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Results for "

myocardium

" in MedChemExpress (MCE) Product Catalog:

22

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5

Peptides

7

Natural
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1

Oligonucleotides

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-103346

    Caspase Apoptosis Cardiovascular Disease
    MMPSI is a potent and selective small molecule caspase 3 and caspase 7 inhibitor with an IC50 of 1.7 μM for human caspase-3. MMPSI can significantly reduce ischemia-reperfusion-induced infarct size in the isolated rabbit heart, and reduce apoptosis in both the ischemic myocardium and isolated cardiomyocytes. MMPSI can be used for researching cardioprotection .
    MMPSI
  • HY-N4309A

    Others Cardiovascular Disease
    Lotusine (hydroxide) is a pure alkaloid extracted from the green seed embryo of Nelumbo nucifera Gaertn. Lotusine (hydroxide) shows effects on the action potentials in myocardium and slow inward current in cardiac Purkinje fibers .
    Lotusine hydroxide
  • HY-19463A

    Sodium Channel Cardiovascular Disease
    F 15845 is a highly effective persistent sodium current blocker. F 15845 also is a cardioprotective agent, has anti-ischemic activity and exerts short- and long-term cardioprotection after myocardial infarction. F 15845 can be used for the research of myocardium functional impairment .
    F15845
  • HY-121045

    KO 1366

    Adrenergic Receptor Cardiovascular Disease
    Bunitrolol is a beta-adrenergic antagonist. Bunitrolol has intrinsic sympathomimetic activity. Bunitrolol can be used for the research of ischemic myocardium .
    Bunitrolol
  • HY-N4309

    Others Cardiovascular Disease
    Lotusine is a pure alkaloid extracted from the green seed embryo of Nelumbo nucifera Gaertn. Lotusine shows effects on the action potentials in myocardium and slow inward current in cardiac Purkinje fibers .
    Lotusine
  • HY-W704966

    18:0 Lyso-PC; LPC(18:0); PC(0:0/18:0)

    Endogenous Metabolite Metabolic Disease
    2-Stearoyl-sn-glycero-3-PC is a lysophospholipid that contains stearic acid (HY-B2219) at the sn-2 position. It has been found in rabbit myocardium.
    2-Stearoyl-sn-glycero-3-phosphocholine
  • HY-116119

    Sodium Channel Cardiovascular Disease
    BDF 9148 is a sodium-channel activator with antiarrhythmic properties that produces a significant CAMP-independent positive inotropic effect in left ventricular myocardium from failing hearts. BDF 9148 is promising for research of myocardial failure .
    BDF 9148
  • HY-117055

    Calcium Channel Cardiovascular Disease
    Ro 18-3981 is a dihydropyridine that inhibits cardiac Ca 2+ channels. Ro 18-3981 shows higher inhibitory activity when the cell membrane is in a depolarized state (Vh=-20 mV: IC50=2.3 nM; Vh=-50 mV: IC50=100 nM) .
    Ro 18-3981
  • HY-P5792

    ANP (3-28) (human)

    Endothelin Receptor Metabolic Disease
    Atrial natriuretic peptide (3-28) (human) (ANP (3-28) (human)) is a peptide hormone that is synthesized and secreted by the atrial myocardium. Atrial natriuretic peptide (3-28) (human) is involved in the regulation of blood pressure, fluid balance, and electrolyte homeostasis .
    Atrial natriuretic peptide (3-28) (human)
  • HY-W184837

    KR-1008

    Calcium Channel Cardiovascular Disease
    m-Nisoldipine (KR-1008) is a dihydropyridine calcium antagonist that can significantly increase cardiac output and heart index, significantly reduce the negative inotropic effect on the myocardium, and has a relatively high selectivity for the thoracic aorta. m-Nisoldipine can be used in the research of cardiovascular diseases .
    m-Nisoldipine
  • HY-162733

    Others Cardiovascular Disease
    SVC-02 is a vasohibin (VASH) inhibitor with an IC50 value of 11 nM. SVC-02 reduces tubulin detyrosination. SVC-02 has the potential for the research of reduce myo-cardial stiffness and improve relaxation in Heart failure with preserved ejection fraction (HFpEF) .
    SVC-02
  • 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-125144

    Na+/H+ Exchanger (NHE) Cardiovascular Disease
    BIIB 513 is an inhibitor of NHE 1 that protects against myocardial ischemia. BIIB 513 inhibits acid load recovery with an IC50 of 27 nmol/L in cells expressing wild-type NHE 1 under acute acid load .
    BIIB 513
  • HY-117135

    Others 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-106844

    Phosphodiesterase (PDE) Cardiovascular Disease
    EMD 53998 is a cardiotonic agent that increases myocardial contractility as an inhibitor for phosphodiesterase III (PDE III) and a calcium sensitizer. EMD 53998 increases myocardial contractility, reduces energy consumption and the risk of inducing arrhythmias .
    EMD 53998
  • HY-W016409
    Ethyl 3,4-dihydroxybenzoate
    1 Publications Verification

    Protocatechuic acid ethyl ester

    HIF/HIF Prolyl-Hydroxylase Reactive Oxygen Species NO Synthase Autophagy Apoptosis Metabolic Disease Cancer
    Ethyl 3,4-dihydroxybenzoate (Ethyl protocatechuate), an antioxidant, is a prolyl-hydroxylase inhibitor found in the testa of peanut seeds. Ethyl 3,4-dihydroxybenzoate protects myocardium by activating NO synthase and generating mitochondrial ROS. Ethyl 3,4-dihydroxybenzoate induces cell autophagy and apoptosis in ESCC cells. Ethyl 3,4-dihydroxybenzoate is a collagen synthesis inhibitor and has a bone protecting-effect .
    Ethyl 3,4-dihydroxybenzoate
  • HY-103160A
    EHNA hydrochloride
    3 Publications Verification

    Adenosine Deaminase Phosphodiesterase (PDE) Influenza Virus Infection Cardiovascular Disease Neurological Disease Cancer
    EHNA hydrochloride is a potent and selective dual inhibitor of cyclic nucleotide phosphodiesterase 2 (PDE2)(IC50=4 μM) and adenosine deaminase (ADA). EHNA hydrochloride exerts a concentration inhibition of the cGMP-stimulated PDE II (cGs-PDE)(IC50:0.8 μM (human), 2 μM (porcine myocardium)), but has smaller inhibitory effect on the unstimulated PDE2 activity. EHNA hydrochloride play roles in mediating diverse pharmacological responses, including antiviral, antitumour and antiarrhythmic effects .
    EHNA hydrochloride
  • HY-N0272R

    Others Inflammation/Immunology
    Eleutheroside E (Standard) is the analytical standard of Eleutheroside E. This product is intended for research and analytical applications. Eleutheroside E is an important component of Eleutheroside and has antioxidant, anti-fatigue, anti-inflammatory, antibacterial, immunomodulatory and cardioprotective effects. Eleutheroside E may inhibit the MAPK signaling pathway, thereby inhibiting H/R-induced NF-κB activation and oxidative stress, reducing metabolic reprogramming, and protecting myocardium from ischemia-reperfusion (I/R) injury. Eleutheroside E also counteracts the effects of high altitude hypobaric hypoxia (HAHI) by inhibiting inflammation and pyroptosis .
    Eleutheroside E (Standard)
  • HY-W016409R

    HIF/HIF Prolyl-Hydroxylase Reactive Oxygen Species NO Synthase Autophagy Apoptosis Metabolic Disease Cancer
    Ethyl 3,4-dihydroxybenzoate (Standard) is the analytical standard of Ethyl 3,4-dihydroxybenzoate. This product is intended for research and analytical applications. Ethyl 3,4-dihydroxybenzoate (Ethyl protocatechuate), an antioxidant, is a prolyl-hydroxylase inhibitor found in the testa of peanut seeds. Ethyl 3,4-dihydroxybenzoate protects myocardium by activating NO synthase and generating mitochondrial ROS. Ethyl 3,4-dihydroxybenzoate induces cell autophagy and apoptosis in ESCC cells. Ethyl 3,4-dihydroxybenzoate is a collagen synthesis inhibitor and has a bone protecting-effect [4].
    Ethyl 3,4-dihydroxybenzoate (Standard)
  • HY-13948
    Angiotensin II human
    Maximum Cited Publications
    111 Publications Verification

    Angiotensin II; Ang II; DRVYIHPF

    Angiotensin Receptor Apoptosis Cardiovascular Disease Endocrinology Cancer
    Angiotensin II (Angiotensin II) is a vasoconstrictor and a major bioactive peptide of the renin/angiotensin system. Angiotensin II human plays a central role in regulating human blood pressure, which is mainly mediated by interactions between Angiotensin II and the G-protein-coupled receptors (GPCRs) Angiotensin II type 1 receptor (AT1R) and Angiotensin II type 2 receptor (AT2R). Angiotensin II human stimulates sympathetic nervous stimulation, increases aldosterone biosynthesis and renal actions. Angiotensin II human induces growth of vascular smooth muscle cells, increases collagen type I and III synthesis in fibroblasts, leading to thickening of the vascular wall and myocardium, and fibrosis. Angiotensin II human also induces apoptosis. Angiotensin II induces capillary formation from endothelial cells via the LOX-1 dependent redox-sensitive pathway .
    Angiotensin II human
  • HY-13948A
    Angiotensin II human acetate
    Maximum Cited Publications
    111 Publications Verification

    Angiotensin II acetate; Ang II acetate; DRVYIHPF acetate

    Angiotensin Receptor Apoptosis Cardiovascular Disease Endocrinology Cancer
    Angiotensin II human (Angiotensin II) acetate is a vasoconstrictor and a major bioactive peptide of the renin/angiotensin system. Angiotensin II human acetate plays a central role in regulating human blood pressure, which is mainly mediated by interactions between Angiotensin II and the G-protein-coupled receptors (GPCRs) Angiotensin II type 1 receptor (AT1R) and Angiotensin II type 2 receptor (AT2R). Angiotensin II human acetate stimulates sympathetic nervous stimulation, increases aldosterone biosynthesis and renal actions. Angiotensin II human acetate induces growth of vascular smooth muscle cells, increases collagen type I and III synthesis in fibroblasts, leading to thickening of the vascular wall and myocardium, and fibrosis. Angiotensin II human acetate also induces apoptosis. Angiotensin II human acetate induces capillary formation from endothelial cells via the LOX-1 dependent redox-sensitive pathway .
    Angiotensin II human acetate
  • HY-13948B
    Angiotensin II human TFA
    Maximum Cited Publications
    111 Publications Verification

    Angiotensin II TFA; Ang II TFA; DRVYIHPF TFA

    Angiotensin Receptor Apoptosis Cardiovascular Disease Endocrinology Cancer
    Angiotensin II human (Angiotensin II) TFA is a vasoconstrictor and a major bioactive peptide of the renin/angiotensin system. Angiotensin II human TFA plays a central role in regulating human blood pressure, which is mainly mediated by interactions between Angiotensin II and the G-protein-coupled receptors (GPCRs) Angiotensin II type 1 receptor (AT1R) and Angiotensin II type 2 receptor (AT2R). Angiotensin II human TFA stimulates sympathetic nervous stimulation, increases aldosterone biosynthesis and renal actions. Angiotensin II human TFA induces growth of vascular smooth muscle cells, increases collagen type I and III synthesis in fibroblasts, leading to thickening of the vascular wall and myocardium, and fibrosis. Angiotensin II human TFA also induces apoptosis. Angiotensin II human TFA induces capillary formation from endothelial cells via the LOX-1 dependent redox-sensitive pathway .
    Angiotensin II human TFA

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