
Saralasin ([Sar1,Ala8] Angiotensin II) TFA is an octapeptide analog of angiotensin II. Saralasin TFA is a competitive angiotensin II receptor antagonist with a Ki value of 0.32 nM for 74% of the binding sites, and has partial agonist activity as well. Saralasin TFA can be used for the research of renovascular hypertension, renin-dependent (angiotensinogenic) hypertension.
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HY-NP007 Myoglobin
Myoglobin is an oxygen-binding heme protein. Myoglobin scavenges ROS via its peroxidase activity, and binds to and inactivates NO in the heart and oxidative skeletal muscle. Myoglobin stores, buffers and facilitates intracellular oxygen diffusion, maintains aerobic metabolism under hypoxic/anoxic conditions, and provides oxygen supply support for mitochondria. Myoglobin alleviates oxidative stress, protects cardiac function and affects cardiac redox pathways. Myoglobin can be used in studies related to ischemia-reperfusion injury, oxidative stress-induced cardiac dysfunction and acute myocardial infarction.
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HY-34350 2-(Aminomethyl)phenol
2-(Aminomethyl)phenol (2-Hydroxybenzylamine) is a selective dicarbonyl scavenger. 2-(Aminomethyl)phenol is an antioxidant and scavanger of free radicals and isolevuglandins (IsoLGs). 2-(Aminomethyl)phenol can prevent early recurrence of atrial fibrillation. 2-(Aminomethyl)phenol can reduce inflammation and plaque apoptotic cells and promote efferocytosis and features of stable plaques. 2-(Aminomethyl)phenol can reduce malondialdehyde (MDA)-LDL and MDA-HDL levels in Ldlr-/- mouse model. 2-(Aminomethyl)phenol can be studied in the research of inflammation and cardiovascular disease, such as atherosclerosis, early recurrence of atrial fibrillation (AF) and arrhythmias.
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HY-P99139 Anti-Mouse IL-1b Antibody (B122)
Anti-Mouse IL-1b Antibody (B122) is an anti-mouse IL-1b IgG monoclonal antibody. Anti-Mouse IL-1b Antibody (B122) enhances ferroptosis and increases levels of reactive oxygen species (ROS) combined with Sulfasalazine (SAS) (HY-14655). Anti-Mouse IL-1b Antibody (B122) can reduce monocyte infiltration and alleviate T cell exhaustion by blocking IL-1β signaling. Anti-Mouse IL-1b Antibody (B122) can be used for researches on cancer and cardiovascular conditions such as oral squamous cell carcinoma (OSCC), glioblastoma (GBM) and heart failure.

Species: Mouse

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HY-136177 Tris(2,4-di-tert-butylphenyl)phosphate
Tris(2,4-di-tert-butylphenyl)phosphate is an active compound from the leaves of Vitex negundo L. shows anti-inflammatory activity with evidence of inhibition for secretory Phospholipase A2 (sPLA2) through molecular docking.
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HY-P99956 Zilovertamab vedotin
Zilovertamab vedotin (VLS-101) is a novel antibody-drug conjugate comprising the humanized monoclonal antibody zilovertamab and and the anti-microtubule cytotoxin monomethyl vedotin. Zilovertamab vedotin binding to tumor cell ROR1 results in rapid internalization, trafficking to lysosomes, antibody–agent conjugate cleavage, and monomethyl vedotin release. Zilovertamab vedotin induces apoptosis. Zilovertamab vedotin can be used in research of cancer.
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HY-A0154 Deslanoside
Deslanoside (Desacetyllanatoside C) is a rapidly acting cardiac glycoside used to treat congestive heart failure and supraventricular arrhythmias due to reentry mechanisms, and to control ventricular rate in the treatment of chronic atrial fibrillation. Deslanoside inhibits the Na-K-ATPase membrane pump, resulting in an increase in intracellular sodium and calcium concentrations .
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HY-113238A Lithocholic acid 3-sulfate disodium
Lithocholic acid 3-sulfate disodium is a GPR39 agonist, with EC50 values of 41 μM and 42.4 μM in M39-20 and hGPR39-2 cells, respectively, in the absence of Zn2+, and 0.88 μM and 0.97 μM in the presence of Zn2+. Lithocholic acid 3-sulfate disodium acts as a RORγt ligand. Lithocholic acid 3-sulfate disodium stimulates the GPR39 receptor to initiate intracellular calcium signaling, independent of the Zn2+-binding sites H17 and H19. LCA-3-S selectively inhibits Th17 cell differentiation by targeting RORγt. Lithocholic acid 3-sulfate disodium can be used in the research of cholestatic liver diseases.
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HY-B1770 Sodium Iodide,99%
Sodium Iodide is a compound composed of sodium ions and iodine ions. Sodium Iodide scavenges hydrogen peroxide. Sodium Iodide maintains the level of thyroid hormone T3 through its iodine component. Sodium Iodide protects tissues from oxidative damage and regulates thyroid homeostasis. Sodium Iodide relieves acute myocardial infarction.
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HY-Y0849C Ammonium acetate, for molecular biology, 98%
Ammonium acetate, for molecular biology, 98% is a biochemical reagent that can be used as a biological material or organic compound for life science related research.
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HY-107754 Cesium chloride
Cesium chloride is a blocker of potassium channel. Cesium chloride prevents the decrease of Na+ transport produced by Alloxan. Cesium chloride has induced cardiac arrhythmias, including torsade de pointes in animal models.
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HY-P74638 Periostin Protein, Human (760a.a, HEK293, His, solution)
Periostin (POSTN) is a secreted extracellular matrix protein that functions in tissue development and regeneration, including wound healing, and ventricular remodeling following myocardial infarction. POSTN binds to integrins and BMP1 to support cell adhesion, cell migration and the structural integrity of connective tissues. Periostin Protein, Human (760a.a, HEK293, His) is the recombinant human-derived Periostin protein, expressed by HEK293 , with C-His labeled tag.

Species: Human; Source: HEK293

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HY-P73267 Kininogen-1 Protein, Mouse (HEK293, His)
Together with endopeptidase inhibitor, protease, and signaling receptor binding activities, the Kininogen-1 protein is predicted to play a critical role in antimicrobial response, coagulation regulation, and control of endopeptidase activity.Kininogen-1 is located in the collagen-containing matrix and shows biased expression, particularly in the liver at embryonic (E18) and adult stages (RPKM 646.0 and 179.1).Kininogen-1 Protein, Mouse (HEK293, His) is the recombinant mouse-derived Kininogen-1 protein, expressed by HEK293 , with C-His labeled tag.

Species: Mouse; Source: HEK293

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HY-P72279 Outer membrane porin F/OmpF Protein, E.coli (His, Myc)
Outer membrane protein F (OmpF) facilitates the formation of pores, enabling the passive diffusion of small molecules across the bacterial outer membrane. Beyond its role in membrane permeability, OmpF serves as a crucial receptor for the bacteriophage T2 and is considered the primary receptor for colicin E5, playing a probable role in the mechanisms associated with these interactions. Outer membrane porin F/OmpF Protein, E.coli (His, Myc) is the recombinant E. coli-derived Outer membrane protein F/OmpF protein, expressed by E. coli , with C-Myc, N-10*His labeled tag.

Species: E.coli; Source: E. coli

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HY-P704046 Bmal1 Protein, Mouse (Flag)
Bmal1 Protein, Mouse (Flag) is the recombinant mouse-derived Bmal1 protein, expressed by E. coli, with C-Flag tag.

Species: Mouse; Source: E. coli

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HY-P70732 ROR1 Protein, Human (HEK293, His)
ROR1 protein's minimal kinase activity in vitro suggests an improbable role as a tyrosine kinase in vivo. It serves as a receptor for WNT5A, activating NFkB signaling and potentially inhibiting WNT3A signaling. Notably, ROR1 plays a vital role in the inner ear, facilitating innervation of auditory hair cells by spiral ganglion neurons. ROR1 Protein, Human (HEK293, His) is the recombinant human-derived ROR1 protein, expressed by HEK293 , with C-6*His labeled tag.

Species: Human; Source: HEK293

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HY-P72265 Neurofilament light polypeptide/NEFL, Human (His-SUMO, myc)
Neurofilament light chain polypeptide (NEFL), like NEFM and NEFH, is an important component of neurofilaments and maintains neuronal caliber. NEFL interacts cooperatively with PRPH and INA to facilitate the assembly of neuronal filamentous networks. Neurofilament light polypeptide/NEFL, Human (His-SUMO, myc) is the recombinant human-derived Neurofilament light polypeptide/NEFL, expressed by E. coli , with C-Myc, N-SUMO, N-10*His labeled tag.

Species: Human; Source: E. coli

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HY-P73266 Kininogen-1 Protein, Human (626a.a, HEK293, His)
Kininogen-1 protein undergoes alternative splicing, producing high molecular weight kininogen (HMWK) and low molecular weight kininogen (LMWK). HMWK is essential for coagulation, assembly of the kallikrein-kinin system, and release of the antimicrobial bradykinin. Kininogen-1 Protein, Human (626a.a, HEK293, His) is the recombinant human-derived Kininogen-1 protein, expressed by HEK293 , with C-His labeled tag.

Species: Human; Source: HEK293

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HY-P72508 Ki67/MKI67 Protein, Human (GST)
Ki67/MKI67 is localized on mitotic chromosomes and maintains its dispersion during nuclear envelope disassembly. It covers a large portion of the chromosome surface and prevents chromatin from collapsing into clumps. Ki67/MKI67 Protein, Human (GST) is the recombinant human-derived Ki67/MKI67 protein, expressed by E. coli , with N-GST labeled tag.

Species: Human; Source: E. coli

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HY-P70956 Kininogen-1 Protein, Human (409a.a, HEK293, His)
Kininogen-1 is a key regulator in the coagulation process, inhibiting thiol proteases and strategically targeting prekallikrein and factor XI for coagulation regulation. HMW-kininogen prevents thrombin and plasmin-induced platelet aggregation and aids in hemostasis. Kininogen-1 Protein, Human (409a.a, HEK293, His) is the recombinant human-derived Kininogen-1 protein, expressed by HEK293 , with C-6*His labeled tag.

Species: Human; Source: HEK293

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HY-P73390 ROR1 Protein, Human (sf9, His)
ROR1 protein's minimal kinase activity in vitro suggests an improbable role as a tyrosine kinase in vivo. It serves as a receptor for WNT5A, activating NFkB signaling and potentially inhibiting WNT3A signaling. Notably, ROR1 plays a vital role in the inner ear, facilitating innervation of auditory hair cells by spiral ganglion neurons. ROR1 Protein, Human (sf9, His) is the recombinant human-derived ROR1 protein, expressed by Sf9 insect cells , with C-His labeled tag.

Species: Human; Source: Sf9 insect cells

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HY-P78617 ROR1 Protein, Rat (HEK293, His)
ROR1 protein is an important member of the Tyr protein kinase family in the protein kinase superfamily and plays a key role as a tyrosine kinase in cell signaling and regulation. Its classification emphasizes its importance in phosphorylation events and shares conserved features with related kinases. ROR1 Protein, Rat (HEK293, His) is the recombinant rat-derived ROR1 protein, expressed by HEK293 , with C-10*His labeled tag.

Species: Rat; Source: HEK293

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HY-P701735 PASK Protein, Human (Active, sf9, GST)
PASK is an important serine/threonine protein kinase that complexly regulates energy homeostasis and protein translation. It phosphorylates key targets (EEF1A1, GYS1, PDX1, RPS6) in response to changing environmental conditions (e.g., oxygen levels and nutritional status). PASK Protein, Human (sf9, GST) is the recombinant human-derived PASK protein, expressed by sf9 insect cells , with N-GST labeled tag.

Species: Human; Source: Sf9 insect cells

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HY-P77825 ROR1 Protein, Canine (HEK293, His)
ROR1 protein is an important member of the Tyr protein kinase family in the protein kinase superfamily and plays a key role as a tyrosine kinase in cell signaling and regulation. Its classification emphasizes its importance in phosphorylation events and shares conserved features with related kinases. ROR1 Protein, Canine (HEK293, His) is the recombinant canine-derived ROR1 protein, expressed by HEK293 , with C-His labeled tag.

Species: Canine; Source: HEK293

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HY-P704813 Neurofilament light polypeptide/NEFL, Human (His)
Neurofilament light chain polypeptide (NEFL), like NEFM and NEFH, is an important component of neurofilaments and maintains neuronal caliber. NEFL interacts cooperatively with PRPH and INA to facilitate the assembly of neuronal filamentous networks. Neurofilament light polypeptide/NEFL, Human (His) is the recombinant human-derived Neurofilament light polypeptide/NEFL, Human (His) protein, expressed by E. coli, with C-His labeled tag.

Species: Human; Source: E. coli

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HY-P7S0151 CRY1 Protein, Human (His, Myc)
CRY1 Protein, Human (His, Myc) is the recombinant human-derived CRY1, expressed by E. coli , with N-10*His, C-Myc labeled tag. The total length of CRY1 Protein, Human (His, Myc) is 586 a.a.,

Species: Human; Source: E. coli

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HY-P78510 ROR1 Protein, Human (HEK293, His-Avi)
ROR1 protein's minimal kinase activity in vitro suggests an improbable role as a tyrosine kinase in vivo. It serves as a receptor for WNT5A, activating NFkB signaling and potentially inhibiting WNT3A signaling. Notably, ROR1 plays a vital role in the inner ear, facilitating innervation of auditory hair cells by spiral ganglion neurons. ROR1 Protein, Human (HEK293, His-Avi) is the recombinant human-derived ROR1 protein, expressed by HEK293 , with C-Avi, C-His labeled tag.

Species: Human; Source: HEK293

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HY-P78816 ROR1 Protein, Human (Biotinylated, HEK293, Avi)
ROR1 protein's minimal kinase activity in vitro suggests an improbable role as a tyrosine kinase in vivo. It serves as a receptor for WNT5A, activating NFkB signaling and potentially inhibiting WNT3A signaling. Notably, ROR1 plays a vital role in the inner ear, facilitating innervation of auditory hair cells by spiral ganglion neurons. ROR1 Protein, Human (Biotinylated, HEK293, Avi) is the recombinant human-derived ROR1 protein, expressed by HEK293 , with C-Avi labeled tag.

Species: Human; Source: HEK293

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HY-P74773 LMW-PTP/ACP1 Protein, Human (GST)
LMW-PTP/ACP1, a phosphatase, acts on tyrosine phosphorylated proteins, low-molecular-weight aryl phosphates, and natural and synthetic acyl phosphates. Notably, there are substrate specificity differences between isoform 1 and isoform 2, with isoform 2 lacking phosphatase activity. LMW-PTP/ACP1 Protein, Human (GST) is the recombinant human-derived LMW-PTP/ACP1 protein, expressed by E. coli , with N-GST labeled tag.

Species: Human; Source: E. coli

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HY-P7647 BAG-2 Protein, Human (His)
BAG2 Protein, Human (His) promotes tumorigenesis through enhancing mutant p53 protein levels and function. BAG2 is a target of the c-Myc gene and is involved in cellular senescence via the p21CIP1 pathway.

Species: Human; Source: E. coli

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HY-P78032 ROR1 Protein, Mouse (HEK293, His)
ROR1 protein shows minimal kinase activity in vitro, indicating an improbable role as a tyrosine kinase in vivo.It functions as a receptor for WNT5A, activating NFkB signaling and potentially inhibiting WNT3A signaling.Additionally, ROR1 plays a vital role in the inner ear, aiding the innervation of auditory hair cells by spiral ganglion neurons.ROR1 Protein, Mouse (HEK293, His) is the recombinant mouse-derived ROR1 protein, expressed by HEK293 , with C-His labeled tag.

Species: Mouse; Source: HEK293

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HY-P70327A LMW-PTP/ACP1 Protein, Human (His)
LMW-PTP/ACP1, a phosphatase, acts on tyrosine phosphorylated proteins, low-molecular-weight aryl phosphates, and natural and synthetic acyl phosphates. Notably, there are substrate specificity differences between isoform 1 and isoform 2, with isoform 2 lacking phosphatase activity. LMW-PTP/ACP1 Protein, Human (His) is the recombinant human-derived LMW-PTP/ACP1 protein, expressed by E. coli , with C-6*His labeled tag.

Species: Human; Source: E. coli

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HY-P704044 Cry2 Protein, Mouse (His, Myc)
Cry2 Protein, Mouse (His, Myc) is the recombinant mouse-derived Cry2 protein, expressed by E. coli, with N-10*His & C-Myc tag.

Species: Mouse; Source: E. coli

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HY-P704862 ROR1 Protein, Human (HEK293, mFc)
ROR1 protein's minimal kinase activity in vitro suggests an improbable role as a tyrosine kinase in vivo. It serves as a receptor for WNT5A, activating NFkB signaling and potentially inhibiting WNT3A signaling. Notably, ROR1 plays a vital role in the inner ear, facilitating innervation of auditory hair cells by spiral ganglion neurons. ROR1, Human (HEK293, mFc) is the recombinant human-derived ROR1 protein, expressed by HEK293, with C-mFc labeled tag.

Species: Human; Source: HEK293

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HY-P705877 ROR1 Protein, Human (sf9)
ROR1 protein's minimal kinase activity in vitro suggests an improbable role as a tyrosine kinase in vivo. It serves as a receptor for WNT5A, activating NFkB signaling and potentially inhibiting WNT3A signaling. Notably, ROR1 plays a vital role in the inner ear, facilitating innervation of auditory hair cells by spiral ganglion neurons. ROR1, Human (sf9) is the recombinant human-derived ROR1 protein, expressed by sf9 insect cells, with N-Avi labeled tag.

Species: Human; Source: sf9 insect cells

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HY-P706015 ROR1 Protein, Human (Active, sf9, His-GST)

Species: Human; Source: Sf9 insect cells

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HY-P83758 ROR gamma T Antibody (YA3559)
ROR gamma T Antibody (YA3559) is a Rabbit-derived and non-conjugated IgG monoclonal antibody, targeting to ROR gamma T.

Host: Rabbit; Reactivity: Human, Rat

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HY-P82175 CLOCK Antibody (YA1920)
CLOCK Antibody (YA1920) is a Rabbit-derived and non-conjugated IgG monoclonal antibody, targeting to CLOCK.

Host: Rabbit; Reactivity: Human, Mouse, Rat

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HY-P87116 TOMM40 Antibody (YA6809)
TOMM40 Antibody (YA6809) is a Rabbit-derived and non-conjugated IgG monoclonal antibody, targeting to TOMM40.

Host: Rabbit; Reactivity: Human, Mouse, Rat

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HY-P81259 BAG1 Antibody (YA932)
BAG1 Antibody (YA932) is a Mouse-derived and non-conjugated IgG1 monoclonal antibody, targeting to BAG1.

Host: Mouse; Reactivity: Human, Mouse, Rat

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HY-P81741 ROR1 Antibody (YA1486)
ROR1 Antibody (YA1486) is a Rabbit-derived and non-conjugated IgG monoclonal antibody, targeting to ROR1.

Host: Rabbit; Reactivity: Human

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HY-P86191 BMAL1 Antibody (YA5883)
BMAL1 Antibody (YA5883) is a Rabbit-derived and non-conjugated IgG monoclonal antibody, targeting to BMAL1.

Host: Rabbit; Reactivity: Human, Mouse, Rat

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HY-P84465 ROR1 Antibody (YA4162)
ROR1 Antibody (YA4162) is a Mouse-derived and non-conjugated IgG1 monoclonal antibody, targeting to ROR1.

Host: Mouse; Reactivity: Human

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HY-P84466 ROR2 Antibody (YA4163)
ROR2 Antibody (YA4163) is a Mouse-derived and non-conjugated IgG1 monoclonal antibody, targeting to ROR2.

Host: Mouse; Reactivity: Human

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HY-P87328 CRY2 Antibody (YA7011)
CRY2 Antibody (YA7011) is a Mouse-derived and non-conjugated IgG1 monoclonal antibody, targeting to CRY2.

Host: Mouse; Reactivity: Human, Mouse

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HY-P811835 BAG5 Antibody(YA10306)
BAG5 Antibody(YA10306) is a Mouse-derived and non-conjugated IgG1 monoclonal antibody, targeting to BAG5.

Host: Mouse; Reactivity: Human, Mouse, Rat

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HY-P811835A BAG5 Antibody(YA10306) (PBS only)
BAG5 Antibody(YA10306) is a Mouse-derived and non-conjugated IgG1 monoclonal antibody, targeting to BAG5.

Host: Mouse; Reactivity: Human, Mouse, Rat

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HY-P81259A BAG1 Antibody (YA933)
BAG1 Antibody (YA933) is a Rabbit-derived and non-conjugated IgG monoclonal antibody, targeting to BAG1.

Host: Rabbit; Reactivity: Human, Mouse, Rat

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HY-P81259AA BAG1 Antibody (YA933)(PBS only)
BAG1 Antibody (YA933) is a Rabbit-derived and non-conjugated IgG monoclonal antibody, targeting to BAG1.

Host: Rabbit; Reactivity: Human, Mouse, Rat

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HY-P81390 ROR2 Antibody (YA1135)
ROR2 Antibody (YA1135) is a Rabbit-derived and non-conjugated IgG monoclonal antibody, targeting to ROR2.

Host: Rabbit; Reactivity: Human

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HY-P81390A ROR2 Antibody (YA1135)(PBS only)
ROR2 Antibody (YA1135) is a Rabbit-derived and non-conjugated IgG monoclonal antibody, targeting to ROR2.

Host: Rabbit; Reactivity: Human

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HY-P82213 SODD Antibody (YA1958)
SODD Antibody (YA1958) is a Rabbit-derived and non-conjugated IgG monoclonal antibody, targeting to SODD.

Host: Rabbit; Reactivity: Human

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HY-P82459 TIMELESS Antibody (YA2204)
TIMELESS Antibody (YA2204) is a Rabbit-derived and non-conjugated IgG monoclonal antibody, targeting to TIMELESS.

Host: Rabbit; Reactivity: Human

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HY-P82459A TIMELESS Antibody (YA2204)(PBS only)
TIMELESS Antibody (YA2204) is a Rabbit-derived and non-conjugated IgG monoclonal antibody, targeting to TIMELESS.

Host: Rabbit; Reactivity: Human

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HY-P82608 PER2 Antibody (YA2353)
PER2 Antibody (YA2353) is a Rabbit-derived and non-conjugated IgG monoclonal antibody, targeting to PER2.

Host: Rabbit; Reactivity: Human

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HY-P82662 RORB Antibody (YA2407)
RORB Antibody (YA2407) is a Rabbit-derived and non-conjugated IgG monoclonal antibody, targeting to RORB.

Host: Rabbit; Reactivity: Human, Mouse

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HY-P84465A ROR1 Antibody (YA4162)(PBS only)
ROR1 Antibody (YA4162) is a Mouse-derived and non-conjugated IgG1 monoclonal antibody, targeting to ROR1.

Host: Mouse; Reactivity: Human

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HY-P84466A ROR2 Antibody (YA4163)(PBS only)
ROR2 Antibody (YA4163) is a Mouse-derived and non-conjugated IgG1 monoclonal antibody, targeting to ROR2.

Host: Mouse; Reactivity: Human

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HY-P85059 BMAL1 Antibody (YA4751)
BMAL1 Antibody (YA4751) is a Mouse-derived and non-conjugated monoclonal antibody, targeting to BMAL1.

Host: Mouse; Reactivity: Human

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HY-P85104 CLOCK Antibody (YA4796)
CLOCK Antibody (YA4796) is a Mouse-derived and non-conjugated monoclonal antibody, targeting to CLOCK.

Host: Mouse; Reactivity: Human

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HY-P87329 PER3 Antibody (YA7012)
PER3 Antibody (YA7012) is a Mouse-derived and non-conjugated IgG2b monoclonal antibody, targeting to PER3.

Host: Mouse; Reactivity: Human

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HY-P87329A PER3 Antibody (YA7012)(PBS only)
PER3 Antibody (YA7012) is a Mouse-derived and non-conjugated IgG2b monoclonal antibody, targeting to PER3.

Host: Mouse; Reactivity: Human

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HY-P87585 ROR beta Antibody (YA7269)
ROR beta Antibody (YA7269) is a Rabbit-derived and non-conjugated IgG monoclonal antibody, targeting to ROR beta.

Host: Rabbit; Reactivity: Human

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HY-K0612 Weigert Elastin Staining Kit

MCE Weigert Elastin Staining Kit combines Weigert Resorcinol Fuchsin Staining Solution with Van Gieson (VG,Elastin Fiber Staining Reagent B,mixed) Staining Solution. Weigert Resorcinol Fuchsin Solution is mainly used for staining elastic fibers, Van Gieson (VG) Solution is used for collagen fiber staining. The principle of VG staining is based on differences in the size of anionic dye molecules and the permeability of tissues. Picric acid (PA) has the smallest molecular weight and preferentially enters dense structures. Ponceau Red or acid fuchsin has a relatively larger molecular weight and primarily binds to collagen fibers, while light green has the largest molecular weight and stains other tissue components. After VG staining, collagen fibers appear red, while muscle fibers and cytoplasm appear yellow, enabling a clear distinction between tissue components.

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HY-K3125 Extracellular Vesicle (EV) Ultrafiltration Concentrator (500 μL, 100 kDa)

MCE Extracellular Vesicle (EV) Ultrafiltration Concentrator (500 μL, 100 kDa) features a polyethersulfone (PES) ultrafiltration membrane with a molecular weight cutoff (MWCO) of 100 kDa. It provides rapid filtration, high concentration efficiency, and high exosome recovery. Its specialized anti-dry-spin design effectively minimizes sample loss caused by excessive centrifugation and membrane drying, thereby helping maintain high exosome recovery.

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HY-KE8013 Protein Deglycosylation Kit (for N-Linked & Simple O-Linked Glycans)

Protein Deglycosylation Kit (for N-Linked & Simple O-Linked Glycans) includes the enzymes and reagents necessary for the removal of all N-linked and relatively simple O-linked glycans. The enzymatic reagents are a mixture of three glycosidases, namely PNGase F, O-Glycosidase, and α2-3,6,8,9 Neuraminidase. All enzymes are recombinant enzymes expressed in Escherichia coli BL21 and subsequently purified. The molecular weights of these enzymes are as follows: PNGase F is 36 kDa, O-Glycosidase is 147 kDa, and α2-3,6,8,9 Neuraminidase is 66 kDa.

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HY-KE8014 Protein Deglycosylation Kit (for N-linked & Complex O-linked Glycans)

Protein Deglycosylation Kit (for N-linked & Complex O-linked Glycans) includes the enzymes and reagents reuired for the removal of all N-linked and some complex O-linked glycans. The enzyme reagent in this kit is a mixture of five glycosidases, namely PNGase F, O-Glycosidase, α2-3,6,8,9 Neuraminidase, β1-4 Galactosidase, and β-N-Acetylhexosaminidase. All enzymes in this kit are recombinant enzymes expressed in Escherichia coli BL21 and subsequently purified. The molecular weights of these enzymes are as follows: PNGase F is 36 kDa, O-Glycosidase is 14 kDa,α2-3,6,8,9 Neuraminidase is 66 kDa, β1-4 Galactosidase is 94 kDa, and β-N-Acetylhexosaminidase is 55 kDa.

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HY-KM0010 Centrifugal Protein Desalting Column (5 kDa)

MCE Centrifugal Protein Desalting Column (5 kDa) is a prepacked desalting device containing resin particles with a particle size of 57–80 μm. It efficiently separates small molecules with molecular weights ≤ 5 kDa (such as salts and buffer components) from macromolecules ≥ 5 kDa (such as proteins and peptides), making it suitable for protein desalting and buffer exchange applications.

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Keywords

Circadian rhythms | Cardiovascular health | Molecular clock | BMAL1 | CLOCK | PER | CRY | REV-ERB | ROR | Hypertension | Arrhythmia | Myocardial infarction | Heart failure | Chronotherapy | Cardiac electrophysiology