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线粒体动力学:分子机制及其在子宫内膜异位症中的意义

Mitochondrial dynamics: Molecular mechanism and implications in endometriosis.

作者信息

Marino Ylenia, Inferrera Francesca, Genovese Tiziana, Cuzzocrea Salvatore, Fusco Roberta, Di Paola Rosanna

机构信息

Department of Chemical, Biological, Pharmaceutical and Environmental Sciences, University of Messina, 98166, Messina, Italy.

Department of Chemical, Biological, Pharmaceutical and Environmental Sciences, University of Messina, 98166, Messina, Italy; Link Campus University, Via del Casale di San Pio V, 44, Italy.

出版信息

Biochimie. 2025 Apr;231:163-175. doi: 10.1016/j.biochi.2025.01.012. Epub 2025 Jan 28.

Abstract

Endometriosis affects about 10 % of women of reproductive age, leading to a disabling gynecologic condition. Chronic pain, inflammation, and oxidative stress have been identified as the molecular pathways involved in the progression of this disease, although its precise etiology remains uncertain. Although mitochondria are considered crucial organelles for cellular activity, their dysfunction has been linked to the development of this disease. The purpose of this review is to examine the functioning of the mitochondrion in endometriosis: in particular, we focused on the mitochondrial dynamics of biogenesis, fusion, and fission. Since excessive mitochondrial activity is reported to affect cell proliferation, we also considered mitophagy as a mechanism involved in limiting disease development. To better understand mitochondrial activity, we also considered alterations in circadian rhythms, the gut microbiome, and estrogen receptors: indeed, these mechanisms are also involved in the development of endometriosis. In addition, we focused on recent research about the impact of numerous substances on mitochondrial activity; some of them may offer a future breakthrough in endometriosis treatment by acting on mitochondria and inhibiting cell proliferation.

摘要

子宫内膜异位症影响约10%的育龄妇女,导致一种致残性的妇科疾病。慢性疼痛、炎症和氧化应激已被确定为参与该疾病进展的分子途径,尽管其确切病因仍不确定。虽然线粒体被认为是细胞活动的关键细胞器,但其功能障碍与该疾病的发展有关。本综述的目的是研究线粒体在子宫内膜异位症中的功能:特别是,我们关注线粒体生物发生、融合和裂变的动态变化。由于据报道线粒体过度活动会影响细胞增殖,我们还将线粒体自噬视为一种参与限制疾病发展的机制。为了更好地理解线粒体活动,我们还考虑了昼夜节律、肠道微生物群和雌激素受体的改变:事实上,这些机制也参与了子宫内膜异位症的发展。此外,我们关注了近期关于多种物质对线粒体活动影响的研究;其中一些物质可能通过作用于线粒体并抑制细胞增殖,为子宫内膜异位症的治疗带来未来的突破。

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