首页> 外文期刊>Journal of biomedical materials research, Part A >Efficiency of coculture with angiogenic cells or physiological BMP-2 administration on improving osteogenic differentiation and bone formation of MSCs
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Efficiency of coculture with angiogenic cells or physiological BMP-2 administration on improving osteogenic differentiation and bone formation of MSCs

机译:与血管生成细胞或生理BMP-2施用效率提高血管生成细胞和骨形成的骨形成和MSCs的骨形成

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Cell-based bone regeneration with mesenchymal stem cells (MSCs) represents the current challenge toward repair of bone defects and fractures. The supposed hurdles for satisfactory performance of cell-based constructs include inadequate vascularization and osteogenic signals. Considering the reported beneficial role of angiogenic cells in promoting vascularization and osteogenic differentiation and the osteogenic potential of bone morphogenetic protein 2 (BMP-2), we here evaluated the efficiency of coculture with angiogenic cells or a physiological dose of BMP-2 on improving osteogenic differentiation of MSCs and bone formation in vivo. In three dimensional (3D) collagen hydrogels in vitro, cocultured human umbilical vein endothelial cells (HUVECs) in a 1:1 ratio or with a physiological dose of BMP-2 (2 ng/L) promoted the osteogenic potential of MSCs evidenced by enhanced alkaline phosphatase activity and gene expression of osteogenic markers. Notably, HUVECs evoked similar osteogenic stimulation as BMP-2, albeit in a delayed manner. When their bone formation capacity was further evaluated in a mouse subcutaneous implantation model, MSCs with BMP-2 demonstrated the highest efficiency with reproducible bone formation. In contrast, MSCs cocultured with HUVECs constructs displayed substantial blood vessel-like structures with fibrous tissue rather than ectopic bone as MSC monoculture controls. Our findings confirm the priority of generating cell-based bone constructs with physiological BMP-2 administration and indicate the potential of using angiogenic cells to develop vascularized constructs. (c) 2018 Wiley Periodicals, Inc. J Biomed Mater Res Part A: 107A: 643-653, 2019.
机译:具有间充质干细胞(MSCs)的基于细胞的骨再生代表了对骨缺损和骨折修复的当前攻击。所谓的基于细胞构建体的令人满意的障碍包括血管化和骨质发生信号不足。考虑到血管生成细胞在促进血管形成和骨质发生分化中的有益作用和骨形态发生蛋白2(BMP-2)的骨骨质发生潜力,我们在这里评估了与血管生成细胞或生理剂量的BMP-2对改善成骨产生的生理剂量的效率体内MSCs和骨形成的分化。在三维(3D)胶原蛋白水凝胶中,在1:1的比例或用生理剂量的BMP-2(2ng / L)的比例或生理剂量促进了通过增强的MSC的稳定性潜力碱性磷酸酶活性和骨质原子油标志物的基因表达。值得注意的是,HUVECS唤起与BMP-2相似的成骨刺激,尽管以延迟的方式。当在小鼠皮下植入模型中进一步评估它们的骨形成容量时,具有BMP-2的MSCs展示了可重复的骨形成的最高效率。相比之下,通过Huvecs与Huvecs构建的MSCS显示出具有纤维组织的大量血管样结构,而不是异位骨作为MSC单一栽培对照。我们的研究结果证实了用生理BMP-2给药产生基于细胞的骨构建体的优先级,并指示使用血管生成细胞发展血管化构建体的潜力。 (c)2018年Wiley期刊,Inc。J生物保罗第一部分:107A:643-653,2019。

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