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首页> 外文期刊>BioMed research international >Patterning of Endothelial Cells and Mesenchymal Stem Cells by Laser-Assisted Bioprinting to Study Cell Migration
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Patterning of Endothelial Cells and Mesenchymal Stem Cells by Laser-Assisted Bioprinting to Study Cell Migration

机译:通过激光辅助生物制版在研究细胞迁移中划分内皮细胞和间充质干细胞

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摘要

Tissue engineering of large organs is currently limited by the lack of potent vascularization in vitro. Tissue-engineered bone grafts can be prevascularized in vitro using endothelial cells (ECs). The microvascular network architecture could be controlled by printing ECs following a specific pattern. Using laser-assisted bioprinting, we investigated the effect of distance between printed cell islets and the influence of coprinted mesenchymal cells on migration. When printed alone, ECs spread out evenly on the collagen hydrogel, regardless of the distance between cell islets. However, when printed in coculture with mesenchymal cells by laser-assisted bioprinting, they remained in the printed area. Therefore, the presence of mesenchymal cell is mandatory in order to create a pattern that will be conserved over time. This work describes an interesting approach to study cell migration that could be reproduced to study the effect of trophic factors.
机译:大型器官的组织工程目前受到体外缺乏有效的血管化的限制。 组织工程骨移植物可以使用内皮细胞(ECS)在体外引发体外。 可以通过在特定模式之后通过印刷ECS来控制微血管网络架构。 采用激光辅助生物化物,我们研究了印刷细胞胰岛胰岛之间距离的差异及其在迁移对繁殖中的影响。 单独打印时,无论细胞均值之间的距离如何,ECS在胶原水凝胶上均匀地展开。 然而,当通过激光辅助的生物印刷制品用间充质细胞印刷在共培养物中,它们仍然存在于印刷区域。 因此,强制性细胞的存在是强制性的,以产生随时间保守的模式。 这项工作描述了一种有趣的方法来研究可以再现的细胞迁移,以研究营养因素的影响。

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