作者
Mengmeng Xu, Lei Wang, Muyun Wang, Hanying Wang, Hai Zhang, Yuqing Chen, Xiaohui Wang, Jicheng Gong, Junfeng Zhang, Ian M Adcock, Kian Fan Chung, Feng Li
发表日期
2019/7/3
期刊
Free radical research
卷号
53
期号
7
页码范围
780-790
出版商
Taylor & Francis
简介
Oxidative stress is a key mechanism underlying ozone-induced lung injury. Mitochondria can release mitochondrial reactive oxidative species (mtROS), which may lead to the activation of NLRP3 inflammasome. The goal of this study was to examine the roles of mtROS and NLRP3 inflammasome in acute ozone-induced airway inflammation and bronchial hyperresponsiveness (BHR). C57/BL6 mice (n = 8/group) were intraperitoneally treated with vehicle (phosphate buffered saline, PBS) or mitoTEMPO (mtROS inhibitor, 20 mg/kg), or orally treated with VX-765 (caspse-1 inhibitor, 100 mg/kg) 1 h before the ozone exposure (2.5 ppm, 3 h). Compared to the PBS-treated ozone-exposed mice, mitoTEMPO reduced the level of total malondialdehyde in bronchoalveolar lavage (BAL) fluid and increased the expression of mitochondrial complexes II and IV in the lung 24 h after single ozone exposure. VX-765 …
引用总数
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