多囊卵巢
氧化应激
内分泌学
不育
内科学
胰岛素抵抗
内分泌系统
生物
医学
生物信息学
糖尿病
激素
怀孕
遗传学
作者
Heqiu Yan,Li Wang,Guohui Zhang,Ningjing Li,Yuhong Zhao,Jun Liu,Min Jiang,Xingrong Du,Qin Zeng,Dongsheng Xiong,Libing He,Zhuo-Ting Zhou,Mengjun Luo,Weixin Liu
标识
DOI:10.1186/s12958-024-01337-0
摘要
Polycystic ovary syndrome (PCOS), as a common endocrine and metabolic disorder, is often regarded as a primary cause of anovulatory infertility in women. The pathogenesis of PCOS is complex and influenced by multiple factors. Emerging evidence highlights that energy metabolism dysfunction and oxidative stress in granulosa cells (GCs) are pivotal contributors to aberrant follicular development and impaired fertility in PCOS patients. Mitochondrial dysfunction, increased oxidative stress, and disrupted glucose metabolism are frequently observed in individuals with PCOS, collectively leading to compromised oocyte quality. This review delves into the mechanisms linking oxidative stress and energy metabolism abnormalities in PCOS, analyzing their adverse effects on reproductive function. Furthermore, potential therapeutic strategies to mitigate oxidative stress and metabolic disturbances are proposed, providing a theoretical basis for advancing clinical management of PCOS.
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