Extracellular vesicle-associated VEGF-C promotes lymphangiogenesis and immune cells infiltration in endometriosis
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Extracellular vesicle-associated VEGF-C, induced by inflammation via COUP-TFII suppression, promotes lymphangiogenesis and immune cell infiltration in endometriosis.
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Abstract
Endometriosis is a highly prevalent gynecological disease with severe negative impacts on life quality and financial burden. Unfortunately, there is no cure for this disease, which highlights the need for further investigation about the pathophysiology of this disease to provide clues for developing novel therapeutic regimens. Herein, we identified that vascular endothelial growth factor (VEGF)-C, a potent lymphangiogenic factor, is up-regulated in endometriotic cells and contributes to increased lymphangiogenesis. Bioinformatic analysis and molecular biological characterization revealed that VEGF-C is negatively regulated by an orphan nuclear receptor, chicken ovalbumin upstream promoter-transcription factor II (COUP-TFII). Further studies demonstrated that proinflammatory cytokines, via suppression of COUP-TFII level, induce VEGF-C overexpression. More importantly, we show that functional VEGF-C is transported by extracellular vesicles (EVs) to enhance the lymphangiogenic ability of lymphatic endothelial cells. Autotransplanted mouse model of endometriosis showed lenvatinib treatment abrogated the increased lymphatic vessels development in the endometriotic lesion, enlarged retroperitoneal lymph nodes, and immune cells infiltration, indicating that blocking VEGF-C signaling can reduce local chronic inflammation and concomitantly endometriosis development. Evaluation of EV-transmitted VEGF-C from patients' sera demonstrates it is a reliable noninvasive way for clinical diagnosis. Taken together, we identify the vicious cycle of inflammation, COUP-TFII, VEGF-C, and lymphangiogenesis in the endometriotic microenvironment, which opens up new horizons in understanding the pathophysiology of endometriosis. VEGF-C not only can serve as a diagnostic biomarker but also a molecular target for developing therapeutic regimens.
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Cited by (3)
- Endometriosis in the Mouse: Challenges and Progress Toward a ‘Best Fit’ Murine Model 2022
- Endothelial cell heterogeneity drives angiogenesis in endometriosis: mechanisms and emerging organoid-based models 2026
- The NR2F2-HAND2 signaling axis regulates progesterone actions in the uterus at early pregnancy. 2023
Cited by (3)
- Endothelial cell heterogeneity drives angiogenesis in endometriosis: mechanisms and emerging organoid-based models 2026
- The NR2F2-HAND2 signaling axis regulates progesterone actions in the uterus at early pregnancy. 2023
- Endometriosis in the Mouse: Challenges and Progress Toward a ‘Best Fit’ Murine Model 2022
Source provenance
- europepmc
- last seen: 2026-09-07T06:12:11.729357+00:00
- pubmed
- last seen: 2026-05-13T22:21:42.008780+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