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基于蛋白质-聚电解质共凝聚的响应性嵌段共聚物光子学。

Responsive block copolymer photonics triggered by protein-polyelectrolyte coacervation.

机构信息

Department of Chemical Engineering, Massachusetts Institute of Technology , 77 Massachusetts Avenue, Cambridge, Massachusetts 02139, United States.

出版信息

ACS Nano. 2014 Nov 25;8(11):11467-73. doi: 10.1021/nn504565r. Epub 2014 Nov 13.

Abstract

Ionic interactions between proteins and polyelectrolytes are demonstrated as a method to trigger responsive transitions in block copolymer (BCP) photonic gels containing one neutral hydrophobic block and one cationic hydrophilic block. Poly(2-vinylpyridine) (P2VP) blocks in lamellar poly(styrene-b-2-vinylpyridine) block copolymer thin films are quaternized with primary bromides to yield swollen gels that show strong reflectivity peaks in the visible range; exposure to aqueous solutions of various proteins alters the swelling ratios of the quaternized P2VP (QP2VP) gel layers in the PS-QP2VP materials due to the ionic interactions between proteins and the polyelectrolyte. Parameters such as charge density, hydrophobicity, and cross-link density of the QP2VP gel layers as well as the charge and size of the proteins play significant roles on the photonic responses of the BCP gels. Differences in the size and pH-dependent charge of proteins provide a basis for fingerprinting proteins based on their temporal and equilibrium photonic response. The results demonstrate that the BCP gels and their photonic effect provide a robust and visually interpretable method to differentiate different proteins.

摘要

蛋白质与聚电解质之间的离子相互作用被证明是一种触发含有一个中性疏水性嵌段和一个阳离子亲水性嵌段的嵌段共聚物(BCP)光子凝胶响应性转变的方法。层状聚(苯乙烯-b-2-乙烯基吡啶)嵌段共聚物薄膜中的聚(2-乙烯基吡啶)(P2VP)嵌段用伯溴化物季铵化,得到溶胀凝胶,在可见光范围内显示出强反射峰;由于蛋白质与聚电解质之间的离子相互作用,暴露于各种蛋白质的水溶液中会改变 PS-QP2VP 材料中季铵化的 P2VP(QP2VP)凝胶层的溶胀比。QP2VP 凝胶层的电荷密度、疏水性和交联密度以及蛋白质的电荷和大小等参数对 BCP 凝胶的光子响应起着重要作用。蛋白质的大小和 pH 值依赖性电荷的差异为基于其时间和平衡光子响应对蛋白质进行指纹识别提供了基础。结果表明,BCP 凝胶及其光子效应为区分不同蛋白质提供了一种稳健且可直观解释的方法。

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