Latest Articles

Publication Date
Endometriosis at the Single-Cell Level: Molecular Insights and Implications for Assisted Reproduction Success.

Endometriosis is a chronic hormone-responsive disorder linked to infertility, usually characterized by the presence of ectopic endometrium in the pelvis that disrupts local homeostasis. Advances in single-cell "omic" methods have …

Published: March 9, 2026, midnight
Next-Generation Dietary Antioxidants in Women's Reproductive Health: Mechanisms, Reproductive Outcomes, and Therapeutic Potential.

Oxidative stress has emerged as a key factor regulating female fertility, reproductive aging, and the development of various gynecologic and pregnancy-associated diseases. While physiological concentrations of reactive oxygen species play …

Published: March 3, 2026, midnight
Endometriosis and Oocyte Quality: Morphological Alterations, Developmental Competence, and Modifiable Strategies for Reproductive Longevity.

Endometriosis is a chronic, estrogen-dependent inflammatory disorder that is increasingly recognized as a systemic condition with profound implications for female reproductive potential. In addition to pelvic distortion and impaired folliculogenesis, …

Published: Feb. 4, 2026, midnight
Phthalate Metabolite, Mono(2-Ethyl-5-Hydroxyhexyl) Phthalate (MEHHP), Promotes Uterine-Fibroid-Associated Phenotypes in Myometrial Stem Cell-Derived 3D Organoids.

This study investigates how phthalate exposure contributes to uterine fibroid (UF) development by studying the effects of the Mono-(2-ethyl-5-hydroxyhexyl) phthalate (MEHHP), a metabolite of Di(2-ethylhexyl) phthalate, on myometrial stem cells …

Published: Feb. 1, 2026, midnight
Myrrh ameliorates endometriosis by enhancing ER stress-related apoptotic cell death.

Endometriosis is characterized by ectopic growth of endometrial tissue causing severe abdominal pain and inflammation during disease progression. Myrrh, a resin collected from trees of genus Commiphora known for its …

Published: Jan. 29, 2026, midnight
HIF2A as a prognostic and clinical therapeutic target in ovarian clear cell carcinoma.

Ovarian clear cell carcinoma (CCC) is an aggressive subtype of ovarian cancer that is resistant to conventional chemotherapy, resulting in poor prognosis. CCC develops from endometriosis, which exposes tumor cells …

Published: Jan. 27, 2026, midnight
Metabolism-Regulating Microspheres: Design Principles, Therapeutic Applications Across Multisystem Diseases, and Future Perspectives.

Metabolism-regulating microspheres have evolved from conventional drug carriers into active platforms capable of spatiotemporally reprogramming pathological metabolic networks. Chronic diseases are increasingly understood to be driven by metabolic dysregulation, highlighting …

Published: Jan. 27, 2026, midnight
Evidence for KISS-1 nuclear translocation and PI3K/AKT signaling in the ultrastructurally and morphometrically analyzed human endometriosis.

Endometriosis is a common estrogen-dependent disease marked by ectopic endometrial growth. Although the PI3K/AKT and kisspeptin pathways are known to regulate endometrial homeostasis, their interplay in disease progression remains unclear. …

Published: Jan. 6, 2026, midnight
EGR1 promotes ferroptosis in endometriosis through transcriptional activation of HMOX1.

Endometriosis (EM) affects approximately 10% of women of reproductive age and remains a prevalent estrogen-dependent gynecological disorder with limited therapeutic efficacy and high recurrence rates. Ferroptosis-an iron-dependent, non-apoptotic form of …

Published: Dec. 19, 2025, midnight
Oxidative Stress-Telomere Axis in IVF: Molecular Mechanisms, Biomarkers, and Clinical Translation.

The reduction in oocyte competence and ovarian reserve coincides with reproductive ageing; nevertheless, the molecular mechanisms underlying this phenomenon remain poorly understood. Our testable mechanistic hypothesis is that the oxidative …

Published: Nov. 24, 2025, midnight
Link copied to clipboard!
Subscribe to Our Newsletter

Stay updated with our latest articles!