Angiogenic properties of endometrial mesenchymal stromal cells in endothelial co-culture: an in vitro model of endometriosis
Endometrial mesenchymal stromal cells acquired endothelial markers and integrated into tube-like structures when co-cultured with HUVECs, demonstrating angiogenic potential affected by anti-angiogenic agents.
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Cited by (15)
- Endometriosis: A Cancer-Like Phenomenon 2026
- The Molecular and Cellular Mechanisms of Endometriosis: From Basic Pathophysiology to Clinical Implications 2025
- Unraveling the significance of AGPAT4 for the pathogenesis of endometriosis via a multi-omics approach 2024
- The long road of drug development for endometriosis - Pains, gains, and hopes 2024
- Quinagolide Treatment Reduces Invasive and Angiogenic Properties of Endometrial Mesenchymal Stromal Cells 2022
- Endometrial Stem Cells and Endometriosis 2022
- Cabergoline Stimulates Human Endometrial Stromal Cell Decidualization and Reverses Effects of Interleukin-1β In Vitro 2021
- The role of endometrial stem cells in the pathogenesis of endometriosis and their application to its early diagnosis† 2020
- Endometriosis: current challenges in modeling a multifactorial disease of unknown etiology 2020
- In‑vitro models of human endometriosis (Review) 2019
- Analysis of key candidate genes and pathways of endometriosis pathophysiology by a genomics-bioinformatics approach 2019
- Anti‐Angiogenic Alternative and Complementary Medicines for the Treatment of Endometriosis: A Review of Potential Molecular Mechanisms 2018
- Endometrial stem/progenitor cells and their role in the pathogenesis of endometriosis 2018
- Chronic Niche Inflammation in Endometriosis-Associated Infertility: Current Understanding and Future Therapeutic Strategies 2018
- Adult Stem Cells in the Pathogenesis and Treatment of Endometriosis 2017
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