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◆ Molecular human reproduction2026-09-25

Lactobacillus johnsonii attenuates chronic stress-induced ovarian dysfunction by modulating ovarian clock-related steroidogenic signaling.

Jiarui Liang, Yuying Chen, Shanshui Zeng, Ziwei Zhou, Shulei Chen, Xuyu Li, Siqi Yan, Dongxin Zhang, Hongwei Zhou, Bingyu Li

原始摘要(英文原文)· Original abstract
Chronic psychological stress is increasingly implicated in female reproductive disorders, yet the mechanistic link between stress and ovarian dysfunction remains incompletely understood. Using a chronic restraint stress (CRS) mouse model, we demonstrated that CRS induced anxiety-like behaviors and ovarian dysfunction, evidenced by elevated serum FSH levels, reduced estradiol (E2) and anti-Müllerian hormone (AMH) levels, and impaired folliculogenesis. These phenotypes were accompanied by pronounced gut microbiota dysbiosis and disturbed metabolic profiles. Moreover, transplantation of stress-altered microbiota further exacerbated ovarian impairment in recipient mice. Stress-related gut microbiota alterations were associated with changes in ovarian clock gene expression and steroidogenic pathways. Notably, preventive oral supplementation with Lactobacillus johnsonii modulated gut microbial composition, mitigated stress-related behavioral and endocrine abnormalities, and attenuated CRS-induced alterations in ovarian clock protein expression, improved estrogen biosynthesis and follicular development. In conclusion, these findings support a proposed regulatory framework involving stress-associated gut microbiota alterations, ovarian clock gene expression, and steroidogenic dysfunction, and suggest L. johnsonii as a potential preventive microbiota-based intervention for stress-associated ovarian dysfunction.
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Lactobacillus johnsonii attenuates chronic stress-induced ovarian dysfunction by modulating ovarian clock-related steroidogenic signaling. — 科研速览 Science Skim