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 …
Mesenchymal Stem Cells Therapy for Intrauterine Adhesions and Endometriosis: Potential, Mechanisms, and Future Directions.
Intrauterine adhesions (IUA) and endometriosis are debilitating gynecological disorders that impair endometrial function and fertility. IUA, typically caused by iatrogenic trauma to the basal endometrium, leads to fibrosis and infertility, …
Emerging Pathways to Non-Invasive Diagnosis in Endometriosis: Integrating Machine Learning, Deep Learning and Multi-Omics Biomarkers.
Endometriosis is a chronic, debilitating condition affecting approximately 10-15% of reproductive-aged women and it is often associated with significant diagnostic delays due to its heterogeneity and unreliable non-invasive tests. Artificial …