Latest Articles

Publication Date
Integrated bioinformatics analysis and machine learning identifies FZD4, SRPX2, and COL8A1 as angiogenesis hub genes in endometriosis.

This study aims to identify angiogenesis-associated genes (AAGs) in endometriosis (EM) by integrating bioinformatics analysis with machine learning, and to investigate their underlying mechanisms. Differentially expressed genes (DEGs) were screened …

Published: Oct. 26, 2025, midnight
The association between HPV infection and endometriosis: Risk and fertility outcomes.

While infections have been implicated in endometriosis pathogenesis, the role of human papillomavirus (HPV) remains unclear. This study combined a meta-analysis of seven studies with a case-control study ( n …

Published: Oct. 25, 2025, midnight
Serum Galectin-1 as a Diagnostic Biomarker in Endometriosis: A Prospective Longitudinal Study.

Endometriosis is a chronic condition characterized by the presence of endometrial-like tissue outside the uterine cavity. It affects ~10% of reproductive-aged individuals and is associated with dysmenorrhea and infertility. Although …

Published: Oct. 25, 2025, midnight
Ferroptosis in the Ovarian Follicular Microenvironment: A Redox-Dependent Cell Death Pathway with Emerging Roles in PCOS, Oocyte Quality, and IVF Outcomes.

Ferroptosis is a novel kind of regulated cell death that occurs when redox equilibrium is disrupted, leading to iron-dependent lipid peroxidation. Ferroptosis is defined by the buildup of deleterious lipid …

Published: Oct. 25, 2025, midnight
Research progress and potential therapeutic targets of a novel disulfide stress-driven cell death-disulfidptosis in gynecological tumors and other gynecological disorders.

Disulfidptosis is a novel Nicotinamide Adenine Dinucleotide Phosphate (NADPH) deficiency-driven cell death pathway characterized by cystine overload and aberrant disulfide bond formation in actin cytoskeletal proteins, distinct from apoptosis, ferroptosis, …

Published: Oct. 25, 2025, midnight
HMGB-1 Increases Proinflammatory Reaction via TLR4 in Human Granulosa Cells of Endometriosis.

Background/Objectives: Oxidative stress is a critical factor in the development and progression of endometriosis. Granulosa cells, which reside near oocytes in follicles, exhibit steroidogenic activity, and, consequently, influence oocyte quality. …

Published: Oct. 24, 2025, midnight
Shared Genetic Architecture Between Endometriosis and Psychiatric Conditions May Explain Comorbidity.

Endometriosis is a common chronic gynecological disorder with complex and poorly understood etiology and no definitive cure. Beyond pain and infertility, affected individuals frequently experience psychiatric comorbidities, often attributed to …

Published: Oct. 24, 2025, midnight
Targeting Steroid Receptor Coactivators for the Treatment of Benign Female Reproductive Disorders.

Steroid receptor coactivators (SRCs) are master regulators of nuclear receptor signaling and play essential roles in female reproductive physiology. By integrating steroid hormone signaling with growth factors and metabolic pathways, …

Published: Oct. 23, 2025, midnight
Causal Relationship Between Socioeconomic Inequality and Hormone-Related Gynecologic Diseases: A Two-Sample, Two-Step Mendelian Randomization Study.

Although observational studies suggest a link between socioeconomic status (SES) and hormone-related gynecologic diseases, the causal direction and mediating mechanisms remain unclear. This study aims to explore the causal relationships …

Published: Oct. 23, 2025, midnight
Identification and Characterization of m6A Regulators METTL3 and YTHDF2: Unveiling Their Biological Functions in Endometriosis.

Endometriosis (EMs) is a benign gynecological disorder that exhibits several malignant characteristics, including proliferation and angiogenesis. N6-methyladenosine (m6A) modification plays a crucial role in regulating RNA splicing, subcellular localization, translation …

Published: Oct. 23, 2025, midnight
Link copied to clipboard!
Subscribe to Our Newsletter

Stay updated with our latest articles!