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水环境中氨基酸和肽在金属及氧化物表面的吸附:综合与前瞻性综述

Adsorption of Amino Acids and Peptides on Metal and Oxide Surfaces in Water Environment: A Synthetic and Prospective Review.

作者信息

Costa D, Savio L, Pradier C-M

机构信息

Institut de Recherches de Chimie de Paris UMR 8247 ENSCP Chimie Paristech , 11 Rue P. Et M. Curie, 75005 Paris, France.

Istituto dei Materiali per l'Elettronica e il Magnetismo, Consiglio Nazionale delle Ricerche, U.O.S. Genova , Via Dodecaneso 33, 16146 Genova, Italy.

出版信息

J Phys Chem B. 2016 Jul 28;120(29):7039-52. doi: 10.1021/acs.jpcb.6b05954. Epub 2016 Jul 20.

Abstract

Amino acids and peptides are often used as "model" segments of proteins for studying their behavior in various types of environments, and/or elaborating functional surfaces. Indeed, though the protein behavior is much more complex than that of their isolated segments, knowledge of the binding mode as well as of the chemical structure of peptides on metal or oxide surfaces is a significant step toward the control of materials in a biological environment. Such knowledge has considerably increased in the past few years, thanks to the combination of advanced characterization techniques and of modeling methods. Investigations of biomolecule-surface interactions in water/solvent environments are quite numerous, but only in a few cases is it possible to reach an understanding of the molecule-(water)-surface interaction with a level of detail comparable to that of the UHV studies. This contribution aims at reviewing the recent data describing the amino acid and peptide interaction with metal or oxide surfaces in the presence of water.

摘要

氨基酸和肽常被用作蛋白质的“模型”片段,用于研究它们在各种环境中的行为,和/或构建功能表面。事实上,尽管蛋白质的行为比其分离片段的行为复杂得多,但了解肽在金属或氧化物表面的结合模式以及化学结构,是在生物环境中控制材料的重要一步。由于先进的表征技术和建模方法的结合,在过去几年中,此类知识有了显著增加。对水/溶剂环境中生物分子与表面相互作用的研究相当多,但只有在少数情况下,才有可能达到与超高真空研究相当的详细程度,来理解分子 -(水)- 表面相互作用。本论文旨在综述描述在有水存在的情况下氨基酸和肽与金属或氧化物表面相互作用的最新数据。

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