Vaginal Escherichia coli infection impairs ovarian homeostasis: Phenotypic characterization and mechanistic insights

生物 卵巢储备 生育率 卵泡期 卵泡 生理学 窦卵泡 阴道 卵巢 发情周期 内分泌系统 后代 毛囊 不育 排卵 免疫学 卵巢早衰 低雌激素 内分泌学 卵泡发生 表型 繁殖 抗苗勒氏激素 女性不育 激素 内科学 生殖医学 男科 风险因素
作者
Pingping Lin,Qianqian Lu,Xiaojing Hou,Jie Chen,Chen Yan,Aiwen Wu,Huimin Fan,X Wang,Zhen Zeng
出处
期刊:Molecular human reproduction [Oxford University Press]
标识
DOI:10.1093/molehr/gaag029
摘要

Premature ovarian insufficiency (POI), a condition characterized by the loss of ovarian function before age 40, has emerged as a critical contributor to declining global fertility rates and the increasing prevalence of female infertility. Growing epidemiological evidence suggests that reproductive tract infections may represent a previously underappreciated risk factor for POI development, although the underlying mechanisms remain unclear. This study established a mouse model of chronic vaginal Escherichia coli (E. coli) infection to systematically investigate the potential impacts and underlying mechanisms of long-term vaginal E. coli infections on ovarian function, with particular focus on vaginal microbiota homeostasis and female reproductive health. Our study observed that long-term vaginal E. coli infection significantly impairs reproductive function of mice, manifesting as reduced fertility with diminished offspring production, concurrent with disrupted estrous cycle and impaired ovarian endocrine function. The infection caused significant ovarian reserve depletion, characterized by reduced primordial follicle counts accompanied by increased numbers of atretic follicles, as well as diminished follicular quality. Mechanistically, over-activation of the PI3K-mTORC signaling pathway was identified as a key driver of primordial follicle pool exhaustion, thereby accelerating ovarian reserve decline. These findings establish chronic reproductive tract infections as a modifiable risk factor for ovarian dysfunction, highlighting the importance of infection screening in fertility preservation strategies and paving the way for future research into microbiota-based interventions for maintaining ovarian health.
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