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首页> 外文期刊>Dermatologic surgery >In vivo perfusion of human skin substitutes with microvessels formed by adult circulating endothelial progenitor cells.
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In vivo perfusion of human skin substitutes with microvessels formed by adult circulating endothelial progenitor cells.

机译:人皮肤替代物的体内灌注由成年循环内皮祖细胞形成的微血管。

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摘要

BACKGROUND: At present, tissue-engineered human skin substitutes (HSSs) mainly function as temporary bioactive dressings due to inadequate perfusion. Failure to form functional vascular networks within the initial posttransplantation period compromises cell survival of the graft and its long-term viability in the wound bed. OBJECTIVES: Our goal was to demonstrate that adult circulating endothelial progenitor cells (EPCs) seeded onto HSS can form functional microvessels capable of graft neovascularization and perfusion. MATERIALS AND METHODS: Adult peripheral blood mononuclear cells (PBMCs) underwent CD34 selection and endothelial cell (EC) culture conditions. After in vitro expansion, flow cytometry verified EC phenotype before their incorporation into HSS. After 2 weeks in vivo, immunohistochemical analysis, immunofluorescent microscopy, and microfil polymer perfusion were performed. RESULTS: CD34+ PBMCs differentiated into EPC demonstrating characteristic EC morphology and expression of CD31, Tie-2, and E-selectin after TNFalpha-induction. Numerous human CD31 and Ulex europaeus agglutinin-1 (UEA-1) microvessels within the engineered grafts (HSS/EPCs) inosculated with recipient murine circulation. Limitation of murine CD31 immunoreactivity to HSS margins showed angiogenesis was attributable to human EPC at 2 weeks posttransplantation. Delivery of intravenous rhodamine-conjugated UEA-1 and microfil polymer to HSS/EPCs demonstrated enhanced perfusion by functional microvessels compared to HSS control without EPCs. CONCLUSION: We successfully engineered functional microvessels in HSS by incorporating adult circulating EPCs. This autologous EC source can form vascular conduits enabling perfusion and survival of human bioengineered tissues.
机译:背景:目前,由于灌注不足,组织工程化的人类皮肤替代品(HSS)主要用作临时的生物活性敷料。在移植后的最初阶段未能形成功能性血管网络会损害移植物的细胞存活及其在伤口床上的长期生存能力。目的:我们的目标是证明植入HSS的成人循环内皮祖细胞(EPC)可以形成能够移植新血管和灌注的功能性微血管。材料与方法:成人外周血单个核细胞(PBMC)经历CD34选择和内皮细胞(EC)培养条件。体外扩增后,流式细胞术验证了EC表型,然后将其纳入HSS。体内2周后,进行了免疫组织化学分析,免疫荧光显微镜检查和microfil聚合物灌注。结果:CD34 + PBMCs分化为EPC,表现出特征性的EC形态以及TNFα诱导后CD31,Tie-2和E-选择素的表达。工程移植物(HSS / EPC)中的许多人CD31和Ulex europaeus凝集素1(UEA-1)微血管都与受体鼠循环相结合。鼠CD31免疫反应性对HSS边缘的限制表明,血管生成可归因于移植后2周的人EPC。与没有EPC的HSS对照相比,静脉注射若丹明偶联的UEA-1和microfil聚合物向HSS / EPC的递送显示功能性微血管灌注增强。结论:我们通过结合成人循环EPCs成功地在HSS中设计了功能性微血管。这种自体EC来源可以形成血管导管,使人类生物工程组织的灌注和生存得以实现。

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