Latest Articles

Publication Date
Exploring the role of epigenetics in the processes related to the development of endometrosis in the mare.

Endometrosis is a chronic degenerative condition of the mare endometrium characterized by progressive fibrosis and glandular alterations that impair uterine function and fertility. Its pathogenesis involves persistent inflammation, the activation …

Published: June 19, 2026, midnight
Harnessing the murine inner cell mass mechanical environment enhances derivation of in vitro nascent primitive endoderm precursor cells.

Stem cell-based models resembling murine blastocysts represent a useful system to investigate subsequent developmental processes. While existing cell lines derived from epiblast and trophectoderm can be aggregated to form 'blastoids', …

Published: June 10, 2026, midnight
Development of a Synthetic Hydrogel to Foster Microvascularization of an Endometriosis Microphysiological System.

The ascent of novel alternative methods in drug development spotlights the dual needs for improved biological fidelity to in vivo, along with reproducibility, especially in regulatory applications. The need for …

Published: May 6, 2026, midnight
Stage-Related Changes in TGF-β Isoforms in PBMC Culture Supernatants in Endometriosis: A Prospective Case-Control Study.

Endometriosis is a chronic inflammatory disease in which transforming growth factor-beta (TGF-β) has been implicated in immune dysregulation, extracellular matrix remodeling, and fibrosis. Data on baseline secretion of TGF-β isoforms …

Published: April 27, 2026, midnight
Extracellular Matrix Remodeling and Matrix Metalloproteinases in Ovarian Function and Infertility.

Ovarian function relies on a network of well-coordinated molecular mechanisms that regulate follicular development, oocyte maturation, ovulation, and corpus luteum function. When these processes are disrupted, infertility can result. Extracellular …

Published: April 19, 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
Systems-level actions of luteolin in female reproductive disorders: from molecular mechanisms to clinical translation.

Female reproductive disorders represent a major global health challenge. Despite their clinical heterogeneity, these conditions share core pathological mechanisms including oxidative stress, chronic inflammation, hormonal imbalance, metabolic dysfunction, extracellular matrix …

Published: Feb. 25, 2026, midnight
Phthalate Metabolite, Mono(2-Ethyl-5-Hydroxyhexyl) Phthalate (MEHHP), Promotes Uterine-Fibroid-Associated Phenotypes in Myometrial Stem Cell-Derived 3D Organoids.

This study investigates how phthalate exposure contributes to uterine fibroid (UF) development by studying the effects of the Mono-(2-ethyl-5-hydroxyhexyl) phthalate (MEHHP), a metabolite of Di(2-ethylhexyl) phthalate, on myometrial stem cells …

Published: Feb. 1, 2026, midnight
Beyond VEGF and TGF-β: A Comprehensive Review of Growth Factor Pathways in the Pathophysiology of Uterine Leiomyomas.

Uterine leiomyomas or fibroids, are non-cancerous smooth muscle proliferations of the uterus, occurring mostly in women of reproductive age. Their pathogenesis involves complex growth factor interactions that regulate cellular proliferation, …

Published: Jan. 1, 2026, midnight
Human Endometriosis Scaffold Can Enhance Cell Seeding and Engraftment; an In Vitro and In Vivo Study.

The extracellular matrix (ECM) critically influences cell behavior, yet its properties in human endometrial lesions (HEL) and human uterine fibromas (HUF) are not well characterized. This study aimed to characterize …

Published: Dec. 29, 2025, midnight
Link copied to clipboard!
Subscribe to Our Newsletter

Stay updated with our latest articles!