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Immune regulatory networks and gut microbiota-associated targets in endometriosis: an integrative multi-omics and network analysis.

Endometriosis is an estrogen-dependent disorder characterized by chronic inflammation, immune dysregulation, and altered hormone metabolism. Although gut microbiota-derived metabolites have been implicated in shaping immune microenvironments and lesion development, the …

Published: Sept. 8, 2026, midnight
The Effects and Mechanisms Underlying Red Meat Diet on Endometriosis Through Modulating Gut Microbiota.

Red meat consumption is widespread globally and has been associated with endometriosis (EMS) progression, although the precise underlying mechanisms remain unclear. In the present study, we aimed to explore the …

Published: Aug. 24, 2026, midnight
Exploring the Possible Role of Endometriosis-Associated Dysbiosis in Endometrial Carcinogenesis.

Background and Objectives: Endometriosis is associated with chronic inflammation, immune dysregulation, oestrogen-dependent growth, oxidative stress, altered steroid hormone metabolism, compromised epithelial barrier integrity, and the production of bioactive microbial metabolites. …

Published: Aug. 17, 2026, midnight
IBS Days 2026: from pathophysiology to microbiome modulation - Gut Microbiota for Health

IBS Days 2026: from pathophysiology to microbiome modulation Gut Microbiota for Health

Published: Aug. 10, 2026, 7:13 a.m.
Gut commensal Olsenella profusa promotes endometriosis via lysophosphatidylcholine metabolite.

Endometriosis (EM) is an intractable gynecological condition with uncertain etiology. Gut microbiota have been increasingly implicated in EM, yet the underlying mechanisms remain unclear. Here, we identify a gut microbe-metabolite-uterus …

Published: Aug. 5, 2026, midnight
Recent insights in pathogenesis of endometriosis with focus on gut microbiota.

EMs is a chronic, estrogen-dependent systemic inflammatory disorder defined by the ectopic implantation of endometrial glands and stroma and is frequently associated with dysmenorrhea, chronic pelvic pain, infertility, and substantial …

Published: Aug. 4, 2026, midnight
The Microbiome-Gut-Gonad Axis: How Microbial Metabolites Orchestrate Reproductive Physiology, Pathology, and Therapy.

The human microbiome, a dynamic endocrine organ, exerts profound systemic influence through the production of bioactive metabolites. While the microbiome-gut-brain axis is well-established, the direct conduit between the gut microbiota …

Published: July 4, 2026, midnight
Suggestive associations between genetically predicted gut microbiota and endometriosis: a two-sample Mendelian randomization study.

Introduction. Endometriosis affects 10-20% of reproductive-age women. Emerging evidence links the gut microbiota to endometriosis pathogenesis, but observational studies are limited by confounding, reverse causation and uncertainty about whether reported …

Published: July 2, 2026, midnight
Orchestrating the gut microbiota-mitochondrial-immune axis in gynecological diseases: mechanisms and dual-targeting therapeutic strategies.

The "gut microbiota-mitochondria axis" has become the core hub connecting the metabolism, immunity, and endocrine regulation of gynecological diseases. In this review, the hierarchical regulation mechanism of this axis is …

Published: July 1, 2026, midnight
Hormonal Imbalance and Gut Dysbiosis: Emerging Perspectives in Women's Health.

The gut microbiota plays a crucial function in reproductive well-being and is vital for maintaining fundamental physiological balance. This article surveys the mutual relationships between the gut flora and the …

Published: June 20, 2026, midnight
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