Endometriosis-associated ovarian cancer (EAOC) is a rare subtype of ovarian cancer arising from the malignant transformation of endometriosis (EMS). Despite growing clinical awareness, its underlying pathogenic mechanisms are not fully …
Endometriosis is a chronic gynecological disorder that affects approximately 10% of women of reproductive age. In adolescents, it frequently remains underdiagnosed due to the heterogeneity of its clinical presentation. Pelvic …
Lysine lactylation (Kla) is a novel form of post-translational modification. It utilizes lactate as its core substrate. Through an enzymatic regulatory network, it mediates modifications of both histones and non-histone …
Endometriosis (EMs) is a gynecological disorder affecting women of reproductive age. It is characterized by the ectopic implantation and infiltration of endometrial-like tissue and is associated with significant effects on …
Endometriosis is a complex gynecological disorder with prominent cellular heterogeneity, and its key pathogenic cell subsets and core molecular mechanisms remain elusive, which restricts the development of effective therapeutic strategies. …
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 an estrogen-dependent disorder influenced by dysregulated steroidogenesis, oxidative stress, and inflammation. Bisphenol A (BPA), a common endocrine disruptor, has been associated with reproductive dysfunction, but its developmental impacts …
Endometriosis is a chronic gynecological disease characterized by the presence of ectopic endometrium. Achieving effective therapeutic outcomes for endometriosis has always been a significant clinical hurdle because of the high …
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 …
Three-dimensional (3D) organoid and co-culture models have emerged as transformative tools for studying human endometrial function, implantation, and placental development, overcoming key limitations of animal and two-dimensional in vitro systems. …