Latest Articles

Publication Date
Patient-derived eutopic and ectopic endometrial stromal cells: characterization and development of immortalized lines.

Ovarian endometriosis is an estrogen-dependent inflammatory disorder in which endometrial stromal cells are key cellular contributors to hormone-immune crosstalk and lesion persistence. Here, we isolated paired eutopic (NESC) and ectopic …

Published: June 19, 2026, midnight
Molecular signature of human endometrial stem/progenitor cells at the single-cell level.

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 …

Published: June 11, 2026, midnight
Psychological flexibility and pain catastrophizing in endometriosis: Incremental validity and interaction effects in predicting psychosocial outcomes.

Psychological distress and reduced health-related quality of life are common among women with endometriosis, particularly when the condition is accompanied by chronic pain. Psychological flexibility (PF), a core process in …

Published: June 4, 2026, midnight
The needs, preferences, and priorities for supportive healthcare in people living with endometriosis: A qualitative exploratory study.

Although pain, poor quality of life and symptoms of anxiety and depression are common in people with endometriosis, consumer views regarding supportive care needs are limited. Using a descriptive phenomenological …

Published: June 2, 2026, midnight
The Microbiota-Endometriosis Axis: An Immune-Endocrine Integration Model and Emerging Therapeutic Targets.

Endometriosis is a chronic, estrogen-dependent inflammatory disorder characterized by the ectopic implantation and persistence of endometrial-like tissue outside the uterine cavity. Despite its high prevalence and significant impact on quality …

Published: May 28, 2026, midnight
Garcinol Inhibits the Proliferation of Endometriosis Cells by Regulating Cell Cycle Related Genes and Signaling Pathways.

Endometriosis is a common gynecological disease with high recurrence rates after surgery and the lesions keep unlimited proliferative capacity. The effect of garcinol on cell proliferation has not been investigated …

Published: May 27, 2026, midnight
Integrative single-cell analysis reveals Bu-Shen-Huo-Xue Formula rescues iron-overloaded ovarian function via rewiring IFN-γ/JAK/STAT/CXCL10-driven immune-stromal interactions and BNIP3-mediated mitophagy in endometriosis.

Ovarian endometriosis (OE) is a leading cause of female infertility. Our previous work identified iron overload-driven oxidative stress and mitochondrial dysfunction in granulosa cells as key pathogenic features, yet the …

Published: May 23, 2026, midnight
From gut-reproductive microbiota to ferroptosis: a comprehensive insight into the molecular-pathogenicity of endometriosis.

Endometriosis (EMS) is a highly heterogeneous chronic gynecological disease characterized by pain, infertility, and relapse, with its etiology and pathogenesis not yet fully elucidated. Traditional theories, including "retrograde menstruation," "implantation …

Published: May 22, 2026, midnight
Is Recurrent Endometriosis a Reprogrammed Disease? Molecular Persistence Beyond Surgical Clearance.

Background: Endometriosis is traditionally conceptualized as a localized gynecological disorder characterized by the presence of ectopic endometrial tissue. However, high recurrence rates following apparently complete surgical excision challenge this lesion-based …

Published: May 21, 2026, midnight
Endometriosis-related alterations in the endometrium revealed by integrated single-cell and AI-powered approaches.

Endometriosis, affecting 1 in 9 women, presents treatment and diagnostic challenges. To address these issues, we generated a comprehensive single-cell atlas of endometrial tissue, comprising 466,371 cells from 35 endometriosis …

Published: May 20, 2026, midnight
Link copied to clipboard!
Subscribe to Our Newsletter

Stay updated with our latest articles!