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Interleukin-17A as a key driver for cell migration, proliferation, inflammation, and nerve infiltration in deep endometriosis.

Deep endometriosis (DE) is the most severe subtype of endometriosis, marked by aggressive cellular behavior and debilitating pain. However, the molecular mechanisms underlying DE pathogenesis remain poorly understood. In this …

Published: June 15, 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
Dietary Caloric Restriction Suppresses Endometriosis by Inhibiting STAT3/ERK Pathways.

Endometriosis is a chronic, estrogen-dependent inflammatory condition that affects approximately 10% of reproductive-age women and is frequently associated with infertility and pelvic pain. Unlike many estrogen-dependent disorders, epidemiologic studies have …

Published: Feb. 11, 2026, midnight
The role of insulin-like growth factor binding proteins in TGF-β1-induced fibroblast-myofibroblast transition during endometriosis fibrosis.

Fibrosis is a defining feature of endometriosis (EMS). Our previous single-cell RNA sequencing (scRNA-seq) revealed myofibroblasts (MFBs) as the predominant cells in ectopic endometrium (ECE), mainly derived from fibroblast-to-myofibroblast transition …

Published: Jan. 9, 2026, midnight
RND3 Inhibits Endometriosis Progression by Regulating Autophagy and Oxidative Stress Through PLEKHG5.

Endometriosis (EMS) is a chronic gynecological disease. RND3 is recognized as a potential autophagy-related biomarker in EMS. The aim of this study was to investigate the regulatory role of RND3 …

Published: Oct. 26, 2025, midnight
Cyclooxygenase 2 overexpression suppresses Smad3 and augments ERK1/2 signaling activated by TGFβ1 in endometrial stromal cells: a novel insight into endometriosis pathogenesis.

To investigate the underlying mechanisms driving the opposing effects of transforming growth factor-beta 1 (TGFβ1) on the proliferation of control (CESCs) and ectopic (EESCs) endometrial stromal cells.

Published: Jan. 24, 2025, midnight
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