下调和上调
热休克蛋白
热休克蛋白90
癌症研究
医学
子宫内膜异位症
生物信息学
生物
蛋白质组学
治疗方法
间质细胞
热冲击
细胞生物学
雌激素
炎症
治疗效果
活力测定
生物信息学
微阵列
作者
Jiayu Lin,Weie Zhao,Manchao Li,Liu Mingxin,Qi Guo,Taibao Wu,Yuting Xiang,Jiawen Liu,Yanyan Zeng,Qiqi Liang,Xiaoyan Liang,Chuanchuan Zhou,Jingjie Li
出处
期刊:Reproduction
[Bioscientifica]
日期:2026-01-15
卷期号:171 (2)
标识
DOI:10.1093/reprod/xaaf002
摘要
Endometriosis, a chronic inflammatory condition characterized by pain and infertility, remains a clinical challenge. Current hormonal and surgical treatments are often limited by side effects and high recurrence rates. In search of more effective and less invasive alternatives, we analyzed a single-cell RNA sequencing dataset of menstrual effluents from patients (GSE203191) and identified a significant upregulation of heat shock protein 90 (HSP90), suggesting its pathogenic involvement. Using primary endometrial stromal cells (ESCs) isolated from human ovarian endometrioma and a murine endometriosis model, we evaluated the therapeutic potential of HSP90 inhibition with 17-allylamino-17-demethoxygeldanamycin (17-AAG). In vitro, 17-AAG (10 nM-10 μM) reduced ESC viability and proliferation in a dose-dependent manner while increasing caspase-3 activity. In vivo, 17-AAG (30 μg/g) significantly attenuated ectopic lesion growth without impairing systemic parameters such as body weight, anti-Müllerian hormone, or estrogen levels. Proteomic profiling revealed disruption of HSP90 client networks, including downregulation of importin 4 and tubulin gamma complex protein 3, and upregulation of DnaJ heat shock protein family member B1, glutamate-ammonia ligase, and sequestosome 1. These findings highlight HSP90 as a promising non-hormonal therapeutic target in endometriosis, offering mechanistic insights and translational potential for more targeted, well-tolerated treatment strategies.
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