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Single-cell and spatially resolved omics reveal transcriptional and metabolic signatures of ovarian endometriomas.

Endometriosis involves ectopic growth of endometrial-like tissue, yet the spatial transcriptomic and metabolic landscape of ovarian endometriomas remains poorly understood. This investigation presents a comprehensive multi-omics analysis of ovarian endometriomas …

Published: Nov. 22, 2025, midnight
Macrophages in endometriosis: key roles and emerging therapeutic opportunities-a narrative review.

Endometriosis is a chronic gynecological disorder affecting approximately 10% of women of reproductive age. It commonly presents with pelvic pain, dysmenorrhea, and infertility, imposing substantial physical, psychological, and social burdens. …

Published: Oct. 21, 2025, midnight
Fibroblast heterogeneity and FN1-mediated signaling in endometriosis revealed by single-cell and spatial transcriptomics.

Endometriosis (EM) is a chronic gynecological disorder that affects 5% to 10% of women of childbearing age, often causing pelvic pain and infertility. Fibrosis is a hallmark of EM progression, …

Published: Oct. 13, 2025, midnight
High-Resolution Spatial Transcriptomics Reveals Fibroblast and Neuroimmune Microenvironments in Endometriosis Lesions.

Endometriosis is a chronic, systemic, inflammatory disease characterized by the presence of endometrium-like tissue growing outside of the uterus. One of its main symptoms is chronic pain and inflammation leading …

Published: Aug. 25, 2025, midnight
Mapping Human Uterine Disorders Through Single-Cell Transcriptomics.

Disruptions in uterine tissue function contribute to disorders such as endometriosis, adenomyosis, endometrial cancer, and fibroids, which all significantly impact health and fertility. Advances in transcriptomics, particularly single-cell RNA sequencing, …

Published: Jan. 21, 2025, midnight
Single-cell and spatial transcriptomic profiling revealed niche interactions sustaining growth of endometriotic lesions.

Endometriosis is a chronic condition with limited therapeutic options. The molecular aberrations promoting ectopic attachment and interactions with the local microenvironment sustaining lesion growth have been unclear, prohibiting development of …

Published: Jan. 11, 2025, midnight
Spatial transcriptomic analysis identifies epithelium-macrophage crosstalk in endometriotic lesions.

The mechanisms underlying the pathophysiology of endometriosis, characterized by the presence of endometrium-like tissue outside the uterus, remain poorly understood. This study aimed to identify cell type-specific gene expression changes …

Published: Jan. 10, 2025, midnight
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