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含磺基甜菜碱基聚合物和嵌段聚氨酯的生物相容性互穿聚合物网络用于抗蛋白质的研究进展。

Development of biocompatible interpenetrating polymer networks containing a sulfobetaine-based polymer and a segmented polyurethane for protein resistance.

作者信息

Chang Yung, Chen Shengfu, Yu Qiuming, Zhang Zheng, Bernards Matthew, Jiang Shaoyi

机构信息

Department of Chemical Engineering, University of Washington, Seattle, Washington 98195, USA.

出版信息

Biomacromolecules. 2007 Jan;8(1):122-7. doi: 10.1021/bm060739m.

Abstract

Interpenetrating polymer networks (IPNs) were prepared by the modification of a segmented polyurethane (SPU) with a cross-linked sulfobetaine methacrylate (SBMA) polymer. The IPN films that were prepared can effectively resist nonspecific protein adsorption when the distribution of SBMA units within the SPU film is well controlled, and they retain high mechanical strengths inherent from the base SPU films. Furthermore, the zwitterionic and biomimetic nature of sulfobetaine and the ease of SBMA preparation make SBMA-based materials very attractive for a wide range of applications. It is challenging to control the diffusion of highly polar SBMA into the hydrophobic network of SPU. In this study, various parameters governing the formation of IPNs containing SBMA were studied. The chemical composition depth profile of the IPN films was determined by confocal Raman microscopy. The morphology and thickness of these IPN films were examined by atomic force microscopy and scanning electron microscopy. The amount of adsorbed proteins on the IPN films was determined by an enzyme-linked immunosorbent assay. Results show that the amount of adsorbed proteins on the IPN films depends on the incubation conditions, including solvent polarity, incubation time, SBMA monomer ratio, and incubation concentration. It appears that the IPN films prepared in a mixed solvent of higher polarity with long incubation time lead to very low protein adsorption. This study not only introduces a new IPN system containing SBMA, but also provides a fundamental understanding of various parameters governing the formation of IPNs.

摘要

通过用交联的甲基丙烯酸磺基甜菜碱(SBMA)聚合物对嵌段聚氨酯(SPU)进行改性来制备互穿聚合物网络(IPN)。当SPU膜内SBMA单元的分布得到良好控制时,所制备的IPN膜能够有效抵抗非特异性蛋白质吸附,并且它们保留了基础SPU膜固有的高机械强度。此外,磺基甜菜碱的两性离子和仿生性质以及SBMA制备的简便性使得基于SBMA的材料在广泛的应用中非常有吸引力。控制高极性的SBMA向SPU疏水网络中的扩散具有挑战性。在本研究中,研究了控制含SBMA的IPN形成的各种参数。通过共聚焦拉曼显微镜确定IPN膜的化学成分深度分布。通过原子力显微镜和扫描电子显微镜检查这些IPN膜的形态和厚度。通过酶联免疫吸附测定法测定IPN膜上吸附的蛋白质的量。结果表明,IPN膜上吸附的蛋白质的量取决于孵育条件,包括溶剂极性、孵育时间、SBMA单体比例和孵育浓度。似乎在具有较长孵育时间的较高极性混合溶剂中制备的IPN膜导致非常低的蛋白质吸附。本研究不仅引入了一种含SBMA的新型IPN系统,而且还提供了对控制IPN形成的各种参数的基本理解。

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