Latest Articles

Publication Date
Macrophage-derived exosomes promote proliferation, migration, and invasion of endometrial stromal cells in endometriosis and are associated with exosomal lncRNA ZFAS1: A pilot translational study.

Endometriosis (EMs) is a prevalent gynecological disorder affecting reproductive-age women. Exosomes secreted by peripheral blood macrophages may participate in EMs progression. In this pilot translational study, exosomes from peripheral blood …

Published: June 24, 2026, midnight
Patient-derived eutopic and ectopic endometrial stromal cells: characterization and development of immortalized lines.

Ovarian endometriosis is an estrogen-dependent inflammatory disorder in which endometrial stromal cells are key cellular contributors to hormone-immune crosstalk and lesion persistence. Here, we isolated paired eutopic (NESC) and ectopic …

Published: June 19, 2026, midnight
ZNF143 Promotes Endometriotic Lesion Growth and Fibrosis through the Plasminogen Activator Inhibitor-1 Pathway.

Endometriosis (EMs) is a chronic, estrogen-dependent gynecological disorder characterized by the ectopic growth of endometrial tissue outside the uterus. Zinc Finger Protein 143 (ZNF143) is a DNA-binding transcription factor, yet …

Published: June 18, 2026, midnight
Lactate metabolism and lactylation in female reproductive diseases: From metabolic rewiring to biomarkers and translational therapeutics.

Lactate is increasingly recognized not only as a metabolic end product of glycolysis but also as a signaling metabolite that links metabolic reprogramming to epigenetic and transcriptional regulation through protein …

Published: June 17, 2026, midnight
Hypoxia-induced regulations of cell adhesion molecules and their implications for pathogenesis, diagnosis, and treatment of endometriosis.

Endometriosis is a chronic inflammatory disease characterized by the presence of endometrial-like tissue outside the uterine cavity, affecting up to 10% of women of reproductive age. Despite extensive research, its …

Published: June 4, 2026, midnight
RE-1 silencing transcription factor is reduced in endometriosis and uterine deletion in mice alters progesterone responsiveness.

Endometriosis is a steroid-dependent gynecologic disease characterized by progesterone (P4) resistance, subfertility/infertility, and pelvic pain; however, the molecular mechanisms underlying impaired P4 responsiveness in endometriosis tissue are not fully understood. …

Published: June 3, 2026, midnight
UCA1 facilitates endometriosis progression through EIF4A3-mediated stabilization of E2F1 mRNA and enhanced glycolysis.

Long non-coding RNA Urothelial carcinoma-associated 1 (UCA1) is a pivotal regulator in the progression of endometriosis (EMs), yet its mechanistic role remains elusive. This study identified UCA1 as a factor …

Published: June 2, 2026, midnight
Contributions of T-helper 9 cells in endometriosis-associated inflammation and lesion growth.

Endometriosis is an inflammatory gynecologic disease characterized by ectopic growth of endometrial-like tissue, resulting in pelvic pain and infertility. T-helper 9 (Th9) cells play a known role in various chronic …

Published: May 30, 2026, midnight
Garcinol Inhibits the Proliferation of Endometriosis Cells by Regulating Cell Cycle Related Genes and Signaling Pathways.

Endometriosis is a common gynecological disease with high recurrence rates after surgery and the lesions keep unlimited proliferative capacity. The effect of garcinol on cell proliferation has not been investigated …

Published: May 27, 2026, midnight
Molecular Characterization of Ovarian Endometriosis in Saudi Arabian Women: Insights into Inflammatory, Autophagic, and Epigenetic Dysregulation.

Ovarian endometriosis (OE) is a chronic, inflammatory gynecological disorder associated with sterility and an elevated risk of ovarian cancer. Despite its high prevalence, the complex molecular mechanisms governing OE pathogenesis …

Published: May 20, 2026, midnight
Link copied to clipboard!
Subscribe to Our Newsletter

Stay updated with our latest articles!