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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
Targeting Cathepsin Z suppresses endometriosis via the AMPK/mTOR-mediated autophagy and apoptosis axis.

The key biomarkers, therapeutic targets, and pathological mechanisms of endometriosis are urgently needed to be elucidated. The role of CTSZ in EM needs to be clarified, and the potential regulatory …

Published: Sept. 1, 2026, midnight
Research Progress of Autophagy and Ferroptosis in Endometriosis.

Endometriosis (EMs) is a common and refractory disease in clinical practice.It has the pathological characteristics of adhesion and invasion,while the pathogenesis remains unclear.In recent years,studies have found that autophagy and …

Published: Aug. 29, 2026, midnight
The Role of Macrophages in Endometrial Cyclical Changes and Female Reproductive System Diseases: A Review.

Background: This review aims to systematically summarize the lineage origins, subtype classification, and functional dynamics of endometrial macrophages, clarify their mechanisms of action in normal reproductive physiology (menstrual cycle, pregnancy) …

Published: Aug. 17, 2026, midnight
MiR-29c-3p Impairs the Adhesion of Endometrial Epithelial Cells via COL4A1/β-catenin in Endometriosis.

Defective endometrial receptivity is an indispensable cause of infertility in endometriosis, yet the post-transcriptional regulatory mechanisms underlying this impairment remain poorly understood. The goal of this research was to describe …

Published: Aug. 12, 2026, midnight
Pro-EGCG suppresses endometriosis progression via regulating monocytic myeloid-derived suppressor cells.

Pro-EGCG has shown therapeutic promise for endometriosis, yet its immunoregulatory mechanisms remain unclear. Myeloid-derived suppressor cells (MDSCs) are key drivers of disease progression. This study investigates whether Pro-EGCG alleviates endometriosis …

Published: July 1, 2026, midnight
Deciphering immune-inflammatory dysregulation in the endometriotic microenvironment: insights from single-cell omics and artificial intelligence.

Endometriosis is a prevalent chronic inflammatory gynecological disorder affecting approximately 10% of reproductive-age women worldwide, characterized by endometrial-like tissue outside the uterine cavity. Ectopic lesion growth tracks closely with immune-inflammatory …

Published: June 11, 2026, midnight
Glycolytic reprogramming in endometriosis: molecular mechanisms, immune modulation, and non-hormonal therapeutic opportunities.

Endometriosis is a chronic gynecological disorder characterized by ectopic tissue growth and significant morbidity, yet current hormonal and surgical treatments often fail to prevent recurrence or entail severe side effects. …

Published: May 25, 2026, midnight
The role of the SIRT1/FOXO1 axis in regulating autophagy and inflammation in endometriosis.

Endometriosis, a common chronic gynecological disorder, involves cellular autophagy and inflammatory processes in its pathogenesis. However, the specific regulatory mechanisms of autophagy and inflammation in endometriosis remain unknown. In this …

Published: May 13, 2026, midnight
Research progress and future directions in circadian rhythms for uterine‑related diseases (Review).

Circadian rhythms are ~24 h endogenous rhythms driven by both central and peripheral clocks, with their core mechanism being a transcription‑translation feedback loop mediated by master clock genes. The present …

Published: April 30, 2026, midnight
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