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Electropolymerization on microelectrodes: Functionalization technique for selective protein and DNA conjugation

机译:微电极上的电聚合:选择性蛋白质和DNA结合的功能化技术

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A critical shortcoming of current surface functionalization schemes is their inability to selectively coat patterned substrates at micrometer and nanometer scales. This limitation prevents localized deposition of macromolecules at high densities, thereby restricting the versatility of the surface. A new approach for functionalizing lithographically patterned substrates that eliminates the need for alignment and, thus, is scalable to any dimension is reported. We show, for the first time, that electropolymerization of derivatized phenols can functionalize patterned surfaces with amine, aldehyde, and carboxylic acid groups and demonstrate that these derivatized groups can covalently bind molecular targets, including proteins and DNA. With this approach, electrically conducting and semiconducting materials in any lithographically realizable geometry can be selectively functionalized, allowing for the sequential deposition of a myriad of chemical or biochemical species of interest at high density to a surface with minimal cross-contamination.
机译:当前表面功能化方案的关键缺点是它们不能以微米和纳米尺度选择性地涂覆图案化的基底。该限制阻止了大分子以高密度局部沉积,从而限制了表面的多功能性。报告了一种使光刻图案化的基板功能化的新方法,该方法无需对齐,因此可扩展到任何尺寸。我们首次展示了衍生化酚的电聚合可以使胺,醛和羧酸基团的图案化表面功能化,并证明了这些衍生化基团可以共价结合分子靶标,包括蛋白质和DNA。利用这种方法,可以选择性地功能化任何可光刻实现的几何形状的导电和半导电材料,从而可以将无数的目标化学或生化物种以高密度顺序沉积到表面上,而将交叉污染降至最低。

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