Endometrial organoids are a powerful, 3D in vitro system for studying reproductive function and disease since they are more physiologically representative than 2D cell models. However, optimal methods for the …
Male fertility is declining, and synthetic chemicals are a major candidate for causing it. This study investigated the effect of oral consumption of perfluorooctanoic acid on sperm quality and in …
Daughters of women with endometriosis are known to be at increased risk of developing this disease. Using a mouse model, we demonstrate uterine dysfunction reminiscent of endometriosis patients can also …
Endometriosis (EMs) is a chronic gynecological disease with poorly understood pathogenesis. This study integrated lipidomics and transcriptomics to systematically investigate aberrant sphingolipid metabolism in EMs, aiming to identify pathogenic mechanisms …
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 (EMS) is characterised by a disrupted peritoneal immune microenvironment where M2 macrophage polarization and impaired phagocytosis promote lesion survival. Single-cell RNA-seq (ScRNAseq) of the peritoneal macrophages from EMS patient …
Endometriosis is a common gynecological disorder characterized by the growth of endometrial-like tissue outside the uterine cavity, leading to chronic inflammation, pelvic pain, and infertility. Reliable mouse models are essential …
The uterus is an essential organ for fetal development in most mammals. Uterine glands, highly conserved structures in the mammalian uterus, play critical roles in the establishment and maintenance of …
Endometriosis is a disease associated with pain symptoms and reduced fertility, characterized by the presence of endometrial tissue outside the uterus. SETD3 is an actin-specific histidine N-methyltransferase that regulates actin …
Recent studies have highlighted the crucial role of mechanical properties in the ovarian microenvironment for ovarian function. However, the mechanisms that cause ovarian matrix stiffening during aging remain incompletely understood. …