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首页> 外文期刊>Biomaterials >Covalently immobilized gradients of bFGF on hydrogel scaffolds for directed cell migration.
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Covalently immobilized gradients of bFGF on hydrogel scaffolds for directed cell migration.

机译:bFGF在水凝胶支架上的共价固定梯度可用于定向细胞迁移。

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Basic fibroblast growth factor (bFGF) was immobilized to hydrogel scaffolds with retention of mitogenic and chemotactic activity. The bFGF was functionalized in order to incorporate it covalently within polyethylene glycol (PEG) hydrogel scaffolds by reaction with acryloyl-PEG-NHS. Hydrogels were formed by exposing aqueous solutions of PEG diacrylate, acryloyl-PEG-RGDS, and acryloyl-PEG-bFGF to long-wavelength ultraviolet light in the presence of a photoinitiator. These bFGF-modified hydrogels with RGD adhesion sites were evaluated for their effect on vascular smooth muscle cell (SMC) behavior, increasing SMC proliferation by approximately 41% and migration by approximately 15%. A covalently immobilized bFGF gradient was formed using a gradient maker to pour the hydrogel precursor solutions and then photopolymerizing to lock in the concentration gradient. Silver staining was used to detect the bFGF gradient, which increased linearly along the hydrogel's length. Cells were observed to align on hydrogelsmodified with a bFGF gradient in the direction of increasing tethered bFGF concentration as early as 24h after seeding. SMCs also migrated differentially, up the concentration gradient, on bFGF-gradient hydrogels compared to control hydrogels with and without a constant bFGF concentration. These hydrogel scaffolds may be useful for studying protein gradient effects on cell behavior and for directing cell migration in tissue-engineering applications.
机译:将碱性成纤维细胞生长因子(bFGF)固定在水凝胶支架上,并保持有丝分裂和趋化活性。通过与丙烯酰基-PEG-NHS反应,将bFGF进行功能化处理,以便将其共价结合到聚乙二醇(PEG)水凝胶支架中。通过在光引发剂的存在下将PEG二丙烯酸酯,丙烯酰基-PEG-RGDS和丙烯酰基-PEG-bFGF的水溶液暴露于长波长紫外光中来形成水凝胶。评估这些具有RGD附着位点的bFGF修饰水凝胶对血管平滑肌细胞(SMC)行为的影响,将SMC增殖增加约41%,并将迁移增加约15%。共价固定的bFGF梯度是使用梯度生成器倒入水凝胶前体溶液形成的,然后进行光聚合以锁定浓度梯度。银染用于检测bFGF梯度,该梯度沿水凝胶的长度呈线性增加。观察到细胞早在接种后24小时就在以bFGF梯度修饰的水凝胶上沿束缚的bFGF浓度增加的方向排列。与具有和没有恒定bFGF浓度的对照水凝胶相比,SMC在bFGF梯度水凝胶上的迁移也沿浓度梯度上升。这些水凝胶支架可用于研究蛋白质梯度对细胞行为的影响以及在组织工程应用中指导细胞迁​​移。

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