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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
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
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
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
Empowering women's health with miRNA-integrated nanochemical approaches: from reproductive health to cancer care.

MicroRNAs (miRNAs), a category of small (18-25 nucleotides) non-coding transcripts that modulate gene expression at the post-transcriptional level, are necessary for regulatory processes in female reproduction, specifically in ovarian function …

Published: April 21, 2026, midnight
Pelargonium graveolens Essential Oil Suppresses Proliferation and Migration and Modulates Mesenchymal-Associated Cellular Functions in Human Endometriotic Cells.

Endometriosis is characterized by enhanced cellular proliferation, migration, and resistance to apoptosis, contributing to lesion persistence and progression. Targeting cellular plasticity and mesenchymal-associated functions may therefore represent a promising therapeutic …

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
YWHAZ Loss Is Associated With Endometrial Dysfunction in Proliferative Phase Endometriosis.

Endometriosis is an estrogen-dependent inflammatory disorder frequently associated with infertility and characterized by progesterone resistance and impaired endometrial receptivity. While ectopic lesions define the disease, accumulating evidence indicates that molecular …

Published: March 26, 2026, midnight
Misregulated alternative splicing in endometriosis: a role for aberrant mRNA variants in endometriotic cell growth.

Endometriosis is a chronic gynecological disorder marked by the growth of endometrial-like tissue outside the uterus, often leading to pelvic pain, inflammation, and infertility. Despite its global prevalence, diagnosis remains …

Published: March 15, 2026, midnight
Exosome-Enriched Hub Gene Networks Identify Diagnostic Biomarkers and Repurposable Therapeutic Targets in Endometriosis.

Endometriosis is a heterogeneous chronic inflammatory disorder associated with substantial diagnostic delay and limited therapeutic options, highlighting the need of robust non-invasive biomarkers and actionable molecular targets to complement existing …

Published: March 11, 2026, midnight
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