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Results for "

atrial muscle

" in MedChemExpress (MCE) Product Catalog:

16

Inhibitors & Agonists

2

Peptides

1

Natural
Products

Cat. No. 상품명 Target 연구분야 Chemical Structure
  • HY-12533
    Disopyramide
    2 Publications Verification

    Dicorantil; SC-7031

    Sodium Channel Potassium Channel Cardiovascular Disease
    Disopyramide (Dicorantil) is a class IA antiarrhythmic agent with efficacy in ventricular and atrial arrhythmias. Disopyramide blocks the fast inward sodium current of cardiac muscle and prolongs the duration of cardiac action potentials. Disopyramide inhibits HERG encoded potassium channels. Disopyramide also exhibits complex protein binding, and has a potent negative inotropic action .
    Disopyramide
  • HY-12533A
    Disopyramide phosphate
    2 Publications Verification

    Dicorantil phosphate; SC-7031 phosphate

    Potassium Channel Sodium Channel Cardiovascular Disease
    Disopyramide phosphate is a class IA antiarrhythmic agent with efficacy in ventricular and atrial arrhythmias. Disopyramide phosphate blocks the fast inward sodium current of cardiac muscle and prolongs the duration of cardiac action potentials. Disopyramide phosphate inhibits HERG encoded potassium channels. Disopyramide phosphate also exhibits complex protein binding, and has a potent negative inotropic action .
    Disopyramide phosphate
  • HY-A0236

    Sodium Channel Potassium Channel Calcium Channel Calmodulin Cardiovascular Disease
    Aprindine is an Ib-class anti-arrhythmic agent. Aprindine mainly exerts its effect by blocking sodium channels (INa), thereby reducing the excitability and conduction velocity of cardiac muscle cells. Aprindine significantly inhibits delayed potassium currents, which helps to prolong the atrial effective refractory period (AERP) and inhibit the occurrence of atrial fibrillation. Aprindine can also regulate intracellular calcium ion concentration by inhibiting Na +/Ca 2+ exchange current (INCX), thereby further stabilizing cardiac electrical activity. Aprindine can be used for the study of atrial fibrillation (AF) and ventricular arrhythmias .
    Aprindine
  • HY-A0236A

    Sodium Channel Potassium Channel Calcium Channel Calmodulin Cardiovascular Disease
    Aprindine hydrochloride is an Ib-class anti-arrhythmic agent. Aprindine hydrochloride mainly exerts its effect by blocking sodium channels (INa), thereby reducing the excitability and conduction velocity of cardiac muscle cells. Aprindine hydrochloride significantly inhibits delayed potassium currents, which helps to prolong the atrial effective refractory period (AERP) and inhibit the occurrence of atrial fibrillation. Aprindine hydrochloride can also regulate intracellular calcium ion concentration by inhibiting Na +/Ca 2+ exchange current (INCX), thereby further stabilizing cardiac electrical activity. Aprindine hydrochloride can be used for the study of atrial fibrillation (AF) and ventricular arrhythmias .
    Aprindine hydrochloride
  • HY-N3931

    Others Cardiovascular Disease
    Gardneramine is an orally active alkaloid that acts like papaverine. Gardneramine has peripheral vascular diastolic effect, direct inhibition on myocardium and central inhibition. Gardneramine showed antihypertensive, vasodilatation and atrial inhibition effects in rabbit, dog and guinea pig models, respectively. Gardneramine also inhibits the movement of smooth muscle organs such as the stomach and intestines .
    Gardneramine
  • HY-106718

    Sodium Channel Cardiovascular Disease
    Barucainide is an Ib-class anti-arrhythmic agent (moderately blocking sodium channel). Barucainide exhibits concentration-dependent inhibitory effects on the maximum upstroke velocity (Vmax) of Purkinje fibers and ventricular muscle in dogs. Barucainide significantly shortens the action potential duration (APD). Barucainide significantly inhibits the pacemaker activity frequency of atrial tissue in rabbits and the enhanced automaticity of Purkinje fibers under normal resting potential in response to isoproterenol. Barucainide cannot inhibit the abnormal automaticity emission frequency of canine Purkinje fibers induced by barium. Barucainide can be used for research on arrhythmias .
    Barucainide
  • HY-105454

    Wy-42362

    Sodium Channel Cardiovascular Disease
    Recainam (Wy-42362) is a potent orally active antiarrhythmic agent and a sodium channel inhibitor. Recainam elevates ventricular fibrillation threshold, suppresses induced cardiac dysrhythmias, and may accentuate cardiac tissue refractoriness heterogeneity. Recainam can be used for the research of arrhythmias .
    Recainam
  • HY-P3774

    Natriuretic Peptide Receptor (NPR) Cardiovascular Disease Endocrinology
    [Tyr8]-Atrial Natriuretic Peptide (5-27), rat is an atrial natriuretic peptide (ANP) analog that relaxes smooth muscle without affecting cGMP levels .
    [Tyr8]-Atrial Natriuretic Peptide (5-27), rat
  • HY-12533B

    Dicorantil hydrochloride; SC-7031 hydrochloride

    Sodium Channel Potassium Channel Cardiovascular Disease
    Disopyramide hydrochloride is a class IA antiarrhythmic agent with efficacy in ventricular and atrial arrhythmias. Disopyramide hydrochloride blocks the fast inward sodium current of cardiac muscle and prolongs the duration of cardiac action potentials. Disopyramide hydrochloride inhibits HERG encoded potassium channels. Disopyramide hydrochloride also exhibits complex protein binding, and has a potent negative inotropic action .
    Disopyramide hydrochloride
  • HY-W705705

    Calcium Channel Potassium Channel Sodium Channel Cardiovascular Disease
    NIP-142 is a benzopyran derivative with multiple ion channel-blocking effects. NIP-142 selectively blocks the potassium ion channels enriched in atrial muscle, prolonging the effective refractory period (ERP) and action potential duration (APD) of the atrium, while having minimal effect on ventricular repolarization. NIP-142 also inhibits L-type/T-type calcium channels and sodium channels, further contributing to its anti-arrhythmic effect. NIP-142 shows significant efficacy in various atrial fibrillation models. NIP-142 can be used for research on arrhythmias .
    NIP 142
  • HY-12533R

    Dicorantil (Standard); SC-7031 (Standard)

    Reference Standards Sodium Channel Potassium Channel Cardiovascular Disease
    Disopyramide (Standard) is the analytical standard of Disopyramide. This product is intended for research and analytical applications. Disopyramide (Dicorantil) is a class IA antiarrhythmic agent with efficacy in ventricular and atrial arrhythmias. Disopyramide blocks the fast inward sodium current of cardiac muscle and prolongs the duration of cardiac action potentials. Disopyramide inhibits HERG encoded potassium channels. Disopyramide also exhibits complex protein binding, and has a potent negative inotropic action .
    Disopyramide (Standard)
  • HY-12533AR

    Dicorantil phosphate (Standard); SC-7031 phosphate (Standard)

    Potassium Channel Sodium Channel Reference Standards Cardiovascular Disease
    Disopyramide (phosphate) (Standard) is the analytical standard of Disopyramide (phosphate). This product is intended for research and analytical applications. Disopyramide phosphate is a class IA antiarrhythmic agent with efficacy in ventricular and atrial arrhythmias. Disopyramide phosphate blocks the fast inward sodium current of cardiac muscle and prolongs the duration of cardiac action potentials. Disopyramide phosphate inhibits HERG encoded potassium channels. Disopyramide phosphate also exhibits complex protein binding, and has a potent negative inotropic action .
    Disopyramide phosphate (Standard)
  • HY-105454A

    Wy-42362 hydrochloride

    Sodium Channel Cardiovascular Disease
    Recainam (Wy-42362) hydrochloride is a potent orally active antiarrhythmic agent and a sodium channel inhibitor. Recainam hydrochloride elevates ventricular fibrillation threshold, suppresses induced cardiac dysrhythmias, and may accentuate cardiac tissue refractoriness heterogeneity. Recainam hydrochloride can be used for the research of arrhythmias .
    Recainam hydrochloride
  • HY-A0236AR

    Reference Standards Sodium Channel Potassium Channel Calcium Channel Calmodulin Cardiovascular Disease
    Aprindine hydrochloride (Standard) is the analytical reference standard of Aprindine hydrochloride (HY-A0236A). This product is used for research and analytical applications. Aprindine hydrochloride is an Ib-class anti-arrhythmic agent. Aprindine hydrochloride mainly exerts its effect by blocking sodium channels (INa), thereby reducing the excitability and conduction velocity of cardiac muscle cells. Aprindine hydrochloride significantly inhibits delayed potassium currents, which helps to prolong the atrial effective refractory period (AERP) and inhibit the occurrence of atrial fibrillation. Aprindine hydrochloride can also regulate intracellular calcium ion concentration by inhibiting Na +/Ca 2+ exchange current (INCX), thereby further stabilizing cardiac electrical activity. Aprindine hydrochloride can be used for the study of atrial fibrillation (AF) and ventricular arrhythmias.
    Aprindine hydrochloride (Standard)
  • HY-106501A

    Goe 4704 hydrochloride

    Potassium Channel Cardiovascular Disease
    Asocainol hydrochloride (Goe 4704 hydrochloride) is an antiarrhythmic agent. Asocainol hydrochloride reduces the maximum rate of action potential rise and action potential amplitude. Asocainol hydrochloride is applicable for the research of arrhythmias .
    Asocainol hydrochloride
  • HY-105439A

    LY 150378

    Drug Derivative Cardiovascular Disease
    Clofilium phosphate (LY 150378) is an antiarrhythmic/antifibrillatory agent. Clofilium phosphate significantly prolongs the action potential duration and effective refractory period of canine cardiac Purkinje fibers, increases the ventricular fibrillation threshold, reduces the risk of reentrant arrhythmias, and enables spontaneous conversion of some ventricular fibrillation episodes to sinus rhythm. Clofilium phosphate is applicable to research related to ventricular fibrillation, arrhythmias, and ventricular tachyarrhythmias .
    Clofilium phosphate

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