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Development of an angiogenesis-promoting microvesicle-alginate-polycaprolactone composite graft for bone tissue engineering applications

机译:骨组织工程应用中促进血管新生的微囊藻酸盐-聚己内酯复合移植物的研制

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摘要

One of the major challenges of bone tissue engineering applications is to construct a fully vascularized implant that can adapt to hypoxic environments in vivo. The incorporation of proangiogenic factors into scaffolds is a widely accepted method of achieving this goal. Recently, the proangiogenic potential of mesenchymal stem cell-derived microvesicles (MSC-MVs) has been confirmed in several studies. In the present study, we incorporated MSC-MVs into alginate-polycaprolactone (PCL) constructs that had previously been developed for bone tissue engineering applications, with the aim of promoting angiogenesis and bone regeneration. MSC-MVs were first isolated from the supernatant of rat bone marrow-derived MSCs and characterized by scanning electron microscopic, confocal microscopic, and flow cytometric analyses. The proangiogenic potential of MSC-MVs was demonstrated by the stimulation of tube formation of human umbilical vein endothelial cells in vitro. MSC-MVs and osteodifferentiated MSCs were then encapsulated with alginate and seeded onto porous three-dimensional printed PCL scaffolds. When combined with osteodifferentiated MSCs, the MV-alginate-PCL constructs enhanced vessel formation and tissue-engineered bone regeneration in a nude mouse subcutaneous bone formation model, as demonstrated by micro-computed tomographic, histological, and immunohistochemical analyses. This MV-alginate-PCL construct may offer a novel, proangiogenic, and cost-effective option for bone tissue engineering.
机译:骨组织工程应用的主要挑战之一是构造一种能够在体内适应低氧环境的完全血管化植入物。将促血管生成因子掺入支架是实现该目标的一种广泛接受的方法。最近,在几项研究中证实了间充质干细胞来源的微囊泡(MSC-MVs)的促血管生成潜力。在本研究中,我们将MSC-MVs掺入藻酸盐-聚己内酯(PCL)结构中,该结构先前已开发用于骨组织工程应用,目的是促进血管生成和骨再生。首先从大鼠骨髓来源的MSC的上清液中分离出MSC-MV,并通过扫描电子显微镜,共聚焦显微镜和流式细胞仪进行分析。 MSC-MVs的促血管生成潜力通过体外刺激人脐静脉内皮细胞的管形成来证明。然后将MSC-MV和骨分化的MSC用藻酸盐包封,并接种到多孔的三维印刷PCL支架上。 MV-藻酸盐-PCL与骨分化型MSC结合后,可在裸鼠皮下骨形成模型中增强血管形成和组织工程化的骨再生,这已通过显微计算机断层扫描,组织学和免疫组织化学分析证明。此MV-藻酸盐-PCL构建体可为骨组织工程提供新颖,促血管生成和经济高效的选择。

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