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Results for "

hypertrophic

" in MedChemExpress (MCE) Product Catalog:

16

Inhibitors & Agonists

4

Natural
Products

3

Recombinant Proteins

2

Isotope-Labeled Compounds

2

Antibodies

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-139465

    CK-274; CK-3773274

    Myosin Cardiovascular Disease
    Aficamten (CK-274) is a potent cardiac myosin inhibitor with an IC50 of 1.4 μM. Aficamten can be used for the research of hypertrophic cardiomyopathy (HCM) .
    Aficamten
  • HY-152190

    Myosin Cardiovascular Disease
    JB002 is a myosin II inhibitor, with an IC50 of ≤10 μM. JB002 can be used for the research of muscle spasticity, chronic musculoskeletal pain, and hypertrophic cardiomyopathy .
    JB002
  • HY-106577

    Cifenline; Ro 22-7796

    Potassium Channel Cardiovascular Disease
    Cibenzoline is a potent inhibitor of KATP channel with directly affecting the pore-forming Kir6.2 subunit rather than the SUR1 subunit. Cibenzoline is a class Ia antiarrhythmic agent. Cibenzoline has little anticholinergic activity. Cibenzoline markedly attenuate LVPG which has a close relationship with myocardial contractility decreasing. Cibenzoline has the potential for the research of hypertrophic obstructive cardiomyopathy .
    Cibenzoline
  • HY-150040

    G Protein-coupled Receptor Kinase (GRK) Cardiovascular Disease Cancer
    CCG-273463 is a potent, selective and covalent GRK5 inhibitor with an IC50 value of 8.6 nM. CCG-273463 can be used in the research of heart failure, hypertrophic cardiomyopathy, and cancer .
    CCG-273463
  • HY-152206

    Myosin Neurological Disease
    JB062 is a nonmuscle myosin inhibitor with IC50 values of 1.6, 5.4, and >100 μM for Skeletal muscle myosin, Cardiac muscle myosin, and Smooth muscle myosin II, respectively. JB062 has cytotoxic to human cancer cells but not normal cells. JB062 can be used in research of muscle spasticity, chronic musculoskeletal pain, and hypertrophic cardiomyopathy .
    JB062
  • HY-N0738
    Stachydrine hydrochloride
    3 Publications Verification

    NF-κB Endogenous Metabolite Cardiovascular Disease Cancer
    Stachydrine hydrochloride is the major active constituent of Leonurus artemisia, which is a potential therapy for cardiovascular diseases . Stachydrine can inhibit the NF-κB signal pathway. Anti-hypertrophic activities .
    Stachydrine hydrochloride
  • HY-126849

    SIN-1; Linsidomine

    MDM-2/p53 Cancer
    3-Morpholinosydnonimine (SIN-1; Linsidomine) is a spontaneous ROS/RNS generator and a peroxynitrite donor. 3-Morpholinosydnonimine inhibits hypertrophic chondrocytes activity and induces necrosis. 3-Morpholinosydnonimine induces p53-dependent apoptosis, induces p53 accumulation and activates MAPK phosphorylation .
    3-Morpholinosydnonimine
  • HY-B0573A

    (S)-(-)-Propranolol hydrochloride is a β-adrenergic receptor antagonist with log Kd values of -8.16, -9.08, and -6.93 for β1, β2, and β3, respectively. (S)-(-)-Propranolol hydrochloride the active enantiomer of propranolol and can be s used for study of hypertension, pheochromocytoma, myocardial infarction, cardiac arrhythmias, angina pectoris, and hypertrophic cardiomyopathy .
    (S)-(-)-Propranolol hydrochloride
  • HY-B0573
    Propranolol hydrochloride
    Maximum Cited Publications
    19 Publications Verification

    Adrenergic Receptor Bacterial Neurological Disease Endocrinology Cancer
    Propranolol hydrochloride is a nonselective β-adrenergic receptor (βAR) antagonist, has high affinity for the β1AR and β2AR with Ki values of 1.8 nM and 0.8 nM, respectively . Propranolol hydrochloride inhibits [ 3H]-DHA binding to rat brain membrane preparation with an IC50 of 12 nM . Propranolol hydrochloride is used for study of hypertension, pheochromocytoma, myocardial infarction, cardiac arrhythmias, angina pectoris, and hypertrophic cardiomyopathy .
    Propranolol hydrochloride
  • HY-103484

    Others Cardiovascular Disease
    GATA4-NKX2-5-IN-1 (Compound 3) dose-dependently inhibits the GATA4–NKX2-5 transcriptional synergy with an IC50 of 3 μM. GATA4-NKX2-5-IN-1 exhibits no activity on the protein kinases involved in the regulation of GATA4 phosphorylation, and it modulates the hypertrophic agonist-induced cardiac gene expression .
    GATA4-NKX2-5-IN-1
  • HY-B0573B
    Propranolol
    Maximum Cited Publications
    19 Publications Verification

    Adrenergic Receptor Bacterial Cardiovascular Disease Neurological Disease Endocrinology Cancer
    Propranolol is a nonselective β-adrenergic receptor (βAR) antagonist, has high affinity for the β1AR and β2AR with Ki values of 1.8 nM and 0.8 nM, respectively . Propranolol inhibits [ 3H]-DHA binding to rat brain membrane preparation with an IC50 of 12 nM . Propranolol is used for the study of hypertension, pheochromocytoma, myocardial infarction, cardiac arrhythmias, angina pectoris, and hypertrophic cardiomyopathy .
    Propranolol
  • HY-143248

    G Protein-coupled Receptor Kinase (GRK) HDAC Cardiovascular Disease
    KR-39038 is an orally active and potent GRK5 (G protein-coupled receptor kinase 5) inhibitor, with an IC50 of 0.02 μM. KR-39038 significantly inhibits angiotensin II-induced cellular hypertrophy through suppression of HDAC5 pathway in neonatal cardiomyocytes. KR-39038 shows profound anti-hypertrophic effects and improved cardiac function. KR-39038 can be used for heart failure research .
    KR-39038
  • HY-B0573BS

    Adrenergic Receptor Cardiovascular Disease Neurological Disease Endocrinology
    Propranolol-d7 is the deuterium labeled Propranolol. Propranolol is a nonselective β-adrenergic receptor (βAR) antagonist, has high affinity for the β1AR and β2AR with Ki values of 1.8 nM and 0.8 nM, respectively[1]. Propranolol inhibits [3H]-DHA binding to rat brain membrane preparation with an IC50 of 12 nM[2]. Propranolol is used for the study of hypertension, pheochromocytoma, myocardial infarction, cardiac arrhythmias, angina pectoris, and hypertrophic cardiomyopathy[3].
    Propranolol-d7
  • HY-B0573S

    Propranolol-d7 (hydrochloride) is a deuterium labeled Propranolol hydrochloride. Propranolol hydrochloride is a nonselective β-adrenergic receptor (βAR) antagonist, has high affinity for the β1AR and β2AR with Ki values of 1.8 nM and 0.8 nM, respectively[1]. Propranolol hydrochloride inhibits [3H]-DHA binding to rat brain membrane preparation with an IC50 of 12 nM[2]. Propranolol hydrochloride is used for the study of hypertension, pheochromocytoma, myocardial infarction, cardiac arrhythmias, angina pectoris, and hypertrophic cardiomyopathy[3].
    Propranolol-d7 hydrochloride
  • HY-B1890
    (±)-Catechin
    1 Publications Verification

    rel-Cianidanol; rel-Catechuic acid

    COX Infection Cardiovascular Disease Neurological Disease Inflammation/Immunology Cancer
    (±)-Catechin (rel-Cianidanol) This is a green tea polyester. Catechin possesses anti-cancer activity, which has led to its demise. (±)-Catechin 具有两种forms (+)-Catechin and its reflection body (-)-Catechin. (+)-Catechin inhibitory environment-1 (COX-1) IC50 为 1.4 μM. (-)-Catechin has the effect of promoting hBM-MSC adipose cell differentiation, increasing adipose tissue, and PPARγ horizontal. (±)-Catechin has anti-diabetic, anti-hypertrophic, anti-diabetic, anti-cardiovascular, anti-infective, and liver-protecting effects.
    (±)-Catechin
  • HY-B0573S1

    Adrenergic Receptor Neurological Disease Endocrinology
    Propranolol-d7 (ring-d7) is the deuterium labeled Propranolol hydrochloride. Propranolol hydrochloride is a nonselective β-adrenergic receptor (βAR) antagonist, has high affinity for the β1AR and β2AR with Ki values of 1.8 nM and 0.8 nM, respectively[1]. Propranolol hydrochloride inhibits [3H]-DHA binding to rat brain membrane preparation with an IC50 of 12 nM[2]. Propranolol hydrochloride is used for study of hypertension, pheochromocytoma, myocardial infarction, cardiac arrhythmias, angina pectoris, and hypertrophic cardiomyopathy[3].
    Propranolol-d7 (ring-d7)

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