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首页> 外文期刊>Biomaterials >The effect of human osteoblasts on proliferation and neo-vessel formation of human umbilical vein endothelial cells in a long-term 3D co-culture on polyurethane scaffolds.
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The effect of human osteoblasts on proliferation and neo-vessel formation of human umbilical vein endothelial cells in a long-term 3D co-culture on polyurethane scaffolds.

机译:在聚氨酯支架上进行长期3D共培养时,人成骨细胞对人脐静脉内皮细胞增殖和新血管形成的影响。

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Angiogenesis is a key element in early wound healing and is considered important for tissue regeneration and for directing inflammatory cells to the wound site. The improvement of vascularization by implementation of endothelial cells or angiogenic growth factors may represent a key solution for engineering bone constructs of large size. In this study, we describe a long-term culture environment that supports the survival, proliferation, and in vitro vasculogenesis of human umbilical vein endothelial cells (HUVEC). This condition can be achieved in a co-culture model of HUVEC and primary human osteoblasts (hOB) employing polyurethane scaffolds and platelet-rich plasma in a static microenvironment. We clearly show that hOB support cell proliferation and spontaneous formation of multiple tube-like structures by HUVEC that were positive for the endothelial cell markers CD31 and vWF. In contrast, in a monoculture, most HUVEC neither proliferated nor formed any apparent vessel-like structures. Immunohistochemistry and quantitative PCR analyses of gene expression revealed that cell differentiation of hOB and HUVEC was stable in long-term co-culture. The three-dimensional, FCS-free co-culture system could provide a new basis for the development of complex tissue engineered constructs with a high regeneration and vascularization capacity.
机译:血管生成是伤口早期愈合的关键因素,被认为对于组织再生和将炎性细胞引导至伤口部位很重要。通过实施内皮细胞或血管生成生长因子改善血管形成可能代表了工程化大尺寸骨构造的关键解决方案。在这项研究中,我们描述了支持人脐静脉内皮细胞(HUVEC)存活,增殖和体外血管生成的长期培养环境。此条件可以在HUVEC和人类原代成骨细胞(hOB)的共培养模型中实现,该模型在静态微环境中使用聚氨酯支架和富含血小板的血浆。我们清楚地表明,hOB支持细胞增殖和HUVEC自发形成多个管状结构,内皮细胞标记CD31和vWF呈阳性。相反,在单培养中,大多数HUVEC既不增殖也不形成任何明显的容器样结构。基因表达的免疫组织化学和定量PCR分析表明,hOB和HUVEC的细胞分化在长期共培养中是稳定的。三维,无FCS的共培养系统可以为开发具有高再生能力和血管生成能力的复杂组织工程构建体提供新的基础。

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