Exosomes of endothelial progenitor cells repair injured vascular endothelial cells through the Bcl2/Bax/Caspase-3 pathway
Wei Tan, Yanling Li, Lu Ma, Xinying Fu, Qingyin Long, Fanchen Yan, Wanyu Li, Xiaodan Liu, Huang Ding, Yang Wang, Wei Zhang

TL;DR
Exosomes from endothelial progenitor cells help repair damaged blood vessels in rats by reducing inflammation and preventing cell death.
Contribution
This study reveals that EPC-derived exosomes repair vascular injury via the Bcl2/Bax/Caspase-3 pathway, offering a novel therapeutic approach.
Findings
EPC-Exo inhibit neointima formation and reduce inflammatory markers like TNF-α and IL-6 in injured arteries.
EPC-Exo promote endothelial cell proliferation, migration, and tube formation while reducing apoptosis via the Bcl2/Bax/Caspase-3 pathway.
Exosomes adhere to injured vascular areas, enhancing endothelial function and suppressing hyperplasia.
Abstract
The main objective of this study is to evaluate the influence of exosomes derived from endothelial progenitor cells (EPC-Exo) on neointimal formation induced by balloon injury in rats. Furthermore, the study aims to investigate the potential of EPC-Exo to promote proliferation, migration, and anti-apoptotic effects of vascular endothelial cells (VECs) in vitro. The underlying mechanisms responsible for these observed effects will also be thoroughly explored and analyzed. Endothelial progenitor cells (EPCs) was isolated aseptically from Sprague–Dawley (SD) rats and cultured in complete medium. The cells were then identified using immunofluorescence and flow cytometry. The EPC-Exo were isolated and confirmed the identities by western-blot, transmission electron microscope, and nanoparticle analysis. The effects of EPC-Exo on the rat carotid artery balloon injury (BI) were detected by…
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Taxonomy
TopicsMetallurgical Processes and Thermodynamics · Material Properties and Applications · Diverse Industrial Engineering Technologies
