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两亲性二嵌段共聚物表面粘蛋白层的椭圆偏振光谱分析

Spectroscopic ellipsometry of mucin layers on an amphiphilic diblock copolymer surface.

作者信息

Nikonenko Nataliya A, Bushnak Ibraheem A, Keddie Joseph L

机构信息

B.I. Stepanov Institute of Physics, National Academy of Sciences of Belarus, Nezalezhnasti Ave. 68, 220072 Minsk, Belarus.

出版信息

Appl Spectrosc. 2009 Aug;63(8):889-98. doi: 10.1366/000370209788964449.

Abstract

Both visible and infrared (IR) spectroscopic ellipsometry have been employed to study the structure of thin layers of bovine submaxillary mucin (BSM) adsorbed on poly(acrylic acid-block-methyl methacrylate) (PAA-b-PMMA) copolymer and poly(methyl methacrylate) (PMMA) surfaces at three pH values (3, 7, and 10). The adsorbed mucin layer on the copolymer surface had the greatest thickness (17 nm) when adsorbed from a mucin solution at a pH of 3. For the first time, IR ellipsometry was used to identify adhesive interactions and conformational changes in mucin/polymer double layers. After applying the regularized method of deconvolution in the analysis, the formation of hydrogen bonds between the carboxyl groups of the BSM and PAA-b-PMMA copolymer in double layers has been found. The IR ellipsometry data, in agreement with the visible ellipsometry analysis, indicate the pH dependence of adhesion of mucin to the copolymer surface. There is an increase in the amount of hydrogen-bonded carboxyl groups in mucin deposited at a pH of 3. There is no evidence that the amide groups of the mucin participate in this bonding. At the lower pH, the IR ellipsometry spectra after deconvolution reveal an increase in the proportion of beta-sheets in the BSM upon adsorption on the copolymer surface, indicating a more unfolded, aggregated structure. The IR ellipsometry data also indicated some changes in the conformational states of the side groups in the copolymer induced by entanglements and bonding interactions with the mucin macromolecules. Deconvolution provides an unprecedented level of information from the IR ellipsometry spectra and yields important insights.

摘要

可见光谱椭偏仪和红外(IR)光谱椭偏仪都被用于研究在三种pH值(3、7和10)下吸附在聚(丙烯酸-嵌段-甲基丙烯酸甲酯)(PAA-b-PMMA)共聚物和聚甲基丙烯酸甲酯(PMMA)表面的牛下颌粘蛋白(BSM)薄层的结构。当从pH为3的粘蛋白溶液中吸附时,共聚物表面上吸附的粘蛋白层厚度最大(17 nm)。首次使用红外椭偏仪来识别粘蛋白/聚合物双层中的粘附相互作用和构象变化。在分析中应用正则化去卷积方法后,发现双层中BSM的羧基与PAA-b-PMMA共聚物之间形成了氢键。红外椭偏仪数据与可见光谱椭偏仪分析结果一致,表明粘蛋白与共聚物表面的粘附具有pH依赖性。在pH为3时沉积的粘蛋白中,氢键结合的羧基数量增加。没有证据表明粘蛋白的酰胺基团参与这种结合。在较低pH值下,去卷积后的红外椭偏仪光谱显示,吸附在共聚物表面时,BSM中β-折叠的比例增加,表明其结构更加伸展、聚集。红外椭偏仪数据还表明,共聚物侧基的构象状态因与粘蛋白大分子的缠结和键合相互作用而发生了一些变化。去卷积从红外椭偏仪光谱中提供了前所未有的信息量,并产生了重要的见解。

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