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Ferroptosis in the Ovarian Follicular Microenvironment: A Redox-Dependent Cell Death Pathway with Emerging Roles in PCOS, Oocyte Quality, and IVF Outcomes.

Ferroptosis is a novel kind of regulated cell death that occurs when redox equilibrium is disrupted, leading to iron-dependent lipid peroxidation. Ferroptosis is defined by the buildup of deleterious lipid …

Published: Oct. 25, 2025, midnight
Research progress and potential therapeutic targets of a novel disulfide stress-driven cell death-disulfidptosis in gynecological tumors and other gynecological disorders.

Disulfidptosis is a novel Nicotinamide Adenine Dinucleotide Phosphate (NADPH) deficiency-driven cell death pathway characterized by cystine overload and aberrant disulfide bond formation in actin cytoskeletal proteins, distinct from apoptosis, ferroptosis, …

Published: Oct. 25, 2025, midnight
Endometriosis-associated infertility: Multi-omics insights into pathogenesis and precision therapeutics.

Endometriosis is a prevalent, estrogen-dependent, inflammatory disease that impairs fertility via hormonal dysregulation, immune dysfunction, oxidative stress/ferroptosis, genetic and epigenetic alterations, and microbiome imbalance. We summarize multi-omics insights and clinical …

Published: Oct. 2, 2025, midnight
Estradiol regulates MBOAT1-mediated ferroptosis and participates in the progression of endometriosis.

Endometriosis is an estrogen-dependent disease with unclear pathogenesis. Recent evidence suggests that ferroptosis plays an important role in the development of endometriosis. In this study, we aimed to explore whether …

Published: Sept. 24, 2025, midnight
Regulated cell death in endometrial diseases: from molecular mechanisms to targeted therapies.

Regulated cell death (RCD) is a fundamental biological process essential for tissue homeostasis and disease regulation. Increasing evidence has demonstrated that RCD plays a pivotal role in the pathogenesis of …

Published: Sept. 22, 2025, midnight
Integrative analysis reveals ferroptosis-related genes with RRM2 as a key driver in endometriosis.

Endometriosis is an estrogen-dependent disorder with unclear molecular mechanisms. Ferroptosis, a regulated iron-dependent cell death, may play a key role, yet the specific genes involved remain underexplored.

Published: Sept. 10, 2025, midnight
Erastin-induced multi-pathway cell death in endometriosis: a mechanistic and translational narrative review.

This narrative review examines the therapeutic potential of Erastin and its derivatives for endometriosis (EMS) by integrating mechanistic, preclinical, and translational perspectives. We conducted a focused review of literature from …

Published: Sept. 10, 2025, midnight
Ferroptosis: a novel pathway in the pathogenesis and treatment of endometriosis.

As a common chronic disease, endometriosis (EMs) affects nearly 10% of women of childbearing age, may cause other complications such as infertility, and has a tendency to develop malignant tumors. …

Published: Aug. 22, 2025, midnight
Association of elevated ACSL4 expression with impaired endometrial receptivity in endometriosis and restoration by ACSL4 inhibitor PRGL493.

This study investigated the role of ACSL4 in endometrial receptivity disorders in endometriosis (EMs) and evaluated PRGL493, an ACSL4 inhibitor, as a potential therapeutic target. Bioinformatic analysis identified ACSL4 as …

Published: July 27, 2025, midnight
Ferroptosis in Endometriosis: Traditional Chinese Medicine Interventions and Mechanistic Insights.

Endometriosis (EMS) is a chronic, estrogen-dependent inflammatory disease affecting 5-10% of women of reproductive age, characterized by the growth of endometrial tissue on the outside of the uterus. The dysregulation …

Published: March 27, 2025, midnight
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