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硅及硅纳米孔膜上的抗生物污损磺基甜菜碱聚合物薄膜

Anti-biofouling Sulfobetaine Polymer Thin Films on Silicon and Silicon Nanopore Membranes.

作者信息

Li Lingyan, Marchant Roger E, Dubnisheva Anna, Roy Shuvo, Fissell William H

机构信息

a Department of Nephrology and Hypertension, Cleveland Clinic, Cleveland, OH 44195, USA; Department of Biomedical Engineering, Cleveland Clinic, Cleveland, OH 44195, USA.

出版信息

J Biomater Sci Polym Ed. 2011;22(1-3):91-106. doi: 10.1163/092050609X12578498982998.

Abstract

Silicon nanopore membranes (SNM) with monodisperse pore size distributions have potential applications in bioartificial kidneys. A protein resistant thin film coating on the SNM is required to minimize biofouling and, hence, enhance the performance efficiency of SNM. In this work, a zwitterionic polymer, poly(sulfobetaine methacrylate) (polySBMA), was used to coat silicon and SNM substrates via a surface initiated atom transfer radical polymerization method. The polySBMA-coated surfaces were characterized using contact angle goniometry, X-ray photoelectron spectroscopy (XPS), ellipsometry and scanning electron microscopy (SEM). Resistance of the coatings to protein fouling was examined by measurement of fibrinogen adsorption from fibrinogen solution and human plasma on coated silicon surfaces. Results showed that the polySBMA coating suppresses non-specific adsorption of fibrinogen. The protein-repellent property of polySBMA thin film coating is comparable to that of PEG-based coatings. Analysis of the surfaces by XPS indicated that the films remained stable when stored under physiologic conditions over a 4-week period.

摘要

具有单分散孔径分布的硅纳米孔膜(SNM)在生物人工肾中具有潜在应用。需要在SNM上涂覆一层抗蛋白质薄膜,以尽量减少生物污垢,从而提高SNM的性能效率。在这项工作中,通过表面引发原子转移自由基聚合法,使用两性离子聚合物聚(甲基丙烯酸磺酸甜菜碱)(聚SBMA)涂覆硅和SNM基底。使用接触角测角法、X射线光电子能谱(XPS)、椭偏仪和扫描电子显微镜(SEM)对聚SBMA涂覆的表面进行表征。通过测量纤维蛋白原溶液和人血浆在涂覆硅表面上的纤维蛋白原吸附,研究了涂层对蛋白质污垢形成的抗性。结果表明,聚SBMA涂层可抑制纤维蛋白原的非特异性吸附。聚SBMA薄膜涂层的抗蛋白质性能与基于聚乙二醇的涂层相当。XPS对表面的分析表明,这些薄膜在生理条件下储存4周期间保持稳定。

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