4.4 Article

Hydrogen sulfide protects against apoptosis under oxidative stress through SIRT1 pathway in H9c2 cardiomyocytes

期刊

NITRIC OXIDE-BIOLOGY AND CHEMISTRY
卷 46, 期 -, 页码 204-212

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.niox.2014.11.006

关键词

Hydrogen sulfide; Oxidative stress; Sirtuin-1; Mitochondrial function

资金

  1. National Basic Research Program of China (973 Program) [2010CB912603]
  2. key laboratory program of the Education Commission of Shanghai Municipality [ZDSYS14005]
  3. Key Program of Shanghai Committee of Science and Technology in China [10431900100]
  4. National Science and Technology Major Project [2012Z X 09501001-001-003]

向作者/读者索取更多资源

Oxidative stress plays a great role in the pathogenesis of heart failure (HF). Oxidative stress results in apoptosis, which can cause the damage of cardiomyocytes. Hydrogen sulfide (H2S), the third gasotransmitter, is a good reactive oxygen species (ROS) scavenger, which has protective effect against HF. Sirtuin-1 (SIRT1) is a highly conserved nicotinamide adenine dinucleotide (NAD)-dependent histone deacetylase that plays a critical role in promoting cell survival under oxidative stress. The purpose of this article is to investigate the interaction between H2S and SIRT1 under oxidative stress in H9c2 cardiomyocytes. Oxidative stress was induced by hydrogen peroxide (H2O2). Treatment with NaSH (25-100 mu mol/L) dose-dependently increased the cell viability and improved the cell apoptosis induced by H2O2 in H9c2 cardiomyocytes. The protective effect of NaSH against the apoptosis could be attenuated by SIRT1 inhibitor Ex 527 (10 mu mol/L). Treatment with NaSH (100 mu mol/L) could increase the expression of SIRT1 in time dependent manner, which decreased by different concentration of H2O2. NaSH (100 mu mol/L) increased the cellular ATP level and the expression of ATPase. These effects were attenuated by Ex 527 (10 mu mol/L). After NaSH (100 mu mol/L) treatment, the decrease in ROS production and the enhancement in SOD, GPx and GST expression were observed. Ex 527 (10 mu mol/L) reversed these effects. In conclusion, for the first time, this article can identify antioxidative effects of H2S under oxidative stress through SIRT1 pathway in H9c2 cardiomyocytes. (C) 2014 Elsevier Inc. All rights reserved.

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