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 …
Red meat consumption is widespread globally and has been associated with endometriosis (EMS) progression, although the precise underlying mechanisms remain unclear. In the present study, we aimed to explore the …
Endometriosis is frequently managed with hormonal suppression that can induce hypoestrogenism during a period when many patients are still accruing peak bone mass. This narrative review summarizes current clinical and …
Determining the pathogenesis of endometriosis remains a major challenge in contemporary gynecology, and the investigation of alterations in cellular immunity may provide important insights into this issue. A comprehensive search …
Endometriosis is a multifactorial, chronic inflammatory disorder that affects a substantial proportion of women during their reproductive years and is frequently associated with pelvic pain and infertility. Accumulating evidence suggests …
The first trimester (FT) of pregnancy is characterized by rapid placental growth and differentiation, rendering this period sensitive to maternal metabolic influences. Maternal obesity is associated with chronic low-grade inflammation …
The widespread use of plastic has led to exposure to chemicals like bisphenols (BPs), particularly bisphenol A (BPA), which are crucial in the production of polycarbonate plastics and epoxy resins. …
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 …
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 …
Human endometrium sheds and regenerates each month during the menstrual cycle. N-cadherin+ (CDH2) glandular epithelial progenitors and SUSD2+ mesenchymal stem cells (MSCs) and their niches have been identified, but their …