牛磺酸
未折叠蛋白反应
顺铂
氧化应激
细胞凋亡
炎症
化学
心脏毒性
药理学
内质网
内分泌学
内科学
医学
生物化学
毒性
化疗
氨基酸
作者
Sayantani Chowdhury,Krishnendu Sinha,Sharmistha Banerjee,Parames C. Sil
出处
期刊:Biofactors
[Wiley]
日期:2016-06-14
卷期号:42 (6): 647-664
被引量:87
摘要
Abstract Oxidative stress, ER stress, inflammation, and apoptosis results in the pathogenesis of cisplatin‐induced cardiotoxicity. The present study was designed to investigate the signaling mechanisms involved in the ameliorating effect of taurine, a conditionally essential amino acid, against cisplatin‐mediated cardiac ER stress dependent apoptotic death and inflammation. Mice were simultaneously treated with taurine (150 mg kg −1 body wt, i.p.) and cisplatin (10 mg kg −1 body wt, i.p.) for a week. Cisplatin exposure significantly altered serum creatine kinase and troponin T levels. In addition, histological studies revealed disintegration in the normal radiation pattern of cardiac muscle fibers. However, taurine administration could abate such adverse effects of cisplatin. Taurine administration significantly mitigated the reactive oxygen species production, alleviated the overexpression of nuclear factor‐κB (NF‐κB), and inhibited the elevation of proinflammatoy cytokines, adhesion molecules, and chemokines. Cisplatin exposure resulted in the unfolded protein response (UPR)‐regulated CCAAT/enhancer binding protein (CHOP) up‐regulation, induction of GRP78: a marker of ER stress and eIF2α signaling. Increase in calpain‐1 expression level, activation of caspase‐12 and caspase‐3, cleavage of the PARP protein as well as the inhibition of antiapoptotic protein Bcl‐2 were reflected on cisplatin‐triggered apoptosis. Taurine could, however, combat against such cisplatin induced cardiac‐abnormalities. The above mentioned findings suggest that taurine plays a beneficial role in providing protection against cisplatin‐induced cardiac damage by modulating inflammatory responses and ER stress. © 2016 BioFactors, 42(6):647–664, 2016
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