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Dose-Dependent Reprogramming of Chromatin Accessibility by SOX4 Drives the Transcriptional Response to Iron Overload.

Iron overload induces cellular stress and is implicated in diverse pathological conditions. Nevertheless, the epigenetic mechanisms governing mammalian cellular responses to iron overload remain poorly characterized. Using multi-omics profiling in …

Published: May 7, 2026, midnight
Multi-ancestry genome-wide association and integrated multi-omics analyses of endometriosis and its clinical manifestations.

Endometriosis is a chronic systemic disease affecting ~10% of women, yet its genetic basis and molecular mechanisms remain poorly understood. Hence, here we conducted a genome-wide association study of endometriosis …

Published: April 29, 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
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
LRP1 as a potential diagnostic and immunomodulatory target in endometriosis: evidence from multi-omics and single-cell analyses.

Endometriosis (EMS) is a common gynecological disease that seriously affects women's health and quality of life. However, the detailed dynamic cellular and molecular mechanisms underlying EMS pathogenesis remain largely unknown. …

Published: April 15, 2026, midnight
Unravelling Multilayered RNA Modification Networks in Female Reproduction and Obstetric/Gynaecologic Disorders.

Background/Objective: RNA modifications, including N6-methyladenosine (m6A), 5-methylcytosine (m5C), 7-methylguanosine (m7G), N1-methyladenosine (m1A), pseudouridine (Ψ), N4-acetylcytidine (ac4C), 5-methoxycarbonylmethyl-2-thiouridine (mcm5s2U) and adenosine-to-inosine (A-to-I) editing, constitute a critical layer of post-transcriptional regulation that …

Published: April 13, 2026, midnight
Decoding serotonin in endometriosis: unveiling its role in disease pathogenesis via the gut-reproductive microbiota axis.

How can the potential mechanisms and targets of endometriosis be explored through multi-omics and multi-location approaches?

Published: March 29, 2026, midnight
Mechanism study of phthalate exposure promoting endometriosis: Based on the ferroptosis perspective.

Phthalates (PAEs), typical endocrine-disrupting chemicals (EDCs) that accumulate in the human body to induce reproductive toxicity, have epidemiological links to endometriosis (EM), but the underlying micro-mechanisms remain unclear. Ferroptosis is …

Published: March 2, 2026, midnight
DRIVE-KG: Enhancing variant-phenotype association discovery in understudied complex diseases using heterogeneous knowledge graphs.

Multi-omics data are instrumental in obtaining a comprehensive picture of complex biological systems. This is particularly useful for women's health conditions such as endometriosis, which has been historically understudied despite …

Published: Feb. 28, 2026, midnight
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