Endometriosis is an estrogen-dependent disorder characterized by chronic inflammation, immune dysregulation, and altered hormone metabolism. Although gut microbiota-derived metabolites have been implicated in shaping immune microenvironments and lesion development, the …
Background and Objectives: Endometriosis is associated with chronic inflammation, immune dysregulation, oestrogen-dependent growth, oxidative stress, altered steroid hormone metabolism, compromised epithelial barrier integrity, and the production of bioactive microbial metabolites. …
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 …
Plastics are ubiquitous in the environment and are widely used in food packaging, medicine, agriculture, construction and other sectors. However, the plasticizers they contain pose a substantial threat to environmental …
EMs is a chronic, estrogen-dependent systemic inflammatory disorder defined by the ectopic implantation of endometrial glands and stroma and is frequently associated with dysmenorrhea, chronic pelvic pain, infertility, and substantial …
Chronic pelvic pain (CPP) is a prevalent, disabling syndrome encompassing overlapping disorders such as endometriosis/adenomyosis, bladder pain syndrome/interstitial cystitis, irritable bowel syndrome, vulvodynia, and myofascial pain syndrome. Despite distinct clinical …
The survival of ectopic endometrial lesions in endometriosis critically depends on their ability to evade immune recognition and clearance by the host, a process known as immune evasion. Recent studies …
Endometriosis (EMs) is an estrogen-dependent chronic inflammatory gynecological disease characterized by ectopic growth of endometrial tissues, leading to dysmenorrhea, pelvic pain, and infertility. Although the retrograde menstruation theory clarifies the …
The human microbiome, a dynamic endocrine organ, exerts profound systemic influence through the production of bioactive metabolites. While the microbiome-gut-brain axis is well-established, the direct conduit between the gut microbiota …
The "gut microbiota-mitochondria axis" has become the core hub connecting the metabolism, immunity, and endocrine regulation of gynecological diseases. In this review, the hierarchical regulation mechanism of this axis is …