4.2 Article

Salvianolic Acid A Protects H9c2 Cells from Arsenic Trioxide-Induced Injury via Inhibition of the MAPK Signaling Pathway

期刊

CELLULAR PHYSIOLOGY AND BIOCHEMISTRY
卷 41, 期 5, 页码 1957-1969

出版社

KARGER
DOI: 10.1159/000472409

关键词

Arsenic trioxide; Salvianolic acid A; Cardiotoxicity; Oxidative stress; Apoptosis; MAPK

资金

  1. Major Scientific and Technological Special Project for 'Significant New Drugs Formulation' [2012ZX09501001-004]
  2. Special Project for National Traditional Chinese Medicine Industry of China [201507004]

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Background/Aims: This study aimed to investigate whether Salvianolic acid A (Sal A) conferred cardiac protection against Arsenic trioxide (ATO)-induced cardiotoxicity in H9c2 cells by inhibiting MAPK pathways activation. Methods: H9c2 cardiac cells were exposed to 10 mu M ATO for 24 h to induce cytotoxicity. The cells were pretreated with Sal A for 4 h before exposure to ATO. Cell viability was determined utilizing the MTT assay. The percentage of apoptosis was measured by a FITC-Annexin V/PI apoptosis kit for flow cytometry. Mitochondrial membrane potential (Delta Psi m) was detected by JC-1. The intracellular ROS levels were measured using an Image-iT (TM) LIVE Green Reactive Oxygen Species Detection Kit. The apoptosis-related proteins and the MAPK signaling pathways proteins expression were quantified by Western blotting. Results:Sal A pretreatment increased cell viability, suppressed ATO-induced mitochondrial membrane depolarization, and significantly altered the apoptotic rate by enhancing endogenous antioxidative enzyme activity and ROS generation. Signal transduction studies indicated that Sal A suppressed the ATO-induced activation of the MAPK pathway. More importantly, JNK, ERK, and p38 inhibitors mimicked the cytoprotective activity of Sal A against ATO-induced injury in H9c2 cells by increasing cell viability, up-regulating Bc1-2 protein expression, and down-regulating both Bax and caspase-3 protein expression. Conclusion: Sal A decreases the ATO-induced apoptosis and necrosis of H9c2 cells, and the underlying mechanisms of this protective effect of Sal A may be connected with the MAPK pathways. (C) 2017 The Author(s) Published by S. Karger AG, Basel

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