| Literature DB >> 33107683 |
Qianqian Wu1, Lijun Fang2, Youjing Yang1, Aiqing Wang3, Xiaoyu Chen1, Jiaojiao Sun1, Jianmei Wan3, Chengjiao Hong3, Jian Tong1, Shasha Tao1,4, Hailin Tian1,4.
Abstract
Radon is one of the major pathogenic factors worldwide. Recently, epidemiological studies have suggested that radon exposure plays an important role in lung injury, which could further cause cancer. However, the toxic effects and underlying mechanism on lung injury are still not clear. Here, we identified the detailed toxic effects of long-term radon exposure. Specifically, the manifestations were inflammatory response and cell apoptosis in dose- and time-dependent manners. In detail, it caused the mitochondrial dysfunction and oxidative stress as determined by the abnormal levels of mitochondrial DNA copy number, adenosine triphosphate, mitochondrial membrane potential, superoxide dismutase, and cycloxygenase-2. Furthermore, we found that melatonin treatment ameliorated mitochondrial dysfunction and attenuated the levels of oxidative stress caused by long-term radon exposure, which could further inhibit the lung tissue apoptosis as determined by the decreased levels of cleaved caspase 3. Our study would provide potential therapeutic application of melatonin on lung tissue injury caused by long-term radon exposure.Entities:
Keywords: autophagy; melatonin; mitochondrial dysfunction; oxidative stress; radon
Year: 2020 PMID: 33107683 DOI: 10.1002/tox.23052
Source DB: PubMed Journal: Environ Toxicol ISSN: 1520-4081 Impact factor: 4.119