Department of Gynecology, Women's Hospital, Zhejiang University School of Medicine, Key Laboratory of Women's Reproductive Health of Zhejiang Province, Hangzhou, 310006, China.
Eur J Med Res. 2023 Jul 1;28(1):209. doi: 10.1186/s40001-023-01180-w.
Mitochondria play a pivotal role in physiological and metabolic function of the cell. Mitochondrial dynamics orchestrate mitochondrial function and morphology, involving fission and fusion as well as ultrastructural remodeling. Mounting evidence unravels the close link between mitochondria and endometriosis. However, how mitochondrial architecture changes through fission and fusion in eutopic and ectopic tissues of women with ovarian endometriosis remains unknown. We detected the expression of fission and fusion genes and the morphology of mitochondria in eutopic and ectopic endometrium in ovarian endometriosis. The results showed that the expression of DRP1 and LCLAT1 was upregulated in eutopic endometrial stromal cells (ESCs), and the expression of DRP1, OPA1, MFN1, MFN2, and LCLAT1 was significantly downregulated in ectopic ESCs, and reduced number of mitochondria, wider cristae width and narrower cristae junction width was observed, but there was no difference in cell survival rate. The altered mitochondrial dynamics and morphology might, respectively, provide an advantage for migration and adhesion in eutopic ESCs and be the adaptive response in ectopic endometrial cells to survive under hypoxic and oxidative stress environment.
线粒体在细胞的生理和代谢功能中起着关键作用。线粒体动力学协调线粒体的功能和形态,包括分裂和融合以及超微结构重塑。越来越多的证据揭示了线粒体与子宫内膜异位症之间的密切联系。然而,在卵巢子宫内膜异位症患者的在位和异位组织中,线粒体通过分裂和融合发生结构变化的机制仍不清楚。我们检测了卵巢子宫内膜异位症在位和异位子宫内膜中分裂和融合基因的表达以及线粒体的形态。结果表明,DRP1 和 LCLAT1 在在位子宫内膜基质细胞(ESCs)中的表达上调,而 DRP1、OPA1、MFN1、MFN2 和 LCLAT1 在异位 ESC 中的表达显著下调,线粒体数量减少,嵴宽度变宽,嵴连接宽度变窄,但细胞存活率没有差异。线粒体动力学和形态的改变可能分别为在位 ESC 的迁移和黏附提供优势,而在异位子宫内膜细胞中,可能是对低氧和氧化应激环境的适应性反应。