首页> 外文期刊>The Journal of toxicological sciences >Mitochondrial damage mediated by ROS incurs bronchial epithelial cell apoptosis upon ambient PM2.5 exposure
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Mitochondrial damage mediated by ROS incurs bronchial epithelial cell apoptosis upon ambient PM2.5 exposure

机译:ROS介导的线粒体损伤患有支气管上皮细胞凋亡环境PM2.5暴露

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摘要

Mitochondria can be used as important biomarkers of pollutants on human health, and fine particulate matter (PM2.5) has been documented to cause respiratory damage. However, current studies about the relationship between PM2.5 and mitochondria in respiratory tract are limited and warrant further detailed investigations. Hence, the study was aimed to evaluate effects of PM2.5 on mitochondrial structure, investigate the link between PM2.5-induced mitochondrial disorder and respiratory damage, and delineate the possible mechanisms using both in vitro and in vivo models. PM2.5 exposure resulted in damage of mitochondrial structure, including mitochondrial dynamic, DNA biogenesis and morphological alteration 16HBE cells. Furthermore, PM(2.5)elevated ROS formation. However, DPI and NAC (inhibitor of ROS) in supplement restored PM2.5-induced mitochondrial disorder. PM,,also contributed to the 16HBE cells apoptosis via mitochondrial pathway. Additionally, the results coincided with the in vivo data which were obtained from bronchial tissues of SD rats exposed to PM2.5 for 30 days. Collectively, this study uncovers that PM2.5 leads to the disorder of mitochondrial structure via ROS generation, and then results in respiratory damage. It provides further understanding about the detrimental effect of PM on respiratory damage, and reveals a mechanistic basis for preventing outcomes in polluted environments.
机译:线粒体可作为人体健康污染物的重要生物标志物,并记录了细颗粒物质(PM2.5)以引起呼吸损伤。然而,目前关于PM2.5和Mitochondria之间的关系的研究是有限的,并且需要进一步详细的调查。因此,该研究旨在评估PM2.5对线粒体结构的影响,研究PM2.5诱导的线粒体病症和呼吸损伤之间的联系,并在体外和体内模型中描绘了可能的机制。 PM2.5暴露导致线粒体结构的损伤,包括线粒体动态,DNA生物发生和形态学改变16HBE细胞。此外,PM(2.5)升高的ROS形成。然而,补充剂中的DPI和NAC(ROS抑制剂)恢复了PM2.5诱导的线粒体障碍。 PM,也有助于通过线粒体途径的16HBE细胞凋亡。另外,结果与从暴露于PM2.5暴露于PM2.5的SD大鼠的支气管组织中获得的体内数据的结果一致。集体,本研究揭示了PM2.5通过ROS产生导致线粒体结构的疾病,然后导致呼吸损伤。它还可以进一步了解PM对呼吸损伤的不利影响,并揭示了防止污染环境中的结果的机制依据。

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