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用于蛋白质应用的无缠结可调谐βCD 葡聚糖聚合物膜。

Nonfouling tunable βCD dextran polymer films for protein applications.

机构信息

Department of Biotechnology, Chemistry and Environmental Engineering, Aalborg University , Frederik Bajers Vej 7H, DK-9220 Aalborg East, Denmark.

出版信息

ACS Appl Mater Interfaces. 2015 Feb 25;7(7):4160-8. doi: 10.1021/am508350r. Epub 2015 Feb 16.

Abstract

Polymeric β-cyclodextrin (βCD) films tunable with respect to thickness and βCD content were prepared in order to develop a suitable platform, allowing for inclusion of nonpolar guest molecules in the βCD cavity, while suppressing nonspecific protein adsorption. The βCD films were synthesized from linear βCD dextran polymers, and grafted onto silicon oxide surfaces by "click" chemistry. Topographic and morphological characteristics are controllable by reaction conditions and polymer type, with average film heights from 2.5 to 12.5 nm. Reversible introduction of electrostatic charges in the βCD dextran by complex formation with 1-adamantanecarboxylic acid prior to surface grafting resulted in a thinner and denser film, presumably by decompaction of the polymers. Total internal reflection fluorescence spectroscopy (TIRF) was employed to evaluate the accessibility of βCD cavities to the fluorescent probe 2-anilinonaphthalene-6-sulfonic acid. Only a minor fraction of the βCD cavities was accessible in the thicker and less dense films; however, accessibility was largely improved with increased ionic strength using NaCl up to 1 M. Antifouling properties of the βCD dextran polymer films were assessed by TIRF real-time monitoring, using bovine serum albumin as a model protein, and showed a 5- to 10-fold reduction in nonspecific adsorption as compared to a bare quartz surface with the degree of reduction reflecting film thickness and interfacial polymer density.

摘要

为了开发一种合适的平台,允许非极性客体分子进入β-CD 空腔,同时抑制非特异性蛋白质吸附,我们制备了具有可调厚度和β-CD 含量的聚合β-环糊精(βCD)薄膜。β-CD 薄膜是由线性β-CD 葡聚糖聚合物通过“点击”化学接枝到氧化硅表面合成的。通过反应条件和聚合物类型可以控制形貌和形态特征,平均膜厚为 2.5 至 12.5nm。在表面接枝之前,通过与 1-金刚烷羧酸形成配合物,在β-CD 葡聚糖中引入静电电荷,导致薄膜更薄、更致密,这可能是由于聚合物的解压缩。全内反射荧光光谱(TIRF)用于评估β-CD 空腔对荧光探针 2-苯胺基萘-6-磺酸的可及性。只有一小部分β-CD 空腔在较厚且较不致密的薄膜中是可及的;然而,通过使用 NaCl 增加离子强度至 1M,可以大大提高可及性。通过 TIRF 实时监测,使用牛血清白蛋白作为模型蛋白,评估了β-CD 葡聚糖聚合物薄膜的抗污染性能,与裸石英表面相比,非特异性吸附减少了 5 到 10 倍,减少的程度反映了薄膜的厚度和界面聚合物的密度。

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