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27-O-Acetyl-withaferin A

" in MedChemExpress (MCE) Product Catalog:

10

Inhibitors & Agonists

9

Peptides

1

Natural
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1

Click Chemistry

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-P5544

    N-Acetylmuramyl-L-Ala-γ-D-Glu-meso-diaminopimelic acid

    NOD-like Receptor (NLR) Others
    M-TriDAP (N-Acetylmuramyl-L-Ala-γ-D-Glu-meso-diaminopimelic acid) is a NOD1/2 agoist and biological active peptide .
    M-TriDAP
  • HY-P2161B
    TAK-683 acetate
    1 Publications Verification

    Kisspeptin Receptor Cancer
    TAK-683 acetate is a potent full KISS1 receptor (KISS1R) agonist (IC50=170 pM) with improved metabolic stability. TAK-683 acetate is a nonapeptide metastin analog, exhibits agonistic activities to KISS1R with EC50 values of 0.96 nM and 1.6 nM for human and rat, respectively . TAK-683 acetate depletes GnRH in the hypothalamus and reduces plasma FSH, LH, and testosterone levels in vivo, it has the potential for the study of hormone-dependent prostate cancer .
    TAK-683 acetate
  • HY-P10928

    Transferrin Receptor Neurological Disease Cancer
    BCY17901 TFA is a potent irreversible transferrin receptor 1 (TfR1) inhibitor (Ki=12 nM). BCY17901 TFA inhibits TfR1-mediated endocytosis and iron transport, and suppresses the proliferation of tumor cells dependent on iron metabolism. BCY17901 TFA can be used in the research of solid tumors (such as breast cancer, glioblastoma) and neurodegenerative diseases .
    BCY17901 TFA
  • HY-N5046

    Others Inflammation/Immunology
    27-O-Acetyl-withaferin A is found in Withania aristata .
    27-O-Acetyl-withaferin A
  • HY-P1016

    Endothelin Receptor Cardiovascular Disease
    BQ-3020 is a selective endothelin receptor (ETB receptor) agonist that displaces [ 125I] ET-1 binding to ETB receptors, with an IC50 value of 0.2 nM. BQ-3020 elicits vasoconstriction in the rabbit pulmonary artery. BQ-3020 makes relaxation of the pig urinary bladder neck and can be used for cardiovascular disease research 1 2.
    BQ-3020
  • HY-P5544A

    N-Acetylmuramyl-L-Ala-γ-D-Glu-meso-diaminopimelic acid TFA

    NOD-like Receptor (NLR) Others
    M-TriDAP (N-Acetylmuramyl-L-Ala-γ-D-Glu-meso-diaminopimelic acid) TFA is a NOD1/2 agoist and biological active peptide .
    M-TriDAP TFA
  • HY-P2161A

    Kisspeptin Receptor Cancer
    TAK-683 TFA is a potent full KISS1 receptor (KISS1R) agonist (IC50=170 pM) with improved metabolic stability. TAK-683 TFA is a nonapeptide metastin analog, exhibits agonistic activities to KISS1R with EC50 values of 0.96 nM and 1.6 nM for human and rat, respectively . TAK-683 TFA depletes GnRH in the hypothalamus and reduces plasma FSH, LH, and testosterone levels in vivo, it has the potential for the study of hormone-dependent prostate cancer .
    TAK-683 TFA
  • HY-P2161

    Kisspeptin Receptor Cancer
    TAK-683 is a potent full KISS1 receptor (KISS1R) agonist (IC50=170 pM) with improved metabolic stability. TAK-683 is a nonapeptide metastin analog, exhibits agonistic activities to KISS1R with EC50 values of 0.96 nM and 1.6 nM for human and rat, respectively . TAK-683 depletes GnRH in the hypothalamus and reduces plasma FSH, LH, and testosterone levels in vivo, it has the potential for the study of hormone-dependent prostate cancer .
    TAK-683
  • HY-P10928A

    Transferrin Receptor Neurological Disease Cancer
    BCY17901 is a potent irreversible transferrin receptor 1 (TfR1) inhibitor (Ki=12 nM). BCY17901 inhibits TfR1-mediated endocytosis and iron transport, and suppresses the proliferation of tumor cells dependent on iron metabolism. BCY17901 can be used in the research of solid tumors (such as breast cancer, glioblastoma) and neurodegenerative diseases .
    BCY17901
  • HY-P10319

    PKA Cardiovascular Disease Cancer
    RI-STAD-2 is a high-affinity interfering peptide that regulates the subunit RI of protein kinase A (PKA). RI-STAD-2 interferes with the binding of AKAPs and PKA-RI by simulating the interaction between AKAPs' α-helix domain and PKA-RI's dimerization/anchoration (D/D) domain, thereby affecting PKA activity and intracellular localization. RI-STAD-2 can be used to study the role of AKAPs interaction with PKA-RI in pathological processes such as cardiovascular disease and cancer .
    RI-STAD-2

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