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peripheral arteries

" in MedChemExpress (MCE) Product Catalog:

16

Inhibitors & Agonists

1

Peptides

2

Natural
Products

2

Isotope-Labeled Compounds

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-122331

    Calcium Channel Cardiovascular Disease
    Norbormide shows vasoconstrictor activity by blocking calcium channel. The activity of Norbormide is species- and tissue-specific, endothelium independent, and is restricted to the peripheral arteries of rat. Norbormide is also a toxicant, and the oral LD50s in mouse, hamster, guinea pig and rabbit are 2250, 140, 620, and 1000 mg/kg .
    Norbormide
  • HY-B1815

    Xanthinol Niacinate

    Others Cardiovascular Disease
    Xanthinol Nicotinate (Xanthinol Niacinate), a vasodilator, can act directly on the smooth muscle of small arteries and capillaries. Xanthinol Nicotinate expands blood vessels, improves blood rheology and reduces peripheral vascular resistance .
    Xanthinol Nicotinate
  • HY-118284
    Vicagrel
    1 Publications Verification

    P2Y Receptor Cardiovascular Disease
    Vicagrel is a potent, safe and orally active antiplatelet agent, which works by irreversibly inhibiting P2Y12 receptor. Vicagrel can be used for the research of blood clots in coronary artery disease, peripheral vascular disease, and cerebrovascular disease .
    Vicagrel
  • HY-15283
    Clopidogrel
    Maximum Cited Publications
    21 Publications Verification

    Clopidogrelum

    P2Y Receptor Cardiovascular Disease Cancer
    Clopidogrel is an orally active platelet inhibitor that targets P2Y12 receptor. Clopidogrel is used to inhibit blood clots in coronary artery disease, peripheral vascular disease, and cerebrovascular disease.
    Clopidogrel
  • HY-B1298

    Adrenergic Receptor Neurological Disease Endocrinology
    Methoxamine hydrochloride is a selective alpha1-adrenergic receptor agonist. Methoxamine hydrochloride causes vasoconstriction and increased peripheral vascular resistance . Methoxamine hydrochloride significantly increased the overflow of ATP, ADP and AMP, but not adenosine, by a prazosin-sensitive mechanism in the rabbit pulmonary artery .
    Methoxamine hydrochloride
  • HY-44809A

    HIF/HIF Prolyl-Hydroxylase Inflammation/Immunology Cancer
    Izilendustat (hydrochloride) is a potent inhibitor of prolyl hydroxylase which stabilizes hypoxia inducible factor- 1 alpha (HIF- lα), as well as hypoxia inducible factor-2 (HIF-2). Izilendustat (hydrochloride) has the potential for the research of HIF- lα related diseases including Peripheral Vascular Disease (PVD), Coronary Artery Disease (CAD), heart failure, ischemia, anemia, colitis, and other inflammatory bowel diseases (extracted from patent WO2011057115A1/WO2011057112A1/WO2011057121A1) .
    Izilendustat hydrochloride
  • HY-157639A

    Others Cardiovascular Disease
    18:2 Lyso PA sodium is an unsaturated lysophosphatidic acid (LysoPA), a lipid mediator mainly present in plasma and thought to be involved in the pathogenesis of acute coronary syndrome (ACS). 18:2 Lyso PA sodium significantly correlates with serum autotaxin (ATX) in peripheral arteries .
    18:2 Lyso PA sodium
  • HY-125615

    Glycoprotein VI Cardiovascular Disease Others
    DMP 728 methanesulfonate is a platelet glycoprotein (GP) IIb/IIIa receptor antagonist. DMP 728 methanesulfonate shows dose-dependent antiplatelet and antithrombotic effects. DMP 728 methanesulfonate can be used in the study of effective antithrombotic agents in thromboembolic diseases of coronary and peripheral arteries .
    DMP 728 methanesulfonate
  • HY-15283R

    P2Y Receptor Cardiovascular Disease Cancer
    Clopidogrel (Standard) is the analytical standard of Clopidogrel. This product is intended for research and analytical applications. Clopidogrel is an orally active platelet inhibitor that targets P2Y12 receptor. Clopidogrel is used to inhibit blood clots in coronary artery disease, peripheral vascular disease, and cerebrovascular disease.
    Clopidogrel (Standard)
  • HY-B1298A

    Adrenergic Receptor Cardiovascular Disease
    Methoxamine is a selective alpha1-adrenergic receptor agonist. Methoxamine causes vasoconstriction and increased peripheral vascular resistance . Methoxamine hydrochloride significantly increased the overflow of ATP, ADP and AMP, but not adenosine, by a prazosin-sensitive mechanism in the rabbit pulmonary artery .
    Methoxamine
  • HY-B0347
    Lacidipine
    1 Publications Verification

    Calcium Channel Reactive Oxygen Species Caspase Apoptosis Cardiovascular Disease
    Lacidipine is an orally active and highly selective L-type calcium channel blocker that acts on smooth muscle calcium channels, primarily dilates peripheral arteries, reduces peripheral resistance, and has long-lasting anti-hypertensive activity. Lacidipine protects HKCs from apoptosis induced by ATP depletion and recovery by modulating the caspase-3 pathway. Lacidipine can be used in studies of hypertension, atherosclerosis and acute kidney injury (AKI) .
    Lacidipine
  • HY-B0347R

    Calcium Channel Reactive Oxygen Species Caspase Apoptosis Cardiovascular Disease
    Lacidipine (Standard) is the analytical standard of Lacidipine. This product is intended for research and analytical applications. Lacidipine is an orally active and highly selective L-type calcium channel blocker that acts on smooth muscle calcium channels, primarily dilates peripheral arteries, reduces peripheral resistance, and has long-lasting anti-hypertensive activity. Lacidipine protects HKCs from apoptosis induced by ATP depletion and recovery by modulating the caspase-3 pathway. Lacidipine can be used in studies of hypertension, atherosclerosis and acute kidney injury (AKI) .
    Lacidipine (Standard)
  • HY-B0347S1

    Apoptosis Caspase Calcium Channel Reactive Oxygen Species Cardiovascular Disease
    Lacidipine- 13C8 is the deuterium labeled Lacidipine[1]. Lacidipine is an orally active and highly selective L-type calcium channel blocker that acts on smooth muscle calcium channels, primarily dilates peripheral arteries, reduces peripheral resistance, and has long-lasting anti-hypertensive activity. Lacidipine protects HKCs from apoptosis induced by ATP depletion and recovery by modulating the caspase-3 pathway. Lacidipine can be used in studies of hypertension, atherosclerosis and acute kidney injury (AKI)[2][3].
    Lacidipine-13C8
  • HY-B0347S3

    Calcium Channel Caspase Reactive Oxygen Species Apoptosis Isotope-Labeled Compounds Cardiovascular Disease
    Lacidipine- 13C4 is 13C labeled Lacidipine (HY-B0347). Lacidipine is an orally active and highly selective L-type calcium channel blocker that acts on smooth muscle calcium channels, primarily dilates peripheral arteries, reduces peripheral resistance, and has long-lasting anti-hypertensive activity. Lacidipine protects HKCs from apoptosis induced by ATP depletion and recovery by modulating the caspase-3 pathway. Lacidipine can be used in studies of hypertension, atherosclerosis and acute kidney injury (AKI) .
    Lacidipine-13C4
  • HY-17583

    Fungal Apoptosis Antibiotic Endogenous Metabolite Microtubule/Tubulin Wee1 Caspase Bcl-2 Family Infection Cardiovascular Disease Cancer
    Griseofulvin is an orally active antifungal antibiotic with antitumor activity. Griseofulvin induces apoptosis and G2/M cell cycle arrest in cancer cells. Griseofulvin also has cardiovascular modulatory activity, reducing angina pectoris, relieving hand artery spasm associated with onychomycosis, and peripheral vascular diseases such as shoulder-hand syndrome .
    Griseofulvin
  • HY-121705

    Endogenous Metabolite Inflammation/Immunology
    Propionyl-L-carnitine is a carnitine derivative and has a high affinity for muscular carnitine transferase. Propionyl-L-carnitine increases cellular carnitine content, thereby allowing free fatty acid transport into the mitochondria. Propionyl-L-carnitine alleviates the symptoms of PAD through a metabolic pathway, thereby improving exercise performance .
    Propionyl-L-carnitine

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