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外源性骨髓来源的拟血管内皮祖细胞通过周细胞依赖途径减轻小鼠缺血再灌注诱导的血管损伤和肾纤维化。

Exogenous bone marrow derived-putative endothelial progenitor cells attenuate ischemia reperfusion-induced vascular injury and renal fibrosis in mice dependent on pericytes.

机构信息

Nephrology, Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology, 1095 Jiefang Ave, Wuhan, Hubei, 430030, China.

Geriatrics, Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology, 1095 Jiefang Ave, Wuhan, Hubei, 430030, China.

出版信息

Theranostics. 2020 Oct 25;10(26):12144-12157. doi: 10.7150/thno.48562. eCollection 2020.

Abstract

Capillaries are composed of endothelial cells and the surrounding mural cells, pericytes. Microvascular repair after injury involves not only the proliferation of endothelial cells but also pericyte-based vessel stabilization. Exogenous bone marrow derived-putative endothelial progenitor cells (b-pEPCs) have the potential for vascular repair; however, their effect on vascular structure stabilization and pericyte-related pathobiological outcomes in the injured kidney has not been fully examined. We applied ischemia-reperfusion (IR) to induce renal vascular injury and renal fibrosis in mice. Platelet-derived growth factor receptor β (PDGFR-β)-DTR-positive mice were generated to deplete pericytes, and exogenous b-pEPCs and the PDGFR-β ligand, PDGF chain B (PDGF-BB), were employed to explore the relationship among b-pEPCs, pericytes, vascular repair, and early renal fibrosis. Administration of b-pEPCs reduced IR-induced pericyte-endothelial detachment, pericyte proliferation, and myofibroblast transition via a paracrine mode, which preserved not only vascular stabilization but also ameliorated IR-initiated renal fibrosis. PDGF-BB upregulated the expression of PDGFR-β, exacerbated vascular abnormality, and pericyte-myofibroblast transition, which were ameliorated by b-pEPCs administration. The exogenous b-pEPCs and their culture medium (CM) induced vascular injury protection, and renal fibrosis was blocked by selective deletion of pericytes. Exogenous b-pEPCs directly protect against IR-induced vascular injury and prevent renal fibrosis by inhibiting the activation of PDGFR-β-positive pericytes.

摘要

毛细血管由内皮细胞和周围的壁细胞(周细胞)组成。损伤后的微血管修复不仅涉及内皮细胞的增殖,还涉及周细胞介导的血管稳定。外源性骨髓来源的假定内皮祖细胞(b-pEPC)具有血管修复的潜力;然而,其对损伤肾脏中血管结构稳定和与周细胞相关的病理生物学结局的影响尚未被充分研究。我们应用缺血再灌注(IR)诱导小鼠肾脏血管损伤和纤维化。生成血小板衍生生长因子受体β(PDGFR-β)-DTR 阳性小鼠以耗竭周细胞,并应用外源性 b-pEPC 和 PDGFR-β配体 PDGF 链 B(PDGF-BB)来探索 b-pEPC、周细胞、血管修复和早期肾脏纤维化之间的关系。b-pEPC 的给药通过旁分泌方式减少了 IR 诱导的周细胞-内皮细胞分离、周细胞增殖和肌成纤维细胞转化,不仅保留了血管稳定,还改善了 IR 引发的肾脏纤维化。PDGF-BB 上调了 PDGFR-β 的表达,加剧了血管异常和周细胞-肌成纤维细胞转化,而 b-pEPC 的给药改善了这些异常。外源性 b-pEPC 及其培养基(CM)诱导了血管损伤保护,选择性敲除周细胞可阻断肾脏纤维化。外源性 b-pEPC 可直接通过抑制 PDGFR-β 阳性周细胞的激活来对抗 IR 诱导的血管损伤并预防肾脏纤维化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc05/7667688/893382ee0a16/thnov10p12144g001.jpg

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