首页> 外文期刊>Tissue engineering, Part A >Micron-scale spatially patterned, covalently immobilized vascular endothelial growth factor on hydrogels accelerates endothelial tubulogenesis and increases cellular angiogenic responses.
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Micron-scale spatially patterned, covalently immobilized vascular endothelial growth factor on hydrogels accelerates endothelial tubulogenesis and increases cellular angiogenic responses.

机译:水凝胶中的微米级空间图案化,共价固定的固定化血管内皮生长因子加速内皮小管发生并增加了细胞血管生成反应。

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摘要

Spontaneous formation of endothelial tubules was restricted to patterned micron-scale regions presenting cell adhesion ligands and angiogenic signaling protein on poly(ethylene glycol) hydrogels. Arginine-glycine-aspartic acid-serine (RGDS), an integrin ligand, and vascular endothelial growth factor (VEGF), a rate-limiting signaling protein involved in angiogenesis, were covalently bound through photopolymerization via laser scanning lithography to the surface of poly(ethylene glycol) hydrogels in patterned micron-scale regions. Endothelial cells cultured in this restricted environment underwent accelerated tubulogenesis, forming endothelial tubes within 2 days, whereas cells cultured on larger patterned areas remained spread and did not form tubules by day 2. Tubules formed in 2 days on RGDS and VEGF patterns were observed to possess lumens; however, tubule-like structures formed in 2 days on RGDS-only control patterns did not have observable lumens. Additionally, tubules that formed on restricted areas of RGDS and VEGF expressed more VEGF receptor 1, VEGF receptor 2, and ephA7 surface markers, in addition to higher expression of laminin, than cells remaining spread on wide patterned lines. This work reports spatial control and acceleration of endothelial tubule formation using biocompatible hydrogel materials to allow the formation of highly organized vascularized tissues.
机译:内皮小管的自发形成限于呈现细胞粘合配体和聚(乙二醇)水凝胶上的细胞粘合配体和血管生成信号蛋白的图案化微分区域。精氨酸 - 甘氨酸 - 天冬氨酸 - 丝氨酸(RGDS),整联蛋白配体和血管内皮生长因子(VEGF),通过激光扫描光刻与聚(乙二醇中乙二醇中的微米尺度区域水凝胶。在该受限制的环境中培养的内皮细胞接受加速小管发生,在2天内形成内皮管,而在较大图案区域培养的细胞仍然蔓延,并且在第2天延伸并没有形成小管。观察到在RGDS和VEGF图案上形成的小管。流明;然而,在RGDS的控制模式上在2天内形成的小管状结构没有可观察的流明。另外,除了在宽宽图案线上剩余的细胞外,除了RGDS和VEGF的受限区域上形成的小型VEGF受体1,VEGF受体2和EphA7表面标志物。该工作报告使用生物相容性水凝胶材料的空间控制和加速内皮小管形成,以允许形成高度有组织的血管化组织。

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