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人脐带间充质干细胞外泌体诱导单核细胞/巨噬细胞动员,以协调放射性损伤后伤口愈合过程中的新血管形成。

HuMSC-EV induce monocyte/macrophage mobilization to orchestrate neovascularization in wound healing process following radiation injury.

作者信息

Loinard Céline, Ribault Alexandre, Lhomme Bruno, Benderitter Marc, Flamant Stéphane, Paul Sandrine, Dubois Valérie, Lai Ruenn Chai, Lim Sai Kiang, Tamarat Radia

机构信息

Céline Loinard, Alexandre Ribault, Bruno Lhomme, Marc Benderitter, Stéphane Flamant, and Radia Tamarat, Institut de Radioprotection et de Sûreté Nucléaire (IRSN), PSE-SANTE, Fontenay-aux-Roses, France.

Sandrine Paul & Valérie Dubois, EFS Auvergne Rhône Alpes, laboratoire HLA, 111, rue Elisée-Reclus, Lyon, 69150, Décines, France.

出版信息

Cell Death Discov. 2023 Feb 1;9(1):38. doi: 10.1038/s41420-023-01335-y.

Abstract

This study aims to investigate the mechanisms of human mesenchymal stem cell-derived extracellular vesicles (HuMSC-EV)-induced proangiogenic paracrine effects after radiation injury. HuMSC-EV were locally administered in mice hindlimb following 80-Gy X-ray irradiation and animals were monitored at different time points. HuMSC-EV improved neovascularization of the irradiated tissue, by stimulating angiogenesis, normalizing cutaneous blood perfusion, and increasing capillary density and production of proangiogenic factors. HuMSC-EV also stimulated vasculogenesis by promoting the recruitment and differentiation of bone marrow progenitors. Moreover, HuMSC-EV improved arteriogenesis by increasing the mobilization of monocytes from the spleen and the bone marrow and their recruitment into the muscle, with a pro-inflammatory potential. Importantly, monocyte depletion by clodronate treatment abolished the proangiogenic effect of HuMSC-EV. The critical role of Ly6C(hi) monocyte subset in HuMSC-EV-induced neovascularization process was further confirmed using Ccr2 mice. This study demonstrates that HuMSC-derived EV enhances the neovascularization process in the irradiated tissue by increasing the production of proangiogenic factors, promoting the recruitment of vascular progenitor cells, and the mobilization of innate cells to the injured site. These results support the concept that HuMSC-EV might represent a suitable alternative to stem cells for therapeutic neovascularization in tissue repair.

摘要

本研究旨在探讨人骨髓间充质干细胞衍生的细胞外囊泡(HuMSC-EV)在辐射损伤后诱导促血管生成旁分泌作用的机制。在80 Gy X射线照射后,将HuMSC-EV局部注射到小鼠后肢,并在不同时间点对动物进行监测。HuMSC-EV通过刺激血管生成、使皮肤血液灌注正常化、增加毛细血管密度和促血管生成因子的产生,改善了受照射组织的新血管形成。HuMSC-EV还通过促进骨髓祖细胞的募集和分化来刺激血管发生。此外,HuMSC-EV通过增加单核细胞从脾脏和骨髓的动员及其向肌肉的募集来改善动脉生成,具有促炎潜力。重要的是,用氯膦酸盐处理清除单核细胞消除了HuMSC-EV的促血管生成作用。使用Ccr2小鼠进一步证实了Ly6C(hi)单核细胞亚群在HuMSC-EV诱导的新血管形成过程中的关键作用。本研究表明,HuMSC衍生的EV通过增加促血管生成因子的产生、促进血管祖细胞的募集以及先天细胞向损伤部位的动员,增强了受照射组织中的新血管形成过程。这些结果支持了HuMSC-EV可能代表干细胞在组织修复中用于治疗性新血管形成的合适替代物这一概念。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3842/9892506/2ca19e47e0de/41420_2023_1335_Fig1_HTML.jpg

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