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Results for "

hiPSC-CMs

" in MedChemExpress (MCE) Product Catalog:

10

Inhibitors & Agonists

1

Inhibitory Antibodies

Cat. No. Nombre del producto Target Áreas de investigación Chemical Structure
  • HY-A0093
    Mexiletine hydrochloride
    2 Publications Verification

    KOE-1173 hydrochloride

    Sodium Channel Cardiovascular Disease Neurological Disease
    Mexiletine is an orally effective antiarrhythmic agent which has also been found to be effective for myotonia and neuropathic pain. Mexiletine exerts its efficacy through blocking sodium channels (IC50 : 75±8 μM for tonic block, 23.6±2.8 μM for use-dependent block), therefore can be used for cardiovascular and neurological research .
    Mexiletine hydrochloride
  • HY-119521
    Mexiletine
    2 Publications Verification

    KOE-1173

    Sodium Channel Cardiovascular Disease Neurological Disease
    Mexiletine is an orally effective antiarrhythmic agent which has also been found to be effective for myotonia and neuropathic pain. Mexiletine exerts its efficacy through blocking sodium channels (IC50 : 75±8 μM for tonic block, 23.6±2.8 μM for use-dependent block), therefore can be used for cardiovascular and neurological research .
    Mexiletine
  • HY-136832

    Serotonin Transporter Potassium Channel Arrestin Opioid Receptor Cardiovascular Disease Neurological Disease
    Noribogaine hydrochloride is an orally active, blood-brain barrier permeable SERT inhibitor (IC50=50-300 nM) and hERG channel blocker. Noribogaine hydrochloride enhances serotonergic transmission, activates the κ-opioid receptor (OPRK) G protein signaling pathway and inhibits β-arrestin recruitment. Meanwhile, Noribogaine hydrochloride blocks the μ-opioid receptor (OPRM) signaling pathway as well as ion channels associated with cardiac repolarization. Noribogaine hydrochloride induces neuritogenesis, upregulates GDNF mRNA expression, and modulates opioid tolerance. Noribogaine hydrochloride reduces alcohol-seeking behavior in experimental animals, and is widely used in studies related to depression, addiction, alcoholism, and cardiotoxicity .
    Noribogaine hydrochloride
  • HY-P99047

    AB 0024; GS 6624

    Monoamine Oxidase Cardiovascular Disease Inflammation/Immunology
    Simtuzumab (AB 0024; GS 6624) is a monoclonal antibody directed against Lysyl oxidase like-2 (LOXL2). Simtuzumab non-competitively blocks collagen cross-linking, reduces LOXL2 protein expression and attenuates extracellular matrix changes. Simtuzumab reduces myocardial fibrosis and prevents cardiac dysfunction. Simtuzumab lowers Myh7 and Nppa gene expression, reduces contraction heterogeneity, and cuts COL1A1 deposition. Simtuzumab can be used for the research of LMNA mutation-induced dilated cardiomyopathy, idiopathic pulmonary fibrosis, and primary sclerosing cholangitis .
    Simtuzumab
  • HY-18071
    BI-9627
    3 Publications Verification

    Na+/H+ Exchanger (NHE) Autophagy Cardiovascular Disease
    BI-9627, a chemical probe, is a potent sodium-hydrogen exchanger isoform 1 (NHE1) inhibitor (IC50 = 6 and 31 nM in intracellular pH recovery (pHi) and human platelet swelling assays). BI-9627 displays >30-fold selectivity against NHE2 and with no measurable inhibitory activity against the NHE3 isoform. BI-9627 decreases autophagy in HTR-8/SVneo cells. BI-9627 can significantly reduce the pHi of human sperm and partially reverse the effect of DMA. BI-9627 prolongs Ca 2+ recovery time in KO hiPSC-CMs. BI-9627 shows low DDI (agent-agent interaction) potential, excellent pharmacokinetics in rat and dog, and remarkably potent activity in the isolated heart model of ischemia-reperfusion injury .
    BI-9627
  • HY-124815

    Reactive Oxygen Species (ROS) Others
    CP-312 is a potent Heme Oxygenase-1 (HO-1) inducer. CP-312 protects hiPSC-CM viability by targeting the antioxidant response network through induction of HMOX1 expression. CP-312 protects human iPSC-derived cardiomyocytes from oxidative stress .
    CP-312
  • HY-18071A
    BI-9627 hydrochloride
    3 Publications Verification

    Na+/H+ Exchanger (NHE) Autophagy Cardiovascular Disease
    BI-9627 hydrochloride is a potent sodium-hydrogen exchanger isoform 1 (NHE1) inhibitor (IC50 = 6 and 31 nM in intracellular pH recovery (pHi) and human platelet swelling assays). BI-9627 hydrochloride displays >30-fold selectivity against NHE2 and with no measurable inhibitory activity against the NHE3 isoform. BI-9627 hydrochloride decreases autophagy in HTR-8/SVneo cells. BI-9627 hydrochloride can significantly reduce the pHi of human sperm and partially reverse the effect of DMA. BI-9627 hydrochloride prolongs Ca 2+ recovery time in KO hiPSC-CMs. BI-9627 hydrochloride shows low DDI (agent-agent interaction) potential, excellent pharmacokinetics in rat and dog, and remarkably potent activity in the isolated heart model of ischemia-reperfusion injury .
    BI-9627 hydrochloride
  • HY-153020

    Reactive Oxygen Species (ROS) Cardiovascular Disease
    HIF-PHD-IN-3 (compound 4) is a potent hiPSC-CM cardioprotective scaffold. HIF-PHD-IN-3 can induce upregulation of heme oxygenase-1 .
    HIF-PHD-IN-3
  • HY-124815R

    Reactive Oxygen Species (ROS) Others
    CP-312 (Standard) is the analytical standard of CP-312. This product is intended for research and analytical applications. CP-312 is a potent Heme Oxygenase-1 (HO-1) inducer. CP-312 protects hiPSC-CM viability by targeting the antioxidant response network through induction of HMOX1 expression. CP-312 protects human iPSC-derived cardiomyocytes from oxidative stress .
    CP-312 (Standard)
  • HY-A0093R

    KOE-1173 hydrochloride (Standard)

    Sodium Channel Reference Standards Cardiovascular Disease Neurological Disease
    Mexiletine (hydrochloride) (Standard) is the analytical standard of Mexiletine (hydrochloride). This product is intended for research and analytical applications. Mexiletine is an orally effective antiarrhythmic agent which has also been found to be effective for myotonia and neuropathic pain. Mexiletine exerts its efficacy through blocking sodium channels (IC50 : 75±8 μM for tonic block, 23.6±2.8 μM for use-dependent block), therefore can be used for cardiovascular and neurological research .
    Mexiletine hydrochloride (Standard)

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