In vitro and in vivo approaches to study angiogenesis in the pathophysiology and therapy of endometriosis
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public-domain-us
⤵ 1 in-corpus citation
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This review highlights in vitro and in vivo methods used to investigate angiogenesis in endometriosis, including analyses of growth factors, tissue architecture, and the efficacy of anti-angiogenic therapies.
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Abstract
Endometriosis represents one of the most common gynaecological disorders. According to the implantation theory, angiogenesis is a major prerequisite for the initiation and progression of the disease. Thus, during the last decade, many studies have focused on the mechanisms regulating angiogenesis in endometriotic lesions. For this purpose, sophisticated in vitro and in vivo approaches have been established, which are highlighted in this review. Enzyme-linked immunosorbent assays demonstrate the imbalance of pro- and anti-angiogenic growth factors in isolated peritoneal fluid from endometriosis patients. Histological, immunohistochemical and gene expression analyses of endometriotic tissue provide detailed information on the angio-architecture of endometriotic lesions and the different growth factor expression by various cell populations. Moreover, cell culture systems are useful tools for the identification of hormonal and immunological factors involved in the angiogenic process. Finally, sophisticated in vivo models, such as rodent models of peritoneal endometriosis as well as the chorioallantoic membrane assay and the dorsal skinfold chamber, allow for the detailed analysis of blood vessel development in ectopic endometrium and the efficacy of angiogenesis inhibitors. The findings resulting from all these approaches will help to provide better insights into the pathophysiology of endometriosis and to establish new anti-angiogenic treatment strategies for the future.
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Cited by (3)
- Induction of peritoneal endometriosis in nude mice with use of human immortalized endometriosis epithelial and stromal cells: a potential experimental tool to study molecular pathogenesis of endometriosis in humans 2008
- Unraveling the VEGF-ETS1 axis: a transcriptomic and single-cell analysis of angiogenesis in endometriosis 2026
- Ectopic Endometrial Cell-Derived Exosomal Moesin Induces Eutopic Endometrial Cell Migration, Enhances Angiogenesis and Cytosolic Inflammation in Lesions Contributes to Endometriosis Progression 2022
Cited by (3)
- Unraveling the VEGF-ETS1 axis: a transcriptomic and single-cell analysis of angiogenesis in endometriosis 2026
- Ectopic Endometrial Cell-Derived Exosomal Moesin Induces Eutopic Endometrial Cell Migration, Enhances Angiogenesis and Cytosolic Inflammation in Lesions Contributes to Endometriosis Progression 2022
- Induction of peritoneal endometriosis in nude mice with use of human immortalized endometriosis epithelial and stromal cells: a potential experimental tool to study molecular pathogenesis of endometriosis in humans 2008
Source provenance
- europepmc
- last seen: 2026-09-26T06:15:21.694264+00:00
- pubmed
- last seen: 2026-05-13T22:15:00.519696+00:00
- unpaywall
- last seen: 2026-05-14T19:30:52.867331+00:00
License: public-domain-us
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Courtesy of the U.S. National Library of Medicine
Courtesy of the U.S. National Library of Medicine