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Targeting the Wnt signaling network in endometriosis: mechanistic insights and translational opportunities.

Endometriosis is a chronic gynecological disorder defined by the growth of endometrial-like tissue outside the uterus, driven by estrogen-dependent inflammation and progressive fibrosis. According to available data, remodeling and persistent …

Published: May 8, 2026, midnight
A novel mouse model of endometriosis: Simulating the recurrent hemorrhagic microenvironment of clinical lesions.

Current models of endometriosis (EMs) still have limitations in replicating the key pathological features of human EMs, particularly the cyclic bleeding associated with ectopic lesions. To address this gap, this …

Published: May 6, 2026, midnight
Metabolic reprogramming in endometriosis: mechanisms and therapeutic prospects.

Endometriosis (EMS) is an estrogen-dependent chronic inflammatory disorder for which metabolic reprogramming has emerged as a central pathological feature. Driven by genetic, epigenetic, and microenvironmental stressors, ectopic endometrial cells undergo …

Published: May 3, 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
Microbiota-metabolite axis in endometriosis: Pathogenic mechanisms and clinical implications.

Growing evidence highlights the role of microbiota, including those of the gut, reproductive tract, and endometrial tissue, as critical functional drivers in the pathogenesis of endometriosis (EM). Studies have revealed …

Published: April 25, 2026, midnight
Single-Cell Transcriptomic Profiling and Machine Learning Integration Unveil Stromal Cell Heterogeneity in Endometriosis.

Endometriosis (EMs) affects approximately 10% of reproductive-age women worldwide, yet its pathogenesis remains incompletely understood. Abnormal cell differentiation and somatic mutations in the ectopic endometrial microenvironment play critical roles in …

Published: April 23, 2026, midnight
The impact of endocrine-disrupting chemicals on uterine diseases.

Endocrine-disrupting chemicals (EDCs) are a global concern for human health and the environment. EDCs include plasticizers, pharmaceutical agents, industrial chemicals, fungicides, and pesticides. Thus, EDC exposure is a manmade consequence …

Published: April 17, 2026, midnight
Curcumin modulates the function of SPP1+ macrophages via NF-κB signaling to alleviate endometriosis.

Endometriosis is a complex gynecological disorder with prominent cellular heterogeneity, and its key pathogenic cell subsets and core molecular mechanisms remain elusive, which restricts the development of effective therapeutic strategies. …

Published: April 17, 2026, midnight
Inflammasomes meet organoids and artificial intelligence: unraveling the complexity of gynecological inflammation.

Gynecological diseases represent a persistent global health burden. According to a WHO report, the global incidence of gynecological diseases exceeds 65%. Furthermore, over 90% of women suffer from gynecological issues …

Published: April 17, 2026, midnight
From Endometriosis to Endometriosis-Associated Ovarian Cancer: Molecular Mechanisms, Risk Stratification and Clinical Implications.

Endometriosis is a chronic estrogen-dependent disorder affecting approximately 10% of women of reproductive age. Increasing epidemiological and molecular evidence indicates that it may represent a precursor condition for a subset …

Published: April 14, 2026, midnight
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