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Endometrial organoids to model benign disorders affecting the endometrium.

The endometrium is a highly dynamic and complex tissue lining the uterus, playing a central role in reproductive health. Despite its importance, the pathogenesis of many benign endometrial disorders remains …

Published: March 31, 2026, midnight
Endometrial epithelial cells with high ALDH activity control uterine development and regeneration.

Adult stem cells are thought to drive the regenerative potential of the endometrium and contribute to the pathogenesis of endometriosis, however, their identity and defining features remain to be characterized. …

Published: March 24, 2026, midnight
Engineering the Human Endometrial-Embryo Interface: Breakthroughs in 3D Uterine Models.

Three-dimensional (3D) organoid and co-culture models have emerged as transformative tools for studying human endometrial function, implantation, and placental development, overcoming key limitations of animal and two-dimensional in vitro systems. …

Published: March 3, 2026, midnight
Human Endometriotic Lesion-Derived Small Extracellular Vesicles Impair Macrophage Function in the Peritoneal Microenvironment.

Endometriosis (EM) is a chronic inflammatory disease that affects ∼10% of women during reproductive age. It is characterised by ectopic (ECT) growth of endometrial-like tissue mainly in the pelvic cavity. …

Published: Feb. 20, 2026, midnight
Compound design of a patient-derived 3D cell culture system modelling early peritoneal endometriosis.

Peritoneal endometriosis causes pelvic pain and infertility, but the underlying mechanisms related to these symptoms are not fully understood. Endometriosis diagnosis is typically delayed; thus, patient samples are unsuitable to …

Published: Dec. 15, 2025, midnight
Development of a Synthetic Hydrogel to Foster Microvascularization of an Endometriosis Microphysiological System.

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

Published: Oct. 6, 2025, midnight
Engraftment of self-renewing endometrial epithelial organoids promotes endometrial regeneration by differentiating into functional glands in rats - Frontiers

Engraftment of self-renewing endometrial epithelial organoids promotes endometrial regeneration by differentiating into functional glands in rats Frontiers

Published: Nov. 18, 2024, 12:27 p.m.
Proof-of-Concept for Long-Term Human Endometrial Epithelial Organoids in Modeling Menstrual Cycle Responses.

Endometrial disorders, such as infertility and endometriosis, significantly impact reproductive health, thus necessitating better models to study endometrial function. Current in vitro models fail to replicate the complexity of the …

Published: Nov. 2, 2024, midnight
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