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首页> 外文期刊>Biomaterials >Guided sprouting from endothelial spheroids in fibrin gels aligned by magnetic fields and cell-induced gel compaction.
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Guided sprouting from endothelial spheroids in fibrin gels aligned by magnetic fields and cell-induced gel compaction.

机译:在磁场和细胞诱导的凝胶压实作用下,从纤维蛋白凝胶中的内皮球体引导出芽。

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摘要

An aligned engineered microvascular network is critical to the culture of thick or highly metabolic tissue in vitro due to the need for inlet and outlet sides for perfusion of the network. Contact guidance may be a way to achieve aligned networks, but the relationship between the alignment of endothelial sprouts and the alignment of extracellular matrix fibers has yet to be fully elucidated. The data presented here show that sprouts from human blood outgrowth endothelial cell spheroids align with fibrin fibrils, and that the extent to which the sprouts align depends upon the strength of the fibril alignment. This was true for both magnetically-aligned fibrin and fibrin aligned via cell-induced gel compaction, although magnetically-aligned fibrin was more effective over the same culture period. The data also demonstrate that longer sprouts are grown when the fibrils, and thus the sprouts, are more strongly aligned. The formation of aligned endothelial sprouts using these methods can be an essential step in the generation of aligned microvascular networks.
机译:对准的工程化微血管网络对于在体外培养厚的或高度代谢的组织至关重要,这是因为需要对网络的入口和出口侧进行灌注。接触指导可能是实现对齐网络的一种方法,但是内皮芽对齐与细胞外基质纤维对齐之间的关系尚未完全阐明。此处提供的数据表明,来自人类血液生长的内皮细胞球体的芽与纤维蛋白原纤维对齐,并且芽对齐的程度取决于原纤维对齐的强度。对于磁性排列的血纤蛋白和通过细胞诱导的凝胶压实排列的血纤维蛋白来说都是如此,尽管磁性排列的血纤蛋白在相同的培养期间更为有效。数据还表明,当原纤维和豆芽更紧密地排列在一起时,它们会长出更长的豆芽。使用这些方法形成对齐的内皮芽可能是对齐的微血管网络生成中必不可少的步骤。

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