多囊卵巢
医学
下调和上调
植入失败
基因敲除
内分泌学
子宫内膜
卵巢
内科学
怀孕
子宫
车站3
癌症研究
不育
细胞因子
激素
信号转导
卵巢早衰
男科
生物
转化生长因子β
生理学
作者
Baoying Liao,Chuyu Yun,Hongying Shan,Y. Wang,X H Chen,Weisi Lian,Tianliu Peng,Min Zhao,Xunsi Qin,Kun Hu,Ping Zhou,Yue Wang,Y J Pang,Rong Li
标识
DOI:10.1002/advs.202520455
摘要
Polycystic ovary syndrome (PCOS) is a metabolic disorder and a major cause of infertility, affecting approximately 5-18% of women of reproductive age worldwide. Emerging evidence suggests that intrinsic endometrial defects play a critical role in PCOS-associated infertility; however, the underlying molecular mechanisms remain poorly understood. In this study, we demonstrated that interleukin 22 (IL-22) signaling directly modulated endometrial function and that downregulation of the IL-22-STAT3 pathway contributed to impaired endometrial receptivity in PCOS. Consistently, exogenous IL-22 administration in a PCOS-like mouse model restored STAT3 phosphorylation and effectively alleviated implantation failure by enhancing endometrial receptivity. Mechanistically, we identified insulin-like growth factor-binding protein 5 (IGFBP5) as a direct downstream target of STAT3 in endometrial organoids derived from patients with PCOS. Knockdown of IGFBP5 in the uteri of PCOS-like mice abolished the beneficial effects of IL-22, whereas IGFBP5 supplementation restored endometrial receptivity and rescued implantation. Collectively, we showed that the suppression of the IL-22-STAT3-IGFBP5 axis is a key contributor to impaired endometrial receptivity in PCOS, providing a potential therapeutic target for improving pregnancy outcomes via IGFBP5 supplementation.
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