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Results for "

Diphenyleneiodonium

" in MedChemExpress (MCE) Product Catalog:

5

Inhibitors & Agonists

4

Peptides

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-100965
    Diphenyleneiodonium chloride
    30+ Cited Publications

    DPI

    TRP Channel NADPH Oxidase Reactive Oxygen Species Neurological Disease Inflammation/Immunology
    Diphenyleneiodonium chloride is a NADPH oxidase (NOX) inhibitor and also functions as a TRPA1 activator with an EC50 of 1 to 3 μM. Diphenyleneiodonium chloride selectively inhibits intracellular reactive oxygen species.
    <em>Diphenyleneiodonium</em> chloride
  • HY-P3567

    Melanocortin Receptor Neurological Disease
    (p-Iodo-Phe7)-ACTH (4-10) is a adrenocorticotrophic hormone (ACTH) derivative, which is produced and secreted by the anterior pituitary gland. (p-Iodo-Phe7)-ACTH (4-10) serves as a melanocortin (MC) receptor antagonist and inhibits α-melanocyte-stimulating hormone (α-MSH)-induced excessive grooming behavior in rats .
    (p-<em>Iodo</em>-Phe7)-ACTH (4-10)
  • HY-P2434

    Somatostatin Receptor Neurological Disease Metabolic Disease Cancer
    AP102 is a dual SSTR2/SSTR5-specific somatostatin analog (SSA). AP102 is a disulfide-bridged octapeptide SSA containing synthetic iodinated amino acids. AP102 binds with subnanomolar affinity to SSTR2 and SSTR5 (IC50: 0.63 and 0.65 nM, respectively). AP102 does not bind to SSTR1 or SSTR3. AP102 can be used for acromegaly and neuroendocrine tumors research .
    AP102
  • HY-P3350

    Bacterial Infection
    LS-BF1 is a stable and low toxic cationic antimicrobial peptide. LS-BF1 displays broad spectrum of antibacterial activity, including the challenging ESKAPE pathogens, by cell membrane disruptive mechanism. LS-BF1 shows good in vivo efficacy for elimination of bacteria in a mouse infection model[1].
    LS-BF1
  • HY-105168

    Endothelin Receptor Cardiovascular Disease
    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 .
    TAK 044

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