11343 Results for "

containing

" in MedChemExpress (MCE) Product Catalog:
Products (11343)

11343 Results for "containing" in MCE Product Catalog:

Art. -Nr.: HY-L255
72 compounds

Dipeptide compounds have attracted extensive attention in drug discovery and life science research due to their simple structures, ease of modification, and favorable biocompatibility. As small peptides composed of two amino acids, dipeptides exhibit diverse biological activities, including anti-inflammatory, antioxidant, antimicrobial, anticancer, and immunomodulatory effects, showing significant application potential in metabolic disorders, neurological diseases, and cancer research. Compared with traditional small molecules, dipeptide compounds possess favorable target-binding properties and high structural plasticity, making them valuable tools for drug screening and mechanism studies.

The MCE Dipeptide Compound Library contains 72 dipeptide compounds and can be applied to peptide drug discovery and development.

Art. -Nr.: HY-P705128
Reinheit:  ≥ 95%, as determined by Bis-Tris PAGE.
Synonyms: DDR1; HGK2; Prev. EDDR1; Neurotrophic Tyrosine Kinase, Receptor, Type 4; Prev. NTRK4; Discoidin Domain Receptor Family, Member 1; Prev. PTK3A; Epithelial Discoidin Domain Receptor 1; Prev. CAK; PTK3A Protein Tyrosine Kinase 3A; Prev. NEP; Receptor Protein-Tyrosine Kinase; RTK6; Neuroepithelial Tyrosine Kinase; Epithelial Discoidin Domain-containing Receptor 1; Discoidin Domain Receptor DDR1e; CD167 Antigen-Like Family Member A; Discoidin Domain Receptor DDR1d; Tyrosine Kinase DDR; Protein-Tyrosine Kinase 3A; CD167; CD167a Antigen; Discoidin Receptor Tyrosine Kinase; MCK-10; Protein-Tyrosine Kinase RTK-6; MCK10; Mammary Carcinoma Kinase 10; TRK E; Tyrosine-Protein Kinase CAK; PTK3; Cell Adhesion Kinase; DDR; Discoidin Domain Receptor Tyrosine Kinase 1; TRKE
Species:  
Human
Source:  
HEK293
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Art. -Nr.: HY-P706032
Reinheit:  ≥ 80%, as determined by reducing SDS-PAGE.
Synonyms: DDR1; HGK2; Prev. EDDR1; Neurotrophic Tyrosine Kinase, Receptor, Type 4; Prev. NTRK4; Discoidin Domain Receptor Family, Member 1; Prev. PTK3A; Epithelial Discoidin Domain Receptor 1; Prev. CAK; PTK3A Protein Tyrosine Kinase 3A; Prev. NEP; Receptor Protein-Tyrosine Kinase; RTK6; Neuroepithelial Tyrosine Kinase; Epithelial Discoidin Domain-containing Receptor 1; Discoidin Domain Receptor DDR1e; CD167 Antigen-Like Family Member A; Discoidin Domain Receptor DDR1d; Tyrosine Kinase DDR; Protein-Tyrosine Kinase 3A; CD167; CD167a Antigen; Discoidin Receptor Tyrosine Kinase; MCK-10; Protein-Tyrosine Kinase RTK-6; MCK10; Mammary Carcinoma Kinase 10; TRK E; Tyrosine-Protein Kinase CAK; PTK3; Cell Adhesion Kinase; DDR; Discoidin Domain Receptor Tyrosine Kinase 1; TRKE
Species:  
Human
Source:  
Sf9 insect cells
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Art. -Nr.: HY-L203
351 compounds

Methylation is an epigenetic modification mechanism that involves adding methyl groups to molecules such as DNA and histones, which can alter gene expression without changing the DNA sequence. This process is catalyzed by enzymes such as DNA methyltransferases (DNMTs) and histone methyltransferases (HMTs), and can be reversed by demethylases. The balance of methylation and demethylation is crucial for maintaining cellular function and genomic stability. Abnormal regulation of methylation may lead to a variety of diseases, including cancer, neurological disorders, and developmental abnormalities. A deep understanding of the molecular mechanisms of methylation metabolism is essential for developing therapeutic strategies for diseases associated with methylation dysregulation.

MCE contains 351 compounds targeting methylation/demethylation enzymes, which is of significant value for studying the pathways of methylation metabolism and exploring their mechanisms of action in diseases.

Art. -Nr.: HY-P72779
Reinheit:  ≥ 95%, as determined by reducing SDS-PAGE.
Synonyms: TNFRSF10B; ZTNFR9; TNF Receptor Superfamily Member 10b; CDNA FLJ76289, Highly Similar To Homo Sapiens Tumor Necrosis Factor Receptor Superfamily, Member 10b (TNFRSF10B), Transcript Variant 1, MRNA; TRAIL-R2; P53-Regulated DNA Damage-Inducible Cell Death Receptor(Killer); TRAILR2; Tumor Necrosis Factor Receptor-Like Protein ZTNFR9; KILLER; Death Domain containing Receptor For TRAIL/Apo-2L; DR5; Apoptosis Inducing Protein TRICK2A/2B; Tumor Necrosis Factor Receptor Superfamily, Member 10b; Apoptosis Inducing Receptor TRAIL-R2; Tumor Necrosis Factor Receptor Superfamily Member 10B; Cytotoxic TRAIL Receptor-2; TRICK2A; TNFRSF10B Protein; TRICKB; Fas-Like Protein; CD262; TRAIL Receptor 2; TNF-Related Apoptosis-Inducing Ligand Receptor 2; CD262 Antigen; Death Receptor 5; KILLER/DR5; TRICK2; TRICK2B
Species:  
Human
Source:  
E. coli
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Art. -Nr.: HY-P703363
Reinheit:  ≥ 90%, as determined by reducing SDS-PAGE.
Synonyms: DCAF10; WD Repeat-containing Protein 32; Prev. WDR32; MGC10765; DDB1- And CUL4-Associated Factor 10; FLJ23201; DDB1 And CUL4 Associated Factor 10; WD Repeat Domain 32; DDB1; XPE-BF; Damage Specific DNA Binding Protein 1; XAP-1; DNA Damage-Binding Protein 1; XAP1; Xeroderma Pigmentosum Group E-Complementing Protein; Damage-Specific DNA Binding Protein 1 (127kD); Damage-Specific DNA-Binding Protein 1; Damage-Specific DNA Binding Protein 1, 127kDa; UV-Damaged DNA-Binding Protein 1; UV-DDB1; UV-Damaged DNA-Binding Factor; WHIKERS; DNA Damage-Binding Protein A; DDBA; HBV X-Associated Protein 1; XPCE; XPE-Binding Factor; XPCe; DDB P127 Subunit; DDBa; UV-DDB 1; XPE
Species:  
Human
Source:  
Sf9 insect cells
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Art. -Nr.: HY-P87082
Synonyms: DOM antibody; DOM antibody; Dominant megacolon mouse human homolog of antibody; MGC15649 antibody; PCWH antibody; SOX 10 antibody; SOX10 antibody; SOX10_HUMAN antibody; SRY (sex determining region Y) box 10 antibody; SRY (sex determining region Y) box 10 antibody; DOM antibody; DOM antibody; Dominant megacolon mouse human homolog of antibody; MGC15649 antibody; PCWH antibody; SOX 10 antibody; SOX10 antibody; SOX10_HUMAN antibody; SRY (sex determining region Y) box 10 antibody; SRY (sex determining region Y) box 10 antibody; SRY box 10 antibody; SRY box containing gene 10 antibody; SRY related HMG box gene 10 antibody; SRY related HMG box gene 10 antibody; Transcription factor SOX 10 antibody; Transcription factor SOX-10 antibody; WS2E antibody; WS4 antibody; WS4C antibody;

Host:  

Rat

Application:  

IHC-F, IHC-P, IF-Tissue

Reactivity:  

Mouse, Rat

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Art. -Nr.: HY-L158
6,342 compounds

According to reports, most known kinase inhibitors exert their effects through competitive binding in highly conserved ATP pockets. Although genetic techniques such as RNA interference can inactivate specific genes, most kinases are multi domain proteins, each of which has an independent function. Highly selective inhibitors have higher efficiency than non-selective inhibitors, and the selectivity to the target is at least 100 times higher. Therefore, ensuring the validation of targets with the most selective inhibitors is crucial for a more thorough understanding of the pharmacology of the kinase field. The Highly Selective Inhibitors Library contains 6,342 compounds, covering multiple targets and subtypes, such as GPCR protein family, Ion channel, multiple kinases, etc. The Highly Selective Inhibitors Library is an effective tool for screening different phenotypes

Art. -Nr.: HY-L037
2,489 compounds

Oxidative stress is an imbalance of free radicals and antioxidants in the body, which can lead to cell and tissue damage. Oxidative stress can be responsible for the induction of several diseases, both chronic and degenerative, as well as speeding up body aging process and cause acute pathologies. Antioxidants are a class of compounds able to counteract oxidative stress and mitigate its effects on individuals’ health, gained enormous attention from the biomedical research community. Antioxidants have long been substantial and amenable therapeutic arsenals for multifarious diseases such as AD and cancer.

MCE Antioxidant Compound Library contains 2,489 compounds that act as antioxidants for high throughput screening (HTS) and high content screening (HCS). This library is a useful tool for discovery new antioxidants and oxidative stress research.

Art. -Nr.: HY-L035
5,148 compounds

New drug development is a time-consuming and high-cost process. Drug repurposing (also called drug repositioning, reprofiling or re‑tasking) offers various advantages over developing an entirely new drug for a given indication. First, the risk of failure is lower. Second, the time frame for drug development can be reduced. Third, less investment is needed. Approved and clinical drugs, especially after phase I drugs, have identified bioactivities, good pharmacokinetic characteristics and safety which are suitable for drug repurposing.

MCE Drug Repurposing Compound Library contains 5,148 approved drugs and passed phase Ⅰclinical drugs, which have been completed extensive preclinical and clinical studies and have well-characterized bioactivities, safety and bioavailability properties.

Art. -Nr.: HY-L042
921 compounds

Glycosides are compounds in which a sugar group is bonded through its anomeric carbon to another group via a glycosidic bond. Many biologically active compounds are glycosides. Glycosides comprise several important classes of compounds such as hormones, sweeteners, alkaloids, flavonoids, antibiotics, etc. The glycosidic residue can be crucial for their activity or can only improve pharmacokinetic parameters. Glycosides, which exhibit anti-inflammatory, anti-infection, anti-cancer and anti-oxidative properties, play numerous important roles in living organisms, such as streptomycin, as an aminoglycoside antibiotic, has anti-infection activity. Anthracyclines possess good antibacterial and anti-cancer activities.

MCE Glycoside Compound Library contains a unique collection of 921 glycoside compounds and is a useful tool to discovery glycoside drugs.

Art. -Nr.: HY-L167
165 compounds

Boric acid is a stable and usually non-toxic group widely used in modern synthesis to form C-C and C-heteroatom bonds. Boric acid exhibits exquisite reversible coordination characteristics and can be explored as a molecular construction tool, with specific mechanisms for controlling the structure and biological characteristics of bioconjugates. Boric acid has various activities, such as anticancer, antibacterial, and antiviral activities. In drugs, boric acid mainly exists in the form of arylboronic acid. In addition to this form, heterocycles containing boric acid, such as pyridine, pyrrole, and indole derivatives, are also very useful in pharmaceutical chemistry. Molecular modification by introducing boric acid groups into bioactive molecules has been shown to alter selectivity, physicochemical, and pharmacokinetic characteristics, and improve existing activity.

MCE designs a unique collection of 165 boronic acid compounds. It is a good tool to be used for research on cancer and other diseases.

Art. -Nr.: HY-L261
167 compounds

MCE Classic FDA-Approved Drug Library features a curated selection of marketed drugs that have achieved the highest prescription volumes and greatest clinical impact in global practice since 2006. The collection covers eight major therapeutic areas, including cardiovascular diseases, oncology, metabolic disorders, infectious diseases, central nervous system disorders, respiratory diseases, digestive system diseases, and immunological conditions. All compounds have been validated through long‑term clinical use and possess well‑defined molecular targets, well‑established pharmacokinetic properties, quantifiable efficacy endpoints, and comprehensive toxicological safety profiles.

The library currently contains 167 representative drugs and is designed to serve as an efficient tool for drug repurposing, phenotypic screening, mechanism‑of‑action studies, and combination therapy strategy development.

Art. -Nr.: HY-L033
370 compounds

Peptidomimetics are compounds whose essential elements (pharmacophore) mimic a natural peptide or protein in 3D space and which retain the ability to interact with the biological target and produce the same biological effect. Peptidomimetics are designed to circumvent some of the problems associated with a natural peptide: e.g. stability against proteolysis (duration of activity) and poor bioavailability. Certain other properties, such as receptor selectivity or potency, often can be substantially improved. The design and synthesis of peptidomimetics are most important because of the dominant position peptide and protein-protein interactions play in molecular recognition and signaling, especially in living systems. Hence mimics have great potential in drug discovery.

MCE Peptidomimetic Library contains 370 compounds including peptoid, α-helix mimetics, β-turn/sheets mimetics, etc. This library is an indispensable tool of structure-activity relationships in drug discovery.

Art. -Nr.: HY-L085
2,199 compounds

Parkinson’s disease (PD), the second most common age-associated neurodegenerative disorder, is characterized by the loss of dopaminergic (DA) neurons and the presence of α-synuclein-containing aggregates in the substantia nigra pars compacta (SNpc). Motor features such as tremor, rigidity, bradykinesia and postural instability are common traits of PD. To date, there is no treatment to stop or at least slow down the progression of the disease. The etiology and pathogenesis of PD is still elusive, however, a large body of evidence suggests a prominent role of oxidative stress, inflammation, apoptosis, mitochondrial dysfunction and proteasome dysfunction in the pathogenesis of PD.

MCE offers a unique collection of 2,199 compounds with anti- Parkinson’s Disease activities or targeting the unique targets of PD. MCE Anti- Parkinson's Disease Compound Library is a useful tool for exploring the mechanism of PD and discovering new drugs for PD.

Art. -Nr.: HY-L909
8,569 compounds

Covalent inhibitors are small molecules that can bind specifically to target proteins through covalent bonds and inhibit their biological functions. Although for a long time, covalent targeting has been playing a subordinate role in drug discovery, with an increasing number of reports on successful clinical applications of such drugs, the potential of these agents is now being acknowledged.

Covalent ligands rely on reactive groups (“warheads”), and new warheads are key to expanding the scope of covalent modalities. Through careful selection, we constructed a structural filter containing over 110 electrophilic groups. By analyzing the electrophilic fragments selected by the structural filter, we removed any molecules with trivial or undesirable structural features. Ultimately, we obtained 8,900 fragment molecules with covalent modification potential, which can target various reactive amino acid residues and can be used for fragment-based covalent drug discovery.

Art. -Nr.: HY-L072
58 compounds

Exosomes are small membrane vesicles of endocytic origin that are secreted by most cells in culture. Exosomes contain nucleic acids, proteins, lipids, amino acids, and metabolites, etc. Their diverse constituents can reflect their cell of origin. Exosomes are associated with immune responses, viral pathogenicity, pregnancy, cardiovascular diseases, central nervous system-related diseases, and cancer progression. Proteins, metabolites, and nucleic acids delivered by exosomes into recipient cells effectively alter their biological response. Such exosome-mediated responses can be disease promoting or restraining.

The biology of exosomes in disease is still emerging, and the number of studies addressing their utility in the diagnosis and treatment of various pathologies has increased substantially. MCE supplies a unique collection of 58 compounds with the activity of inhibiting or stimulating exsomes secretion/biosynthesis. MCE Exosomes Compound Library is a useful tool for exsomes research.

Art. -Nr.: HY-L185
2,568 compounds

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.

Art. -Nr.: HY-KE8012

Protein Deglycosylation Kit (for O-linked Glycans)contains O-Glycosidase and a2-3,6,8,9 Neuraminidase.Both enzymes are crucial tool enzymes for glycosylation research and are used in combination to enzymatically release O-linked glycans from glycoproteins.O-Glycosidase is capable of cleaving and releasing Core 1 (Gal-B(1-3)-GalNAc-)and Core 3(GIcNAc-B(1-3)-GalNAc-)O-linked disaccharides,which are linked to the hydroxyl groups of Ser or Thr residues in glycoproteins.a2-3,6,8,9 Neuraminidase can remove a(2,3)-,a(2,6)-,a(2,8)-,and a(2,9)-sialic acid residues from the non-reducing termini of O-linked glycans.

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Art. -Nr.: HY-L253
91 compounds

For thousands of years, natural products have always been an important source for drug discovery. Fungi, due to their unique and diverse secondary metabolic capabilities, have become a valuable resource for natural active molecules. Since the discovery of penicillin, natural products derived from fungi have demonstrated significant application value in areas such as anti-infection, anti-tumor, immune regulation, and metabolic disease research. A large number of clinical drugs, such as antibiotics, immunosuppressants, and lipid-lowering drugs, are derived from fungal metabolites or their structurally optimized derivatives.

MCE fungal-derived compound library contains 91 structurally diverse and bioactive fungal natural products and their derivatives. It can be widely applied in various research fields such as antibacterial, anti-tumor, anti-inflammatory, immune regulation, epigenetics, and cell signaling pathways, providing high-quality tools for natural product drug development and high-throughput screening.