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聚电解质共混多层膜:表面形态、润湿性及蛋白质吸附特性

Polyelectrolyte blend multilayer films: surface morphology, wettability, and protein adsorption characteristics.

作者信息

Quinn Anthony, Tjipto Elvira, Yu Aimin, Gengenbach Thomas R, Caruso Frank

机构信息

Centre for Nanoscience and Nanotechnology, Department of Chemical and Biomolecular Engineering, The University of Melbourne, Victoria 3010, Australia.

出版信息

Langmuir. 2007 Apr 24;23(9):4944-9. doi: 10.1021/la0634746. Epub 2007 Mar 31.

Abstract

We report the influence of polyelectrolyte (PE) multilayer films prepared from poly(styrene sulfonate)-poly(acrylic acid) (PSS-PAA) blends, deposited in alternation with poly(allylamine hydrochloride) (PAH), on film wettability and the adsorption behavior of the protein immunoglobulin G (IgG). Variations in the chemical composition of the PAH/(PSS-PAA) multilayer films, controlled by the PSS/PAA blend ratio in the dipping solutions, were used to systematically control film thickness, surface morphology, surface wettability, and IgG adsorption. Spectroscopic ellipsometry measurements indicate that increasing the PSS content in the blend solutions results in a systematic decrease in film thickness. Increasing the PSS content in the blend solutions also leads to a reduction in film surface roughness (as measured by atomic force microscopy), with a corresponding increase in surface hydrophobicity. Advancing contact angles (theta) range from 7 degrees for PAH/PAA films through to 53 degrees for PAH/PSS films. X-ray photoelectron spectroscopy measurements indicate that the increase in film hydrophobicity is due to an increase in PSS concentration at the film surface. In addition, the influence of added electrolyte in the PE solutions was investigated. Adsorption from PE solutions containing added salt favors PSS adsorption and results in more hydrophobic films. The amount of IgG adsorbed on the multilayer films systematically increased on films assembled from blends with increasing PSS content, suggesting strong interactions between PSS in the multilayer films and IgG. Hence, multilayer films prepared from blended PE solutions can be used to tune film thickness and composition, as well as wetting and protein adsorption characteristics.

摘要

我们报道了由聚(苯乙烯磺酸盐)-聚(丙烯酸)(PSS-PAA)共混物与聚(烯丙胺盐酸盐)(PAH)交替沉积制备的聚电解质(PE)多层膜对膜润湿性和蛋白质免疫球蛋白G(IgG)吸附行为的影响。通过浸渍溶液中PSS/PAA共混比控制PAH/(PSS-PAA)多层膜的化学成分变化,用于系统地控制膜厚度、表面形态、表面润湿性和IgG吸附。椭圆偏振光谱测量表明,共混溶液中PSS含量的增加导致膜厚度系统性降低。共混溶液中PSS含量的增加还导致膜表面粗糙度降低(通过原子力显微镜测量),同时表面疏水性相应增加。前进接触角(θ)范围从PAH/PAA膜的7°到PAH/PSS膜的53°。X射线光电子能谱测量表明,膜疏水性的增加是由于膜表面PSS浓度的增加。此外,还研究了PE溶液中添加电解质的影响。从含有添加盐的PE溶液中吸附有利于PSS吸附,并导致形成更疏水的膜。随着多层膜中PSS含量增加,组装的多层膜上吸附的IgG量系统性增加,这表明多层膜中的PSS与IgG之间存在强相互作用。因此,由共混PE溶液制备的多层膜可用于调节膜厚度和组成,以及润湿性和蛋白质吸附特性。

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