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Controlling cell adhesion to surfaces via associating bioactive triblock proteins.

机译:通过结合生物活性三嵌段蛋白控制细胞对表面的粘附。

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A surface functionalization strategy that produces substrates with well-controlled ligand density is critical to investigating the role of cell-substrate interactions in regulating cell adhesion, viability, migration, proliferation and differentiation. Towards this end, we have designed and synthesized a triblock protein, CRC, comprising a polyelectrolyte domain flanked by two amphiphilic leucine zipper domains. The amphiphilic end domains of CRC adsorb onto surfaces and preferentially associate into trimeric aggregates, forming a hydrogel coating layer. Under serum-free conditions, the CRC coating was found to render both 2D substrates and 3D scaffolds non-adhesive to cells. A RGDS sequence was inserted in the middle domain of CRC (generating the protein CRC-RGDS) and found to introduce cell-binding activity. Incorporation of the RGDS sequence did not significantly impact the surface activity of CRC, allowing us to titrate the RGDS surface density simply by adjusting the relative ratios of the two proteins. Ligand density dependent cell-substrate interactions were demonstrated in human foreskin fibroblasts, human umbilical vein endothelial cells, and rat neural stem cells. The versatility to functionalize a range of different substrate surfaces, combined with the ease of controlling surface ligand density, makes these triblock proteins an attractive tool for developing cell-specific surface coatings with tailored biofunctional attributes.
机译:产生具有良好控制的配体密度的底物的表面功能化策略对于研究细胞-底物相互作用在调节细胞粘附,生存力,迁移,增殖和分化中的作用至关重要。为此,我们设计并合成了三嵌段蛋白CRC,它包含一个侧接两个两性亮氨酸拉链结构域的聚电解质结构域。 CRC的两亲末端结构域吸附到表面上并优先缔合为三聚体聚集体,从而形成水凝胶涂层。在无血清条件下,发现CRC涂层使2D底物和3D支架均不粘附细胞。将RGDS序列插入CRC的中间结构域(生成蛋白质CRC-RGDS),并发现其引入了细胞结合活性。 RGDS序列的并入不会显着影响CRC的表面活性,这使我们能够简单地通过调节两种蛋白质的相对比例来滴定RGDS的表面密度。在人包皮成纤维细胞,人脐静脉内皮细胞和大鼠神经干细胞中证实了配体密度依赖性细胞-底物的相互作用。这些三嵌段蛋白具有使多种不同底物表面功能化的多功能性,以及易于控制的表面配体密度,使其成为开发具有定制生物功能属性的细胞特异性表面涂层的诱人工具。

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