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cardiovascular function

" in MedChemExpress (MCE) Product Catalog:

72

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11

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2

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2

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14

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1

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17

Natural
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5

Isotope-Labeled Compounds

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-109590

    Immunocytophyt

    Endogenous Metabolite Cardiovascular Disease Inflammation/Immunology
    Arachidonic acid (Immunocytophyt) is a polyunsaturated omega-6 fatty acid and a major constituent of biomembranes. Arachidonic acid also acts as the substrate for various lipid mediators, such as prostaglandins (PGs). Arachidonic acid improves cognitive response and cardiovascular function .
    Arachidonic acid
  • HY-P1956
    Human serum albumin
    4 Publications Verification

    HSA

    NF-κB NO Synthase Cardiovascular Disease Inflammation/Immunology Cancer
    Human serum albumin (HSA) is the most abundant protein in plasma and is a major determinant of plasma oncotic pressure. Human serum albumin exhibits antioxidant, anticoagulant, anti-inflammatory, anti-platelet aggregation activities as well as colloid osmotic action. Human serum albumin can block the inhibitory effect of GML on human T cells, providing protective function for T cells. Human serum albumin is also associated with cardiovascular diseases and can partially prevent the LPS (HY-D1056) induced oxidative stress, as well as the upregulation of NF-κB, NF-κB, and peroxynitrite (ONOO ) in the vascular wall, contributing to the reduction of blood pressure .
    This product is recombinant Human Serum Albumin expressed in a microbial expression system.
    Human serum albumin
  • HY-113046
    5-Methyltetrahydrofolic acid
    Maximum Cited Publications
    9 Publications Verification

    5-Methyl THF; 5-MTHF

    Endogenous Metabolite Cardiovascular Disease Metabolic Disease
    5-Methyltetrahydrofolic acid (5-Methyl THF) is the main circulating form of folic acid in the body and is involved in a variety of biochemical reactions. 5-Methyltetrahydrofolic acid regulates cardiovascular function by increasing the production of endothelin-1 (ET-1) in low-density lipoprotein-treated endothelial cells and can be used in the study of cardiovascular diseases .
    5-Methyltetrahydrofolic acid
  • HY-134238
    Cardiolipin (Heart, Bovine) sodium
    1 Publications Verification

    Endogenous Metabolite Mitochondrial Metabolism Apoptosis Autophagy Cardiovascular Disease Neurological Disease Inflammation/Immunology
    Cardiolipin (Heart, Bovine) sodium is a mitochondria-exclusive phospholipid that can be extracted from Bovine hear. Cardiolipin (Heart, Bovine) sodium can maintain mitochondrial function, regulate cellular metabolism and signaling and induce apoptosis and autophagy. Cardiolipin (Heart, Bovine) sodium can be coated on microtitre plates for ELISA assay. Cardiolipin (Heart, Bovine) sodium can be used for the researches of inflammation, immunology, cardiovascular and neurological disease .
    Cardiolipin (Heart, Bovine) sodium
  • HY-P1956A

    HSA (Cell culture grade, Endotoxin<0.125 EU/mg)

    NF-κB NO Synthase Cardiovascular Disease Inflammation/Immunology
    Human serum albumin (Cell culture grade, Endotoxin<0.125 EU/mg) (HSA) is the most abundant protein in plasma and is a major determinant of plasma oncotic pressure. Human serum albumin (Cell culture grade, Endotoxin<0.125 EU/mg) exhibits antioxidant, anticoagulant, anti-inflammatory, anti-platelet aggregation activities as well as colloid osmotic action. Human serum albumin (Cell culture grade, Endotoxin<0.125 EU/mg) can block the inhibitory effect of GML on human T cells, providing protective function for T cells. Human serum albumin (Cell culture grade, Endotoxin<0.125 EU/mg) is also associated with cardiovascular diseases and can partially prevent the LPS (HY-D1056) induced oxidative stress, as well as the upregulation of NF-κB, iNOS, and peroxynitrite (ONOO ) in the vascular wall, contributing to the reduction of blood pressure. Human serum albumin (Cell culture grade, Endotoxin<0.125 EU/mg) can be used for in vitro cell culture .
    This product is human serum albumin recombinantly expressed in an Escherichia coli expression system.
    Human serum albumin (Cell culture grade, Endotoxin<0.125 EU/mg)
  • HY-103192
    MDL12330A
    5 Publications Verification

    RMI12330A

    Adenylate Cyclase Potassium Channel Neurological Disease Cancer
    MDL12330A (RMI12330A) is an adenylyl cyclases inhibitor. MDL12330A can inhibit KV channels, increases insulin secretion and Ca 2+ levels. MDL12330A accentuates contractions in uterine rings and inhibits cardiac functions. MDL12330A can be used for the research of endocrinology, metabolic and cardiovascular disease .
    MDL12330A
  • HY-14299
    Indacaterol
    5 Publications Verification

    Adrenergic Receptor Cardiovascular Disease Endocrinology Cancer
    Indacaterol is an orally active ultra-long-acting β2 adrenergic receptor (ADRB2) agonist. Indacaterol inhibits NF-κB activity in a β-arrestin2-dependent manner, preventing further lung damage and improving lung function in COPD (chronic obstructive pulmonary disorder). Indacaterol can also be used in cardiovascular disease research .
    Indacaterol
  • HY-109590A
    Arachidonic acid sodium salt
    Maximum Cited Publications
    55 Publications Verification

    Immunocytophyt sodium salt

    Endogenous Metabolite Cardiovascular Disease Neurological Disease Inflammation/Immunology
    Arachidonic acid (Immunocytophyt) sodium salt is a polyunsaturated omega-6 fatty acid and a major constituent of biomembranes. Arachidonic acid sodium salt also acts as the substrate for various lipid mediators, such as prostaglandins (PGs). Arachidonic acid sodium salt improves cognitive response and cardiovascular function .
    Arachidonic acid sodium salt
  • HY-14299A
    Indacaterol maleate
    5 Publications Verification

    QAB149

    Adrenergic Receptor Cardiovascular Disease Endocrinology Cancer
    Indacaterol maleate (QAB149) is an orally active ultra-long-acting β2 adrenergic receptor (ADRB2) agonist. Indacaterol maleate inhibits NF-κB activity in a β-arrestin2-dependent manner, preventing further lung damage and improving lung function in COPD (chronic obstructive pulmonary disorder). Indacaterol maleate can also be used in cardiovascular disease research .
    Indacaterol maleate
  • HY-P1248

    NPFF

    Neuropeptide FF Receptor Cardiovascular Disease Neurological Disease
    Neuropeptide FF (NPFF), an octapeptide belonging to the RF-amide family of peptides, is a NPFF1 and NPFF2 receptors agonist with Ki values of 2.82 nM and 0.21 nM, respectively. Neuropeptide FF induces abstinence syndrome, exerts antiopioid and analgesic effects, releases via calcium-dependent mechanisms from rat spinal cord, regulates memory, autonomic function, and neuroendocrine function, modulates pain and opioid antinociception, reduces food intake, stimulates water intake, alters cardiovascular parameters, and shows differential activity in hypothalamic paraventricular nucleus neurons. Neuropeptide FF is present in mammalian central nervous system and periphery, with NPFF-immunoreactivity increases in rat cerebrospinal fluid during opiate tolerance, and its NPFF gene and NPFF-R2 gene are up-regulated in rat spinal cord and dorsal root ganglia during peripheral inflammation. Neuropeptide FF can be used for the research of opioid tolerance, morphine-induced analgesia, abstinence syndrome, pain, hypertension, nociception, inflammatory pain, and neuropathic pain .
    Neuropeptide FF
  • HY-N0534

    DNA/RNA Synthesis Apoptosis PI3K Akt Caspase SOD Interleukin Related Cardiovascular Disease Inflammation/Immunology Cancer
    Vitexin-2"-O-rhamnoside is an orally active flavonoid glycoside. Vitexin-2"-O-rhamnoside inhibits Apoptosis, increases the phosphorylation levels of PI3K/Akt, inhibits caspase-3, SOD activity, and promotes cytokine (IL-2, IL-6, and IL-12) secretion. Vitexin-2"-O-rhamnoside strongly inhibits DNA synthesis in MCF-7 cells with an IC50 of 17.5 μM. Vitexin-2"-O-rhamnoside enhances immune function and improves the absorption of active compounds. Vitexin-2"-O-rhamnoside has antioxidant activity. Vitexin-2"-O-rhamnoside is used in the study of cardiovascular disease and immune-related diseases .
    Vitexin-2
  • HY-145154

    Na+/K+ ATPase Drug Metabolite Cardiovascular Disease Metabolic Disease
    Digoxigenin monodigitoxoside, a metabolite of Digoxin (HY-B1049), belongs to the class of cardenolides. Digoxigenin monodigitoxoside exerts its function by inhibiting Na,K-ATPase. Digoxigenin monodigitoxoside is used for the research of cardiovascular diseases such as congestive heart failure and cardiac arrhythmias .
    Digoxigenin monodigitoxoside
  • HY-P1723
    Spexin
    2 Publications Verification

    Neuropeptide Q

    Neuropeptide Y Receptor Apoptosis Ferroptosis Autophagy Cardiovascular Disease Neurological Disease
    Spexin (Neuropeptide Q) is a selective agonist of galanin receptors GAL2 and GAL3, and is a conserved peptide that functions as a neurotransmitter/neuromodulator and endocrine factor. Spexin can function through both central and peripheral actions. Spexin upregulates Beclin 1 to inhibit ferroptosis induced by excessive autophagy, reduces the uptake of long-chain fatty acids by adipocytes, and regulates energy metabolism by increasing lipid oxidation (e.g., reducing the respiratory exchange ratio in rodents). Spexin improves cardiac function in the Doxorubicin hydrochloride (HY-15142)-induced cardiotoxicity model, protects mitochondrial membrane potential, and reduces iron accumulation and lipid peroxidation. Spexin can be used to study obesity and its related metabolic disorders, cardiovascular diseases (e.g., cardioprotection), and side effects of tumor chemotherapy .
    Spexin
  • HY-P2543
    Neuropeptide Y (3-36) (human, rat)
    1 Publications Verification

    Neuropeptide Y Receptor Cardiovascular Disease Neurological Disease
    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] [2].
    Neuropeptide Y (3-36) (human, rat)
  • HY-109136
    Runcaciguat
    1 Publications Verification

    BAY 1101042

    Guanylate Cyclase Cardiovascular Disease Metabolic Disease
    Runcaciguat (BAY 1101042) is a selective, orally active, allosteric activator of soluble guanylate cyclase (sGC) that specifically targets its oxidized and heme-free form. Runcaciguat binds to sGC in a histidine-dependent manner and restores cyclic guanosine monophosphate (cGMP) production under oxidative stress, independent of nitric oxide (NO) or heme. Runcaciguat exhibits renoprotective and cardioprotective activities, such as reduced proteinuria and improved renal function. Runcaciguat is primarily being studied in chronic kidney disease (CKD) associated with hypertension, diabetes, and metabolic disorders, as well as potential cardiovascular indications such as heart failure with preserved ejection fraction (HFpEF) .
    Runcaciguat
  • HY-N7690

    Calcium Channel Cardiovascular Disease Metabolic Disease
    3,5,7,3’,4’-Pentamethoxyflavone is a Ca 2+ channel inhibitor. 3,5,7,3’,4’-Pentamethoxyflavone can protect DNA from oxidative damage. 3,5,7,3’,4’-Pentamethoxyflavone can induce relaxation of the human corpus cavernosum through calcium mobilization-related mechanisms. 3,5,7,3’,4’-Pentamethoxyflavone can promote the expression of eNOS and cystathionine gamma lyase CSE proteins in middle-aged male rats and regulate vascular function. 3,5,7,3’,4’-Pentamethoxyflavone can be used in research related to diabetes and cardiovascular diseases .
    3,5,7,3′,4′-Pentamethoxyflavone
  • HY-P5381
    gp91 ds-tat
    1 Publications Verification

    NADPH Oxidase Ferroptosis Reactive Oxygen Species (ROS) Glutathione Peroxidase TRP Channel Cardiovascular Disease Neurological Disease Inflammation/Immunology
    gp91 ds-tat, a biological active peptide, is a NADPH oxidase 2 (Nox2) inhibitor. gp91 ds-tat blocks NADPH oxidase-dependent superoxide production. gp91 ds-tat ameliorates high glucose-induced increase in total ROS, LPOs and iron levels. gp91 ds-tat inhibits homocysteine (Hcy)-induced activation of NLRP3 inflammasomes and restores Hcy-inhibited lysosomal TRPML1 channel activity. gp91 ds-tat improves cerebrovascular and cognitive function in APP/PS1 mice. gp91 ds-tat can be used for the study of Alzheimer’s disease (AD), glomerular inflammation and cardiovascular disease .
    gp91 ds-tat
  • HY-N10424
    Brazilein
    2 Publications Verification

    Na+/K+ ATPase Apoptosis Interleukin Related NO Synthase Cardiovascular Disease Neurological Disease Inflammation/Immunology
    Brazilein is a compound with anti-inflammatory and neuroprotective activities, with an IC50 of 500 μM against guinea pig Na +,K +-ATPase. Brazilein reduces iNOS mRNA expression, thereby inhibiting nitric oxide production in immune cells. Brazilein suppresses inflammatory responses by reducing the mRNA expression of TNF-α and IL-6, but has no effect on IL-1β expression. Brazilein reduces the cerebral infarction volume and improves the neurological function scores of rats with cerebral ischemia-reperfusion injury. Brazilein induces apoptosis of splenic lymphocytes in mice. Brazilein inhibits humoral immune responses in mice, and causes thymus and spleen atrophy as well as body weight loss in mice. Brazilein can be used in studies related to the nervous system, cardiovascular system and inflammatory diseases .
    Brazilein
  • HY-N0430

    Coptisin

    Indoleamine 2,3-Dioxygenase (IDO) NF-κB p38 MAPK PI3K Akt Apoptosis Reactive Oxygen Species (ROS) Mitochondrial Metabolism DNA/RNA Synthesis ROCK LDLR Cardiovascular Disease Neurological Disease Metabolic Disease Inflammation/Immunology Cancer
    Coptisine is an orally active and brain-penetrant alkaloid found in Coptis chinensis. Coptisine is a reversible, uncompetitive IDO inhibitor with a Ki of 5.8 μM and an IC50 of 6.3 μM. Coptisine suppresses neuroinflammation, reduces Aβ plaque burden and shows neuroprotective activity. Coptisine shows anti-inflammation activity by blocking NF-κB, MAPK, and PI3K/Akt activation. Coptisine inhibits cancer cells proliferation, induces DNA damage, G2/M phase cell cycle arrest, apoptosis, ROS production and mitochondrial dysfunction. Coptisine inhibits Rho/ROCK pathway activation, reduces arrhythmia, limits cardiac injury marker release, reduces infarct size, and preserves cardiac function in rat myocardial ischemia/reperfusion models. Coptisine downregulates HMGCR and upregulates LDLR and CYP7A1 to modulate cholesterol metabolism, reduces abnormal serum lipid levels, and promotes fecal bile acid excretion. Coptisine can be used for the research of cancer, hypercholesterolemia, Alzheimer’s disease, inflammatory disorders and cardiovascular disease .
    Coptisine
  • HY-N0430A
    Coptisine Sulfate
    5 Publications Verification

    Indoleamine 2,3-Dioxygenase (IDO) NF-κB p38 MAPK PI3K Akt Apoptosis Reactive Oxygen Species (ROS) Mitochondrial Metabolism DNA/RNA Synthesis ROCK LDLR Cardiovascular Disease Neurological Disease Metabolic Disease Inflammation/Immunology Cancer
    Coptisine Sulfate is an orally active and brain-penetrant alkaloid found in Coptis chinensis. Coptisine Sulfate is a reversible, uncompetitive IDO inhibitor with a Ki of 5.8 μM and an IC50 of 6.3 μM. Coptisine Sulfate suppresses neuroinflammation, reduces Aβ plaque burden and shows neuroprotective activity. Coptisine Sulfate shows anti-inflammation activity by blocking NF-κB, MAPK, and PI3K/Akt activation. Coptisine Sulfate inhibits cancer cells proliferation, induces DNA damage, G2/M phase cell cycle arrest, apoptosis, ROS production and mitochondrial dysfunction. Coptisine Sulfate inhibits Rho/ROCK pathway activation, reduces arrhythmia, limits cardiac injury marker release, reduces infarct size, and preserves cardiac function in rat myocardial ischemia/reperfusion models. Coptisine Sulfate downregulates HMGCR and upregulates LDLR and CYP7A1 to modulate cholesterol metabolism, reduces abnormal serum lipid levels, and promotes fecal bile acid excretion. Coptisine Sulfate be used for the research of cancer, hypercholesterolemia, Alzheimer’s disease, inflammatory disorders and cardiovascular disease .
    Coptisine Sulfate
  • HY-147292

    CK-136

    Calcium Channel Cardiovascular Disease
    Nelutroctiv (CK-136) is an orally active and selective cardiac troponin activator. Nelutroctiv activates cardiac sarcomeres by enhancing the sensitivity of troponin to calcium ions and promoting the interaction between actin and myosin. Nelutroctiv enhances cardiac contractility. Nelutroctiv can be used in the researches for cardiovascular diseases with impaired cardiac contractile function .
    Nelutroctiv
  • HY-P10551

    Transmembrane Glycoprotein NF-κB TNF Receptor Cardiovascular Disease
    ApoA-I mimetic peptide 5A is a synthetic peptide molecule designed based on the structure and function of naturally occurring apolipoprotein A-I (Apo A-I). ApoA-I mimetic peptide 5A can promote the efflux of cholesterol from cells and help reduce the accumulation of cholesterol in cells. ApoA-I mimetic peptide 5A also shows anti-inflammatory activity and can reduce inflammatory markers in blood and tissues. ApoA-I mimetic peptide 5A can be used in the study of cardiovascular diseases .
    ApoA-I mimetic peptide 5A
  • HY-175746

    CX3CR1 Cardiovascular Disease
    AZD0233 is an orally active CX3CR1 antagonist. AZD0233 modulates the CX3CR1/CX3CL1 signaling axis via immunomodulatory effects. AZD0233 has improved physicochemical properties, metabolic stability, low toxicity and CYP inhibition. AZD0233 improves cardiac function and reduces macrophages and fibrotic scar in mice model of dilated cardiomyopathy. AZD0233 can be used for cardiovascular diseases like dilated cardiomyopathy research .
    AZD0233
  • HY-129763

    Fluorescent Dye Cardiovascular Disease
    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 .
    Di-4-ANEPPS
  • HY-N3225

    NAMPT Sirtuin Microtubule/Tubulin Apoptosis Autophagy PDGFR NF-κB AMPK Cardiovascular Disease Neurological Disease Metabolic Disease Inflammation/Immunology Cancer
    Myricanol is a diarylheptanoid and a Nampt activator. Myricanol exerts anti-inflammatory effects and alleviates glucocorticoid-induced muscle atrophy by increasing Sirtuin 1 (SIRT1) and PRDX5 activities while regulating inflammatory factors. Myricanol exhibits growth inhibition and induces apoptosis in human lung adenocarcinoma A549 cells. Myricanol promotes autophagy-mediated clearance of microtubule-associated protein tau to exert neuroprotective effects. Myricanol protects cardiovascular function by inhibiting PDGFRβ and NF-κB signaling pathways. Myricanol activates mitochondrial transcription factor A (TFAM) expression to exert anti-renal fibrosis effects. Myricanol improves insulin resistance through AMPK activation .
    Myricanol
  • HY-176716

    Aldehyde Dehydrogenase (ALDH) Cardiovascular Disease
    ALDH2 activator 1 (Compound Z17) is an allosteric aldehyde dehydrogenase 2 (ALDH2) agonist. ALDH2 activator 1 enhances cardiac function and reduces myocardial necrosis in a mouse model of myocardial ischemia-reperfusion. ALDH2 activator 1 is promising for research of cardiovascular diseases such as myocardial infarction (MI) .
    ALDH2 activator 1
  • HY-103137
    Zacopride hydrochloride
    1 Publications Verification

    5-HT Receptor Cardiovascular Disease Neurological Disease
    Zacopride hydrochloride is an orally active 5-HT3 receptor (Ki of 0.38 nM) antagonist and 5-HT4 receptor (Ki of 373 nM) agonist. Zacopride hydrochloride exhibits multiple activities, such as regulating gastrointestinal motility, affecting cardiac function, and exerting anxiolytic and antiemetic effects. Zacopride hydrochloride is currently mainly used in the research of gastrointestinal diseases, cardiovascular diseases, and psychiatric diseases such as anxiety .
    Zacopride hydrochloride
  • HY-N1508

    MMP Apoptosis Autophagy NF-κB TNF Receptor COX Toll-like Receptor (TLR) SOD ASK1 JNK Cardiovascular Disease Inflammation/Immunology Endocrinology Cancer
    Ecliptasaponin A is an orally active pentacyclic triterpenoid saponin. Ecliptasaponin A exerts anti-tumor activity by activating ASK1/JNK pathway, inducing apoptosis and autophagy in lung cancer cells. Ecliptasaponin A exerts anti-inflammatory/anti-fibrotic effects and protects the cardiovascular system by inhibiting the HMGB1/TLR4/NF-κB pathway, and the expression of COX-2 and MMP-9. Ecliptasaponin A can enhance SOD activity, reduce MDA levels, and alleviate oxidative stress damage. Ecliptasaponin A exerts chondroprotective effects by inhibiting the expression of MMP13 and regulating inflammatory factors. Ecliptasaponin A improves ovarian function and regulates sex hormones by upregulating the expression of ESR1 receptors .
    Ecliptasaponin A
  • HY-P3068

    Adrenocorticotropic hormone (1-16)

    Melanocortin Receptor Cardiovascular Disease
    ACTH (1-16) (human) (Adrenocorticotropic hormone (1-16)) is an ACTH fragment. ACTH (1-16) (human) improves cardiovascular function and survival in experimental hemorrhagic shock .
    ACTH (1-16) (human)
  • HY-P1208

    Melanocortin Receptor Inflammation/Immunology
    PG-931, an analog of SHU 9119 (HY-P0227), is a potent melanocortin 4 (MC4) receptor (IC50=0.58 nM) agonist and is more selective than for the hMC3R (IC50=55 nM) or the hMC5R (IC50=2.4 nM). PG-931 can reverse haemorrhagic shock and prevent multiple organ damage in vivo .
    PG-931
  • HY-P1339B
    Orexin B, human acetate
    1 Publications Verification

    Human orexin B acetate

    Orexin Receptor (OX Receptor) Cardiovascular Disease Neurological Disease
    Orexin B, human acetate is the acetate form of Orexin B, human (HY-P1339). Orexin B, human acetate is the agonist for Orexin Receptor, with Ki of 420 nM and 36 nM for OX1 and OX2. Orexin B, human acetate participates in the regulation of appetite, wakefulness, cardiovascular function and neuroendocrine .
    Orexin B, human acetate
  • HY-14299AR

    QAB149 (Standard)

    Reference Standards Adrenergic Receptor Cardiovascular Disease Endocrinology Cancer
    Indacaterol (maleate) (Standard) is the analytical standard of Indacaterol (maleate). This product is intended for research and analytical applications. Indacaterol maleate (QAB149) is an orally active ultra-long-acting β2 adrenergic receptor (ADRB2) agonist. Indacaterol maleate inhibits NF-κB activity in a β-arrestin2-dependent manner, preventing further lung damage and improving lung function in COPD (chronic obstructive pulmonary disorder). Indacaterol maleate can also be used in cardiovascular disease research .
    Indacaterol maleate (Standard)
  • HY-D2004

    Fluorescent Dye Inflammation/Immunology
    ATTO 488 streptavidin is a fluorescent reagent that specifically targets and binds to biotin (biotin), formed by the conjugation of ATTO 488 with streptavidin (HY-P3152). ATTO 488 streptavidin enables visualization of the activity of streptavidin immobilized on the surface of polymeric nanoparticles, or acts as a fluorescent probe to detect the selective binding and internalization process of anti-HB-EGF/NA with cells expressing HB-EGF (with no such effect on cells that do not express this receptor). ATTO 488 streptavidin effectively verifies the function of streptavidin conjugated to the surface of nanoparticles and is suitable for research related to atherosclerotic cardiovascular diseases .
    ATTO 488 streptavidin
  • HY-14252A
    Milrinone lactate
    30+ Cited Publications

    Win 47203 lactate

    Phosphodiesterase (PDE) Cardiovascular Disease
    Milrinone lactate is a potent inotropic dilating agent. Milrinone lactate shows simultaneous positive inotropic and vasodilating activities. Milrinone lactate promotes reduction of SVR and PVR in patients with DCM and NYHA class III and IV of heart failure. Milrinone lactate has the potential for the research of cardiovascular function after cardiac surgery and in septic shock .
    Milrinone lactate
  • HY-113046S1

    5-Methyl THF-13C6; 5-MTHF-13C6

    Isotope-Labeled Compounds Endogenous Metabolite Cardiovascular Disease Metabolic Disease
    5-Methyltetrahydrofolic acid- 13C6 (5-Methyl THF- 13C6) is 13C labeled 5-Methyltetrahydrofolic acid. 5-Methyltetrahydrofolic acid (5-Methyl THF) is the main circulating form of folic acid in the body and is involved in a variety of biochemical reactions. 5-Methyltetrahydrofolic acid regulates cardiovascular function by increasing the production of endothelin-1 (ET-1) in low-density lipoprotein-treated endothelial cells and can be used in the study of cardiovascular diseases .
    5-Methyltetrahydrofolic acid-13C6
  • HY-P991574

    REG-101

    ATGL Cardiovascular Disease
    MEDI-5884 is a humanized IgG4Pκ neutralizing monoclonal antibody targeting Endothelial lipase (EL). MEDI-5884 inhibits EL and increases quantity (particularly phosphatidylinositols and cholesteryl esters) and function of high-density lipoproteins (HDL). MEDI-5884 can be used for cardiovascular disease like coronary artery disease (CAD) research .
    MEDI-5884
  • HY-14299R

    Reference Standards Adrenergic Receptor Cardiovascular Disease Endocrinology Cancer
    Indacaterol (Standard) is the analytical standard of Indacaterol. This product is intended for research and analytical applications. Indacaterol is an orally active ultra-long-acting β2 adrenergic receptor (ADRB2) agonist. Indacaterol inhibits NF-κB activity in a β-arrestin2-dependent manner, preventing further lung damage and improving lung function in COPD (chronic obstructive pulmonary disorder). Indacaterol can also be used in cardiovascular disease research .
    Indacaterol (Standard)
  • HY-114683

    TGF-beta/Smad Cardiovascular Disease
    KS370G is an orally active hypoglycemic and cardiovascular protective agent. KS370G improves left ventricular hypertrophy and function in pressure-overload mice heart. KS370G reduces renal obstructive nephropathy .
    KS370G
  • HY-105362

    Endothelin Receptor Cardiovascular Disease
    PD 155080 is a selective endothelin A receptor (ETA receptor) antagonist. PD 155080 reduces coronary resistance in the isolated rat heart model. PD 155080 improves myocardial systolic function and diastolic function in the ischemia/reperfusion model. PD 155080 can be used for the study of cardiovascular diseases .
    PD 155080
  • HY-P1339AS1

    Human orexin B-13C18,15N3 TFA

    Isotope-Labeled Compounds Orexin Receptor (OX Receptor) Cardiovascular Disease Neurological Disease
    Orexin B, human- 13C18, 15N3 (Human orexin B- 13C18, 15N3) TFA is the 13C- and 15N-labeled Orexin B, human (HY-P1339). Orexin B, human is the agonist for Orexin Receptor, with Kis of 420 nM and 36 nM for OX1 and OX2. Orexin B, human participates in the regulation of appetite, wakefulness, cardiovascular function and neuroendocrine .
    Orexin B, human-13C18,15N3 TFA
  • HY-P1723A

    Neuropeptide Q TFA

    Neuropeptide Y Receptor Apoptosis Ferroptosis Autophagy Cardiovascular Disease Metabolic Disease
    Spexin (Neuropeptide Q) TFA is a selective agonist of galanin receptors GAL2 and GAL3, and is a conserved peptide that functions as a neurotransmitter/neuromodulator and endocrine factor. Spexin TFA can function through both central and peripheral actions. Spexin TFA upregulates Beclin 1 to inhibit ferroptosis induced by excessive autophagy, reduces the uptake of long-chain fatty acids by adipocytes, and regulates energy metabolism by increasing lipid oxidation (e.g., reducing the respiratory exchange ratio in rodents). Spexin TFA improves cardiac function in the Doxorubicin hydrochloride (HY-15142)-induced cardiotoxicity model, protects mitochondrial membrane potential, and reduces iron accumulation and lipid peroxidation. Spexin TFA can be used to study obesity and its related metabolic disorders, cardiovascular diseases (e.g., cardioprotection), and side effects of tumor chemotherapy .
    Spexin TFA
  • HY-125807

    G Protein-coupled Receptor Kinase (GRK) Apoptosis Reactive Oxygen Species (ROS) Akt p38 MAPK Cardiovascular Disease Cancer
    IS20 is a Prokineticin receptor 1 (PKR1) agonist. IS20 diminishes Doxorubicin (HY-15142A) mediated apoptosis and ROS production by activating Akt or MAPK pathways. IS20 protects the heart against Doxorubicin-induced cardiovascular toxicity and improves the survival rate and cardiac function in mouse models. IS20 does not alter the cytotoxicity and antitumor activity of acute DOX treatment in breast cancer cells and MDA-MB-231 xenograft mouse models. IS20 can be used for cancers research .
    IS20
  • HY-N7690R

    Reference Standards Calcium Channel Cardiovascular Disease Metabolic Disease
    3,5,7,3’,4’-Pentamethoxyflavone is a Ca2+ channel inhibitor. 3,5,7,3’,4’-Pentamethoxyflavone can protect DNA from oxidative damage. 3,5,7,3’,4’-Pentamethoxyflavone can induce relaxation of the human corpus cavernosum through calcium mobilization-related mechanisms. 3,5,7,3’,4’-Pentamethoxyflavone can promote the expression of eNOS and cystathionine gamma lyase CSE proteins in middle-aged male rats and regulate vascular function. 3,5,7,3’,4’-Pentamethoxyflavone can be used in research related to diabetes and cardiovascular diseases .
    3,5,7,3′,4′-Pentamethoxyflavone (Standard)
  • HY-160548

    mTOR Infection Neurological Disease Metabolic Disease Inflammation/Immunology Cancer
    mTOR inhibitor-18 (Example 106) is a mTOR inhibitor. mTOR inhibitor-18 can be used for mTOR related research, such as cancer, immune disorders, cardiovascular disease, viral infection, inflammation, metabolism/endocrine function disorders and neurological disorders .
    mTOR inhibitor-18
  • HY-N15147

    DNA/RNA Synthesis Cardiovascular Disease Neurological Disease Metabolic Disease Inflammation/Immunology Cancer
    Panax saponin C is a ginsenoside found in Ginseng with biological activities including regulatory effects on immunomodulation, protection functions in the central nervous and cardiovascular systems, anti-diabetic, anti-aging, anti-carcinogenic, anti-fatigue, anti-pyretic, anti-stress, boosting physical vitality, and promotion of DNA, RNA, and protein synthesis activities .
    Panax saponin C
  • HY-P1208A

    Melanocortin Receptor Inflammation/Immunology
    PG-931 TFA, an analog of SHU 9119 (HY-P0227), is a potent melanocortin 4 (MC4) receptor (IC50=0.58 nM) agonist and is more selective than for the hMC3R (IC50=55 nM) or the hMC5R(IC50=2.4 nM). PG-931 TFA can reverse haemorrhagic shock and prevent multiple organ damage in vivo .
    PG-931 TFA
  • HY-P10279

    Human atrial natriuretic factor (102–126)

    Natriuretic Peptide Receptor (NPR) Cardiovascular Disease Others
    Anaritide is a synthetic form of atrial natriuretic peptide (ANP) composed of 25 amino acids. Anaritide increases glomerular filtration rate by dilating into and contracting out the bulbar arterioles. Anaritide can be used to study the effects on patients with acute tubular necrosis, particularly in improving dialysis free survival .
    Anaritide
  • HY-120180

    Calcium Channel Cardiovascular Disease
    BMS-188107 is a calcium antagonist that exerts anti-ischemic effects. BMS-188107 improves postischemic contractile function and reduces lactate dehydrogenase release. BMS-188107 can be utilized in cardiovascular research .
    BMS-188107
  • HY-101390B

    Calcium Channel Cardiovascular Disease
    Niguldipine is a calcium channel blocker with activity in regulating cardiovascular function. Niguldipine can reduce systolic and diastolic blood pressure, thereby increasing heart rate and cardiac output. Niguldipine exhibits dose-dependent and sustained increases in coronary blood flow. Niguldipine also increases perfusion in the kidneys and femoral arteries, but the effect is temporary and to a lesser extent. The effect of Niguldipine on myocardial metabolism is not significant .
    Niguldipine
  • HY-N0712R

    Reference Standards Autophagy Cardiovascular Disease Inflammation/Immunology
    Typhaneoside (Standard) is the analytical standard of Typhaneoside. This product is intended for research and analytical applications. Typhaneoside, extracted from Typha angustifolia L., Typhaneoside can inhibit the excessive autophagy of hypoxia/reoxygenation cells and increase the phosphorylation of Akt and mTOR. Typhaneoside has certain effects on the cardiovascular system, including lowering blood lipid levels, promoting antiatherosclerosis activities, as well as improving immune and coagulation function .
    Typhaneoside (Standard)

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