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Results for "

PAR formation

" in MedChemExpress (MCE) Product Catalog:

7

Inhibitors & Agonists

2

Peptides

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-116218

    JPI-289

    PARP Cardiovascular Disease Neurological Disease
    Amelparib is a potent, orally active, and water-soluble inhibitor of PARP-1. Amelparib inhibits PARP-1 activity (IC50 =18.5 nmol/L) and cellular PAR formation (IC50 =10.7 nmol/L) in the nanomolar range. Amelparib is a potential neuroprotective agent. Amelparib has the potential for the research of acute ischaemic stroke .
    Amelparib
  • HY-116218C

    JPI-289 hydrochloride

    PARP Cardiovascular Disease Neurological Disease
    Amelparib (JPI-289) hydrochloride is a potent, orally active, and water-soluble inhibitor of PARP-1. Amelparib hydrochloride inhibits PARP-1 activity (IC50 = 18.5 nM) and cellular PAR formation (IC50 = 10.7 nM). Amelparib hydrochloride is a potential neuroprotective agent. Amelparib hydrochloride has the potential for the research of acute ischaemic stroke .
    Amelparib hydrochloride
  • HY-108556A

    Protease Activated Receptor (PAR) Apoptosis Cardiovascular Disease
    RWJ-56110 dihydrochloride is a potent, selective, peptide-mimetic inhibitor of PAR-1 activation and internalization (binding IC50=0.44 uM) and shows no effect on PAR-2, PAR-3, or PAR-4. RWJ-56110 dihydrochloride inhibits the aggregation of human platelets induced by both SFLLRN-NH2 (IC50=0.16 μM) and thrombin (IC50=0.34 μM), quite selective relative to U46619 (HY-108566). RWJ-56110 dihydrochloride blocks angiogenesis and blocks the formation of new vessels in vivo. RWJ-56110 dihydrochloride induces cell apoptosis .
    RWJ-56110 dihydrochloride
  • HY-P5372

    Protease Activated Receptor (PAR) Others
    Ala-parafluoroPhe-Arg-Cha-Cit-Tyr-NH2 is a biological active peptide. (Protease activated receptor 1 (PAR-1) belongs to a subfamily of G-protein coupled receptors and is known to mediate the cellular effects of thrombin. This peptide is a PAR-1 selective agonist displaying a high level of specificity to PAR-1 over PAR-2. The specificity of peptide was evaluated in cell-based calcium signaling assay using HEK293 cells. PAR-1 selective agonists can be used to study PAR-1 activation in vivo. In addition to its varied cellular effects of thrombin, PAR-1 has also been shown to coordinate with PAR-4 and regulate thrombin-induced hepatocellular carcinoma harboring thrombin formation within the tumor environment classified as 'coagulation type'.)
    Ala-parafluoroPhe-Arg-Cha-Cit-Tyr-NH2
  • HY-108556

    Protease Activated Receptor (PAR) Apoptosis Cardiovascular Disease
    RWJ-56110 is a potent, selective, peptide-mimetic inhibitor of PAR-1 activation and internalization (binding IC50=0.44 uM) and shows no effect on PAR-2, PAR-3, or PAR-4. RWJ-56110 inhibits the aggregation of human platelets induced by both SFLLRN-NH2 (IC50=0.16 μM) and thrombin (IC50=0.34 μM), quite selective relative to U46619 (HY-108566). RWJ-56110 inhibits angiogenesis and blocks the formation of new vessels in vivo. RWJ-56110 induces cell apoptosis .
    RWJ-56110
  • HY-13965
    Parmodulin 2
    2 Publications Verification

    ML161

    Protease Activated Receptor (PAR) Cardiovascular Disease
    Parmodulin 2 (ML161) is an allosteric inhibitor of protease-activated receptor 1 (PAR1) with an IC50 of 0.26 μM . Parmodulin 2 is a potent and non-competitive inhibitor of SFLLRN-induced P-selectin expression leading to inhibition of platelet aggregation in vitro and platelet thrombus formation in vivo .
    Parmodulin 2
  • HY-P5740

    Bacterial Infection
    Cacaoidin is a glycosylated lantibiotic isolated from a Streptomyces cacaoi strain. Cacaoidin has potent antibacterial activity against Gram-positive pathogens including Clostridium difficile .
    Cacaoidin

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