Entresto protected the cardiomyocytes and preserved heart function in cardiorenal syndrome rat fed with high-protein diet through regulating the oxidative stress and Mfn2-mediated mitochondrial functional integrity

التفاصيل البيبلوغرافية
العنوان: Entresto protected the cardiomyocytes and preserved heart function in cardiorenal syndrome rat fed with high-protein diet through regulating the oxidative stress and Mfn2-mediated mitochondrial functional integrity
المؤلفون: Hon-Kan Yip, Ya Yue, Yi-Ching Chu, John Y. Chiang, Chih-Chao Yang, Chi-Ruei Huang, Jui-Ning Yeh, Jun Guo
المصدر: Biomedicine & Pharmacotherapy, Vol 144, Iss, Pp 112244-(2021)
سنة النشر: 2021
مصطلحات موضوعية: MFN2, Left ventricular ejection fraction (LVEF), Apoptosis, Mitochondrion, medicine.disease_cause, Kidney, Antioxidants, Mitochondria, Heart, Ventricular Function, Left, GTP Phosphohydrolases, Mitofusin 2, Myocytes, Cardiac, Phosphorylation, biology, Ventricular Remodeling, Chemistry, Aminobutyrates, General Medicine, Drug Combinations, mitochondrial fusion, Diet, High-Protein, Valsartan, Mitochondrial fission, Signal Transduction, Cardiomyopathy, Dilated, Dynamins, medicine.medical_specialty, Cardiorenal syndrome, RM1-950, Entresto, Cell Line, Mitochondrial Proteins, Mitofusin-2, Internal medicine, medicine, Animals, Renal Insufficiency, Chronic, Cell Proliferation, Pharmacology, Mitochondrial damage, Cardio-Renal Syndrome, Biphenyl Compounds, Fibrosis, Rats, Disease Models, Animal, Oxidative Stress, Endocrinology, biology.protein, Therapeutics. Pharmacology, P22phox, Apoptosis Regulatory Proteins, Oxidative stress
الوصف: This study tested the hypothesis that Entresto (En) therapy protected the cardiomyocytes and heart function in cardiorenal syndrome (CRS) rats fed with high-protein diet (HPD) through regulating the oxidative-stress and Mfn2-mediated mitochondrial functional integrity. En (12.5 μM for the in-vitro study) protected the H9C2-cells against H2O2-induced cell apoptosis, whereas stepwise-increased H2O2 concentrations induced a significant increase in protein expressions of Mfn2/phosphorylated (p)-DRP1/mitochondrial-Bax in H9C2-cells. En downregulated H2O2-induced mitochondrial fission/upregulated mitochondrial fusion and deletion of Mfn2 gene (i.e., shMfn2) to significantly reduce H2O2-induced ROS production. En significantly suppressed and shMfn2 further significantly suppressed both H2O2-reduced mitochondrial-membrane potential and H2O2-induced ROS production/cell apoptosis/mitochondrial damage/mitochondrial-Bax released from mitochondria in H9C2 cells. En significantly reduced protein expressions of Mfn2 and p-DRP1. Additionally, En significantly suppressed and shMfn2 further significantly suppressed the protein expressions of mitochondrial-damaged (DRP1)/oxidative-stress (NOX-1/NOX-2)/apoptosis (mitochondrial-Bax/caspase-3/PARP)/autophagic (LC3B-II/LC3B-I) biomarkers (all p
تدمد: 1950-6007
الوصول الحر: https://explore.openaire.eu/search/publication?articleId=doi_dedup___::9cd370256bcfddd766ef4c83e5891b7aTest
https://pubmed.ncbi.nlm.nih.gov/34601193Test
حقوق: OPEN
رقم الانضمام: edsair.doi.dedup.....9cd370256bcfddd766ef4c83e5891b7a
قاعدة البيانات: OpenAIRE