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Macrophage-derived exosomes promote proliferation, migration, and invasion of endometrial stromal cells in endometriosis and are associated with exosomal lncRNA ZFAS1: A pilot translational study.

Endometriosis (EMs) is a prevalent gynecological disorder affecting reproductive-age women. Exosomes secreted by peripheral blood macrophages may participate in EMs progression. In this pilot translational study, exosomes from peripheral blood …

Published: June 24, 2026, midnight
Mesenchymal Stem Cells Therapy for Intrauterine Adhesions and Endometriosis: Potential, Mechanisms, and Future Directions.

Intrauterine adhesions (IUA) and endometriosis are debilitating gynecological disorders that impair endometrial function and fertility. IUA, typically caused by iatrogenic trauma to the basal endometrium, leads to fibrosis and infertility, …

Published: June 14, 2026, midnight
Follicular fluid-derived exosomal LINC02701 promotes granulosa cell apoptosis through the GRP75-P53 axis in active endometriosis.

Endometriosis (EMs)-associated infertility has been linked to alterations in the follicular microenvironment; however, the role of exosomal long non-coding RNAs (lncRNAs) in granulosa cell dysfunction remains incompletely understood.

Published: May 22, 2026, midnight
Novel insights into the role of Annexin A2 signaling pathway in female reproductive system diseases: from mechanisms to advanced therapies.

Annexin A2 (ANXA2) is a calcium-dependent protein with high affinity for phospholipids, and its multifunctional nature has drawn increasing attention in the onset and progression of various disorders of the …

Published: April 14, 2026, midnight
Bridging the gap: meta-epidemiological analysis on the clinical translation of stem cell-based therapies in women's reproductive diseases.

What is the current landscape of randomized controlled trials (RCTs) evaluating stem cell-based therapies for women's reproductive diseases, and how effectively has preclinical research informed their clinical translation?

Published: March 21, 2026, midnight
Exosome-Enriched Hub Gene Networks Identify Diagnostic Biomarkers and Repurposable Therapeutic Targets in Endometriosis.

Endometriosis is a heterogeneous chronic inflammatory disorder associated with substantial diagnostic delay and limited therapeutic options, highlighting the need of robust non-invasive biomarkers and actionable molecular targets to complement existing …

Published: March 11, 2026, midnight
Endometriosis-derived exosomal MicroRNA-125b-5p downregulates phosphatidylinositol 3-Kinase/Protein Kinase B signaling pathways via vascular endothelial growth factor to decelerate endometriosis progression.

Endometriosis (EMs) is a chronic enigmatic gynecological disorder which pathogenesis have not been fully elucidated. Exosomes have been proven to participate in endometriosis. However, the role of exosomes in the …

Published: Feb. 7, 2026, midnight
Enhanced CD56 Expression and Increased Number of CD56+bright Cells in the Peripheral Blood of Untreated Endometriosis Patients.

NK-cell dysfunction in endometriosis is suggested to contribute to the survival of ectopic endometrial tissue. However, the underlying causes of this impairment remain unclear. NK cells are divided into: CD56+bright, …

Published: Feb. 6, 2026, midnight
Clinical Implications of Extracellular Vesicles in Endometriosis: A Systematic Review.

Endometriosis (EM) is a chronic gynecological condition characterized by the growth of endometrial-like tissue outside the uterus. Diagnosis has traditionally been challenging due to nonspecific symptoms and reliance on invasive …

Published: Feb. 6, 2026, midnight
Applications of Exosomes in Female Medicine: A Systematic Review of Molecular Biology, Diagnostic and Therapeutic Perspectives.

Exosomes are nanoscale extracellular vesicles that mediate intercellular communication by transporting microRNAs, proteins, and lipids. Generated through Endosomal Sorting Complex Required for Transport (ESCRT)-dependent mechanisms or ESCRT-independent pathways, exosomes are …

Published: Jan. 3, 2026, midnight
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