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 …
Endometriosis is a chronic inflammatory, hormone dependent disorder that affects more than 200 million women worldwide. Immune dysfunction has emerged as one of the predominant mechanisms facilitating endometriosis lesion growth …
Endometriosis (EM) is a chronic inflammatory disease characterized by the growth of endometrial-like tissue outside the uterus, yet its molecular mechanisms remain poorly understood. This study investigated the expression of …
Endometriosis is traditionally conceptualized as a pelvic lesion-centered disease; however, mounting evidence indicates it is a chronic, systemic, and multifactorial inflammatory disorder. This review examines the molecular dialog between ectopic …
Endometriosis is an estrogen-dependent condition characterized by ectopic implantation of endometrial tissue, yet the molecular mechanisms underlying lesion persistence remain incompletely understood. Aquaporins (AQPs), transmembrane water channels involved in cellular …
Endometriosis is a chronic, estrogen-dependent inflammatory disease affecting up to 10% of reproductive-aged women. Current therapies are predominantly hormone-based and offer symptomatic relief without correcting the immune dysregulation and inflammation …
Endometriosis, a chronic estrogen-dependent disorder defined by ectopic endometrial-like tissue growth, causes pelvic pain and infertility in reproductive-age women. Despite its prevalence, the underlying mechanisms driving lesion persistence and reproductive …
Endometriosis is a complex gynecological disorder characterized by endometrial-like tissue growing outside the uterus, leading to chronic pain, infertility, and reduced quality of life. Its pathophysiology involves genetic, epigenetic, immune, …
Disruptions in uterine tissue function contribute to disorders such as endometriosis, adenomyosis, endometrial cancer, and fibroids, which all significantly impact health and fertility. Advances in transcriptomics, particularly single-cell RNA sequencing, …