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首页> 外文期刊>Stem Cell Research & Therapy >Exosomes secreted by endothelial progenitor cells accelerate bone regeneration during distraction osteogenesis by stimulating angiogenesis
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Exosomes secreted by endothelial progenitor cells accelerate bone regeneration during distraction osteogenesis by stimulating angiogenesis

机译:通过刺激血管生成,通过内皮祖细胞分泌的外科祖细胞分泌的骨再生加速骨再生

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摘要

Distraction osteogenesis (DO) is an effective but lengthy procedure to fully induce bone regeneration in large bone defects. Accumulating evidence supports the role of exosomes secreted by endothelial progenitor cells (EPC-Exos) in stimulating angiogenesis, which is closely coupled with osteogenesis. This study aimed to investigate whether EPC-Exos promote bone regeneration during DO in rats. Exosomes were isolated from the supernatants of rat bone marrow EPCs via ultracentrifugation and characterized via transmission electron microscopy, tunable resistive pulse sensing analysis, and western blot analysis. Unilateral tibial DO models were generated using 68 Sprague-Dawley rats with a distraction rate of 0.5?mm per day for 10?days. After local injection of EPC-Exos into the distraction gaps after distraction, the therapeutic effects of EPC-Exos on bone regeneration and angiogenesis were assessed via X-ray, micro-computed tomography?(micro-CT), and biomechanical and histological analyses. Pro-angiogenic effects and the potential mechanism underlying the effects of EPC-Exos on human umbilical vein endothelial cells were subsequently evaluated via in vitro assays including Cell Counting Kit-8, wound healing, tube formation, and western blot assays. EPC-Exos were spherical or cup-shaped vesicles ranging from 50 to 150?nm in diameter and expressed markers including CD9, Alix, and TSG101. X-ray, micro-CT, and histological analyses revealed that bone regeneration was markedly accelerated in rats treated with EPC-Exos. The distracted tibias from the Exos group also displayed enhanced mechanical properties. Moreover, vessel density was higher in the Exos group than in the control group. In addition, in vitro analyses revealed that EPC-Exos enhanced the proliferation, migration, and angiogenic capacity of endothelial cells in an miR-126-dependent manner. Further, EPC-Exos downregulated SPRED1 and activated Raf/ERK signaling. The present results show that EPC-Exos accelerate bone regeneration during DO by stimulating angiogenesis, suggesting their use as a novel method to shorten the treatment duration of DO.
机译:牵引骨发生(DO)是一种有效但冗长的程序,可以在大骨缺陷中完全诱导骨再生。积累证据支持外皮祖细胞(EPC-EXOS)分泌的外来体在刺激血管生成中的作用,其与骨质发生密切联系。本研究旨在调查EPC-EXOS是否促进大鼠治疗期间的骨再生。通过超速离心从大鼠骨髓EPC的上清液中分离出外泌体,并通过透射电子显微镜,可调电阻脉冲感测分析和Western印迹分析。使用68 Sprague-Dawley大鼠产生单方面的胫骨DO模型,每天分散率为0.5Ωmm,10?天。在分心后局部注射EPC-EXOS进入分散仪间隙后,通过X射线,微计算机断层扫描(微型CT)和生物力学和组织学分析评估EPC-EXOS对骨再生和血管生成的治疗效果。通过体外测定,包括细胞计数试剂盒-8,伤口愈合,管形成和Western印迹测定,随后通过体外测定评估促血管生成效应和潜在机制。 EPC-EXOS是球形或杯形囊泡,其直径为50至150μm,表达标记物,包括CD9,ALIX和TSG101。 X射线,微CT和组织学分析显示,在用EPC-EXOS处理的大鼠中显着加速骨再生。来自EXOS组的分散的胫骨也显示出增强的机械性能。此外,EXOS组的血管密度高于对照组。此外,体外分析表明,EPC-EXOS以miR-126依赖性方式增强了内皮细胞的增殖,迁移和血管生成能力。此外,EPC-EXOS下调的SPRED1和活化的RAF / ERK信号传导。本结果表明,EPC-EXOS通过刺激血管生成期间加速骨再生,表明它们用作缩短治疗持续时间的新方法。

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