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砷通过氧化应激调控的线粒体依赖性和内质网应激触发的信号通路诱导胰腺β细胞凋亡。

Arsenic induces pancreatic β-cell apoptosis via the oxidative stress-regulated mitochondria-dependent and endoplasmic reticulum stress-triggered signaling pathways.

机构信息

Graduate Institute of Drug Safety, College of Pharmacy, China Medical University, Taichung 404, Taiwan.

出版信息

Toxicol Lett. 2011 Feb 25;201(1):15-26. doi: 10.1016/j.toxlet.2010.11.019. Epub 2010 Dec 8.

Abstract

Arsenic (As), a ubiquitous toxic metal, is an important environmental and industrial pollutant throughout the world. Inorganic As (iAs) is usually more harmful than organic ones and with a high risk of diabetes incidence by exposure. However, the toxicological effects of iAs on growth and function of pancreatic β-cells still remain unclear. Here, we found that iAs significantly decreased insulin secretion and cell viability, and increased ROS and MDA formation in pancreatic β-cell-derived RIN-m5F cells. iAs also induced the increases in sub-G1 hypodiploids, annexin V-Cy3 binding, and caspase-3 activity in RIN-m5F cells, indicating that iAs could induce β-cell apoptosis. Moreover, iAs induced MAPKs activation, mitochondria dysfunction, p53 up-regulation, Bcl-2 and Mdm-2 down-regulation, PARP, and caspase cascades, which displayed features of mitochondria-dependent apoptotic signals. In addition, exposure of RIN-m5F cells to iAs, could trigger ER stress as indicated by the enhancement in ER stress-related molecules induction (such as GRP78, GRP94, CHOP, and XBP1), procaspase-12 cleavage, and calpain activation. The iAs-induced apoptosis and its-related signalings could be effectively reversed by antioxidant N-acetylcysteine. We next observed that exposure of mice to iAs in drinking water for 6 consecutive weeks significantly decreased decreased the plasma insulin, elevated glucose intolerance and plasma lipid peroxidation, and induced islet cells apoptosis, which accompanied with arsenic accumulation in the whole blood and pancreas. N-acetylcysteine effectively antagonized the iAs-induced responses in mice. Taken together, these results suggest that iAs-induced oxidative stress causes pancreatic β-cells apoptosis via the mitochondria-dependent and ER stress-triggered signaling pathways.

摘要

砷(As)是一种普遍存在的有毒金属,是全世界重要的环境和工业污染物。无机砷(iAs)通常比有机砷更有害,并且暴露于 iAs 会增加患糖尿病的风险。然而,iAs 对胰腺β细胞的生长和功能的毒理学影响仍不清楚。在这里,我们发现 iAs 可显著降低胰腺β细胞衍生的 RIN-m5F 细胞中的胰岛素分泌和细胞活力,并增加 ROS 和 MDA 的形成。iAs 还诱导 RIN-m5F 细胞中亚 G1 低二倍体、膜联蛋白 V-Cy3 结合和 caspase-3 活性的增加,表明 iAs 可诱导β细胞凋亡。此外,iAs 诱导 MAPKs 激活、线粒体功能障碍、p53 上调、Bcl-2 和 Mdm-2 下调、PARP 和 caspase 级联反应,表现出线粒体依赖性凋亡信号的特征。此外,RIN-m5F 细胞暴露于 iAs 可引发内质网应激,如 ER 应激相关分子诱导(如 GRP78、GRP94、CHOP 和 XBP1)增强、前半胱氨酸酶-12 切割和钙蛋白酶激活。抗氧化剂 N-乙酰半胱氨酸可有效逆转 iAs 诱导的细胞凋亡及其相关信号通路。接下来我们观察到,连续 6 周给小鼠饮用水中添加 iAs 可显著降低血浆胰岛素水平,升高葡萄糖耐量和血浆脂质过氧化水平,并诱导胰岛细胞凋亡,同时伴随着全血和胰腺中的砷积累。N-乙酰半胱氨酸可有效拮抗 iAs 对小鼠的诱导反应。总之,这些结果表明,iAs 诱导的氧化应激通过线粒体依赖性和内质网应激触发的信号通路导致胰腺β细胞凋亡。

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