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Thermally responsive silicon nanowire arrays for native/denatured-protein separation

机译:热响应硅纳米线阵列,用于天然/变性蛋白质分离

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摘要

We present our findings of the selective adsorption of native and denatured proteins onto thermally responsive, native-protein resistant poly(N-isopropylacrylamide) (PNIPAAm) decorated silicon nanowire arrays (SiNWAs). The PNIPAAm-SiNWAs surface, which shows very low levels of native-protein adsorption, favors the adsorption of denatured proteins. The amount of denatured-protein adsorption is higher at temperatures above the lower critical solution temperature (LCST) of PNIPAAm. Temperature cycling surrounding the LCST, which ensures against thermal denaturation of native proteins, further increases the amount of denatured-protein adsorption. Moreover, the PNIPAAm-SiNWAs surface is able to selectively adsorb denatured protein even from mixtures of different protein species; meanwhile, the amount of native proteins in solution is kept nearly at its original level. It is believed that these results will not only enrich current understanding of protein interactions with PNIPAAm-modified SiNWAs surfaces, but may also stimulate applications of PNIPAAm-SiNWAs surfaces for native/denatured protein separation.
机译:我们介绍了对热响应,耐天然蛋白的聚(N-异丙基丙烯酰胺)(PNIPAAm)装饰的硅纳米线阵列(SiNWAs)的天然和变性蛋白的选择性吸附的发现。 PNIPAAm-SiNWAs表面显示出极低的天然蛋白吸附水平,有利于变性蛋白的吸附。在高于PNIPAAm的较低临界溶液温度(LCST)的温度下,变性蛋白的吸附量较高。 LCST周围的温度循环可确保天然蛋白质不发生热变性,从而进一步增加了变性蛋白质的吸附量。而且,PNIPAAm-SiNWAs表面甚至可以从不同蛋白质种类的混合物中选择性吸附变性蛋白质。同时,溶液中天然蛋白质的含量几乎保持在原始水平。相信这些结果不仅将丰富当前对蛋白质与PNIPAAm修饰的SiNWAs表面相互作用的了解,而且可能会刺激PNIPAAm-SiNWAs表面用于天然/变性蛋白质分离的应用。

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