Cheung David L, Lau King Hang Aaron
School of Chemistry , National University of Ireland Galway , Galway H91 TK33 , Ireland.
Department of Pure and Applied Chemistry , University of Strathclyde , Glasgow G1 1XL , United Kingdom.
Langmuir. 2019 Feb 5;35(5):1483-1494. doi: 10.1021/acs.langmuir.8b01939. Epub 2018 Sep 6.
Using molecular dynamics (MD) simulations, we study the molecular behavior and hydration properties of a set of zwitterionic "peptoid" brushes, grafted on a rutile surface, that has been previously reported to exhibit excellent resistance against protein adsorption and cell attachment. Peptoids are novel poly( N-substituted glycine) peptide mimics with the side chains attached to amide nitrogens. They constitute a unique model polymer system because hundreds of side chains have been demonstrated, and the exact chain length and sequence order of the residues/monomers may be specified in experiments. In this report, we vary the brush grafting density as well as the side chain/polymer molecular volume. We include in our study polysarcosine as an uncharged comparison with a small polymer chain cross-section. Sarcosine is the simplest peptoid residue with only a nominally hydrophobic methyl group as side chain, but is also reported to exhibit high antifouling performance. Overall, we show in detail how molecular volume and hydration effects are intertwined in a zwitterionic polymer brush. For example, the zwitterionic design significantly promotes extended chain conformations and could actually lower the overall electrostatic potential. Some properties promoted by the balanced charges, such as chain flexibility and hydration, increase more prominently at "low" to "intermediate" chain densities. These and other observations should provide insight on the molecular behavior of peptoids and inform the design of zwitterionic antifouling polymer brushes.
利用分子动力学(MD)模拟,我们研究了一组接枝在金红石表面的两性离子“类肽”刷的分子行为和水合特性,此前有报道称该表面对蛋白质吸附和细胞附着具有优异的抗性。类肽是新型的聚(N-取代甘氨酸)肽模拟物,其侧链连接在酰胺氮上。它们构成了一个独特的模型聚合物体系,因为已经证明了数百种侧链,并且在实验中可以指定残基/单体的确切链长和序列顺序。在本报告中,我们改变了刷的接枝密度以及侧链/聚合物的分子体积。我们在研究中纳入了聚肌氨酸作为与小聚合物链横截面的不带电对照。肌氨酸是最简单的类肽残基,只有一个名义上疏水的甲基作为侧链,但也据报道具有高抗污性能。总体而言,我们详细展示了分子体积和水合效应如何在两性离子聚合物刷中相互交织。例如,两性离子设计显著促进了伸展链构象,实际上还可以降低整体静电势。由平衡电荷促进的一些特性,如链的柔韧性和水合作用,在“低”到“中等”链密度下增加得更为显著。这些以及其他观察结果应该能为类肽的分子行为提供见解,并为两性离子抗污聚合物刷的设计提供参考。