Department of Geriatrics, Respiratory Medicine, Xiangya Hospital, Central South University, Changsha, Hunan 410078, China; Department of Physiology, School of Basic Medicine Science, Central South University, Changsha, Hunan 410078, China.
Department of Physiology, School of Basic Medicine Science, Central South University, Changsha, Hunan 410078, China.
Biomed Pharmacother. 2023 Dec 31;169:115937. doi: 10.1016/j.biopha.2023.115937. Epub 2023 Nov 25.
Alveolar epithelial cell (AEC) senescence is considered to be a universal pathological feature of many chronic pulmonary diseases. Our previous study found that epoxyeicosatrienoic acids (EETs), produced from arachidonic acid (ARA) through the cytochrome P450 cyclooxygenase (CYP) pathway, have significant negative regulatory effects on cellular senescence in AECs. However, the exact mechanisms by which EETs alleviate the senescence of AECs still need to be further explored. In the present study, we observed that bleomycin (BLM) induced enhanced mitophagy accompanied by increased mitochondrial ROS (mito-ROS) content in the murine alveolar epithelial cell line MLE12. While EETs reduced BLM-induced mitophagy and mito-ROS content in MLE12 cells, and the mechanism was related to the regulation of NOX4/Nrf2-mediated redox imbalance. Furthermore, we found that inhibition of EETs degradation could significantly inhibit mitophagy and regulate NOX4/Nrf2 balance to exert anti-oxidant effects in D-galactose-induced premature aging mice. Collectively, these findings may provide new ideas for treating age-related pulmonary diseases by targeting EETs to improve mitochondrial dysfunction and reduce oxidative stress.
肺泡上皮细胞 (AEC) 衰老被认为是许多慢性肺部疾病的普遍病理特征。我们之前的研究发现,环氧二十碳三烯酸 (EETs) 可通过细胞色素 P450 环氧化物酶 (CYP) 途径从花生四烯酸 (ARA) 中产生,对 AEC 中的细胞衰老具有显著的负调控作用。然而,EETs 减轻 AEC 衰老的确切机制仍需要进一步探索。在本研究中,我们观察到博来霉素 (BLM) 诱导增强的线粒体自噬伴随着鼠肺泡上皮细胞系 MLE12 中线粒体 ROS (mito-ROS) 含量的增加。EETs 降低了 BLM 诱导的 MLE12 细胞中的线粒体自噬和 mito-ROS 含量,其机制与调节 NOX4/Nrf2 介导的氧化还原失衡有关。此外,我们发现抑制 EETs 的降解可以显著抑制线粒体自噬,并调节 NOX4/Nrf2 平衡,从而在 D-半乳糖诱导的衰老小鼠中发挥抗氧化作用。总之,这些发现可能为通过靶向 EETs 改善线粒体功能障碍和减少氧化应激来治疗与年龄相关的肺部疾病提供新的思路。