Endometriosis is one of the most common causes of chronic pelvic or lower-abdominal pain, yet mechanisms, predictors, and patient-centered treatment pathways remain insufficiently defined. This article summarizes the situation in …
Patient-derived organoids (PDOs) have emerged as physiologically relevant three-dimensional (3D) culture systems that closely mimic the molecular and histological features of the human endometrium and associated malignancies. Owing to their …
This review aims to evaluate the potential of endometriosis models, especially patient-derived iPSC models, to gain deeper insights into the disease, thereby advancing our understanding and treatment of endometriosis. This …
The ascent of novel alternative methods in drug development spotlights the dual needs for improved biological fidelity to in vivo, along with reproducibility, especially in regulatory applications. The need for …
Gynecological diseases represent a persistent global health burden. According to a WHO report, the global incidence of gynecological diseases exceeds 65%. Furthermore, over 90% of women suffer from gynecological issues …
The endometrium is a highly dynamic and complex tissue lining the uterus, playing a central role in reproductive health. Despite its importance, the pathogenesis of many benign endometrial disorders remains …
Endometriosis affects approximately 10% of reproductive-age women and is associated with genomic instability; however, the contribution of specific DNA repair deficiencies remains poorly understood. This study investigated the expression and …
Adult stem cells are thought to drive the regenerative potential of the endometrium and contribute to the pathogenesis of endometriosis, however, their identity and defining features remain to be characterized. …
Endometriosis is a prevalent inflammatory disease affecting approximately one in ten women, characterized by endometrial tissue outside the uterus. Despite its high incidence, treatment options are limited, and the underlying …
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. …