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Results for "

coronary vasodilation

" in MedChemExpress (MCE) Product Catalog:

8

Inhibitors & Agonists

1

Peptides

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-131896

    NOR4

    NO Synthase Cardiovascular Disease
    FR144420 (NOR4) is an orally active nitric oxide (NO)-releasing agent with vasodilatory and antiplatelet effects. FR144420 induces cGMP-mediated vasodilation and inhibits platelet aggregation. FR144420 is promising for research of cardiovascular diseases, particularly angina pectoris and coronary artery spasm .
    FR144420
  • HY-105651A

    Cholinesterase (ChE) Cardiovascular Disease
    Butalamine (hydrochloride) is a peripheral vasodilator with local anesthetic effects. :Butalamine (hydrochloride) can produce in animals coronary vasodilation, local anaesthesia, analgesia and a papaverine like action in duodenal preparations. Butalamine (hydrochloride) causes a slowing in rate of spontaneous activity, a decrease in amplitude and a reduction in isolated human smooth muscle .
    Butalamine hydrochloride
  • HY-105651AR

    Cholinesterase (ChE) Reference Standards Cardiovascular Disease
    Butalamine (hydrochloride) (Standard) is the analytical standard of Butalamine (hydrochloride). This product is intended for research and analytical applications. Butalamine (hydrochloride) is a peripheral vasodilator with local anesthetic effects. :Butalamine (hydrochloride) can produce in animals coronary vasodilation, local anaesthesia, analgesia and a papaverine like action in duodenal preparations. Butalamine (hydrochloride) causes a slowing in rate of spontaneous activity, a decrease in amplitude and a reduction in isolated human smooth muscle .
    Butalamine hydrochloride (Standard)
  • HY-P4766

    CGRP Receptor Cardiovascular Disease
    Adrenomedullin (porcine) is a peptide that regulates vasodilation. Adrenomedullin (porcine) induces endothelium-dependent relaxation in rat aorta with IC50 value of 2.4 nM. Adrenomedullin (porcine) induces endothelium-independent relaxation of porcine coronary arteries with an IC50 of 27.6 nM .
    Adrenomedullin (porcine)
  • HY-117135

    Sodium Channel Calcium Channel PKC Cardiovascular Disease
    HNS-32 is a compound with antiarrhythmic and vasodilatory effects in canine hearts, showing superior protective effects against ischemic and reperfusion arrhythmias compared to an equivalent dose of Mexiletine hydrochloride (HY-A0093). Furthermore, HNS-32 exhibits significant negative chronotropic effects on mammalian ventricular myocardium, indicating its potential application value in the study of acute coronary syndrome .
    HNS-32
  • HY-120554

    Potassium Channel Cardiovascular Disease
    RWJ 29009 is a highly selective ATP-sensitive potassium channel agonist. RWJ 29009 activates potassium channel in vascular smooth muscle cells, promoting potassium efflux and membrane hyperpolarization to induce coronary and peripheral vasodilation. RWJ 29009 is promising for research of cardiovascular diseases such as acute myocardial ischemia and hypertension .
    RWJ 29009
  • HY-19310

    Adenosine Receptor Cardiovascular Disease Metabolic Disease
    AMP-579 is an adenosine receptor agonist that primarily targets adenosine A1 and A2A receptors (with Ki values of 1.7 and 4.5 nM for the A1 receptor in rat brain and adipocytes, and a Ki value of 56 nM for the A2A receptor in rat brain). AMP-579 inhibits lipolysis, restores insulin-dependent glucose transport, and reduces heart rate through the activation of A1 receptors, while it induces vasodilation, particularly in coronary arteries, through the activation of A2A receptors (with an IC50 of 0.3 μM in porcine coronary arterial rings). AMP 579 shows potential for application in cardioprotection and the treatment of acute myocardial infarction .
    AMP-579
  • HY-130229

    (±)5,6-DiHETrE lactone

    Drug Derivative Cardiovascular Disease
    5,6-DiHET lactone ((±)5,6-DiHETrE lactone) is a lactonized form of 5,6-EET and 5,6-DiHET. In solution, 5(6)-EET degrades into 5(6)-DiHET and 5(6)-δ-lactone, which can be converted to 5(6)-DiHET and quantified by GC-MS.1 5,6-DiHET potently induces vasodilation of isolated canine coronary arterioles, with 41 and 100% inhibition occurring at 0.01 and 100 pM, respectively. It also induces vasodilation in isolated human microvessels and increases intracellular calcium levels in a dose-dependent manner, an effect that can be blocked by the nitric oxide scavenger L-NAME.
    (±)5,6-DHET lactone

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