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Integration of blood outgrowth endothelial cells in dermal fibroblast sheets promotes full thickness wound healing.

机译:真皮外成纤维细胞片中血液生长内皮细胞的整合促进了伤口的完全愈合。

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Vascularization is the cornerstone of wound healing. We introduced human blood outgrowth endothelial cells (hBOEC) in a self-assembled human dermal fibroblast sheet (hDFS), intended as a tissue-engineered dermal substitute with inherent vascular potential. hBOEC were functionally and molecularly different from early endothelial progenitor cells and human umbilical vein endothelial cells (HUVEC). hBOEC alone, unlike HUVEC, efficiently revascularized and re-oxygenated the wound bed, both by active incorporation into new vessels and by trophic stimulation of host angiogenesis in a dose-dependent manner. Furthermore, hBOEC alone, but not HUVEC, accelerated epithelial coverage and matrix organization of the wound bed. In addition, integration of hBOEC in hDFS not only further improved vascularization, epithelial coverage and matrix organization but also prevented excessive wound contraction. In vitro analyses with hBOEC, fibroblasts and keratinocytes revealed that these effects were both due to growth factor crosstalk and to short cutting hypoxia. Among multiple growth factors secreted by hBOEC, placental growth factor mediated at least in part the beneficial effects on keratinocyte migration and proliferation. Overall, this combined tissue engineering approach paves the way for clinical development of a fully autologous vascularized dermal substitute for patients with large skin defects that do not heal properly.
机译:血管化是伤口愈合的基石。我们在自组装的人类真皮成纤维细胞片(hDFS)中引入了人类血液生长内皮细胞(hBOEC),旨在用作具有固有血管潜力的组织工程真皮替代品。 hBOEC在功能和分子上与早期内皮祖细胞和人脐静脉内皮细胞(HUVEC)不同。与HUVEC不同,单独的hBOEC可以通过主动掺入新血管并通过营养性刺激宿主血管生成(剂量依赖性)有效地对创面床进行血运重建和再充氧。此外,仅hBOEC(而非HUVEC)可加速伤口床的上皮覆盖和基质组织。此外,hBOEC在hDFS中的整合不仅进一步改善了血管形成,上皮覆盖和基质组织,还防止了伤口过度收缩。用hBOEC,成纤维细胞和角质形成细胞进行的体外分析表明,这些作用都是由于生长因子串扰和短时缺氧引起的。在hBOEC分泌的多种生长因子中,胎盘生长因子至少部分介导了对角质形成细胞迁移和增殖的有益作用。总体而言,这种组合的组织工程方法为完全自体血管化真皮替代品的临床开发铺平了道路,该替代品可用于皮肤大缺陷且无法正常愈合的患者。

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