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Surface Modification of Cell Scaffold in Aqueous Solution Using TiO2 Photocatalysis and Linker Protein L2 for Patterning Primary Neurons

机译:TiO2光催化和接头蛋白L2在水溶液中修饰细胞骨架的表面初级神经元的模式

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Titanium dioxide (TiO2) photocatalysis can be applied to pattern proteins and cells under aqueous solution. In this work, we extended the application of this technique to patterning primary neurons, a type of cell with relatively weak adhesibility. For this purpose, we employed ribosomal protein L2 (RPL2) that has high affinity toward silica and metal oxides, including TiO2, to stably bind a neuronal adhesion protein laminin to the TiO2 surface. We utilized two types of molecular recognition to achieve this—binding of anti-laminin antibody to its antigen (laminin) and binding of protein A to the antibody. We show that a protein complex consisting of laminin/anti-laminin antibody/protein A-RPL2 is spontaneously formed by simply mixing the precursor proteins in solution phase. We then show that the surface coated with the protein complex supports stable growth of rat hippocampal neurons. Finally, we show that the cells can be selectively grown on the protein complex patterned with the TiO2-assisted method. The protocol established in this work is a unique combination of a top-down micropatterning of the surface using TiO2 photocatalysis and a bottom-up self-assembly of biomolecules, which can be further applied to pattern a wide range of proteins and cells. [DOI: 10.1380/ejssnt.2015.213]
机译:二氧化钛(TiO2)光催化可用于在水溶液中使蛋白质和细胞产生图案。在这项工作中,我们将这项技术的应用扩展到了对原代神经元的模式化,这是一种具有相对较弱的粘附性的细胞。为此,我们使用了对二氧化硅和包括TiO2在内的金属氧化物具有高亲和力的核糖体蛋白L2(RPL2),以将神经元粘附蛋白层粘连蛋白稳定地结合到TiO2表面。我们利用两种类型的分子识别来实现这一目的-抗层粘连蛋白抗体与其抗原(层粘连蛋白)的结合以及蛋白A与抗体的结合。我们显示了由层粘连蛋白/抗层粘连蛋白抗体/蛋白A-RPL2组成的蛋白复合物是通过在溶液相中简单地混合前体蛋白而自发形成的。然后,我们显示了蛋白质复合物包被的表面支持大鼠海马神经元的稳定生长。最后,我们表明细胞可以在用TiO2辅助方法图案化的蛋白质复合物上选择性生长。在这项工作中建立的协议是使用TiO2光催化对表面进行自上而下的微图案化和生物分子的自下而上的自组装的独特组合,可以进一步应用于对各种蛋白质和细胞进行图案化。 [DOI:10.1380 / ejssnt.2015.213]

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