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聚焦:纳米尺度下的碳纳米管与蛋白质相互作用。

Under the lens: carbon nanotube and protein interaction at the nanoscale.

机构信息

Center of Excellence for Nanostructured Materials (CENMAT) and INSTM, Unit of Trieste, Department of Chemical and Pharmaceutical Sciences, University of Trieste, via L. Giorgieri 1, 34127 Trieste, Italy.

出版信息

Chem Commun (Camb). 2015 Mar 14;51(21):4347-59. doi: 10.1039/c4cc09173f.

Abstract

The combination of the very different chemical natures of carbon nanotubes (CNTs) and proteins gives rise to systems with unprecedented performance, thanks to a rich pool of very diverse chemical, electronic, catalytic and biological properties. Here we review recent advances in the field, including innovative and imaginative aspects from a nanoscale point of view. The tubular nature of CNTs allows for internal protein encapsulation, and also for their external coating by protein cages, affording bottom-up ordering of molecules in hierarchical structures. To achieve such complex systems it is imperative to master the intermolecular forces between CNTs and proteins, including geometry effects (e.g. CNT diameter and curvature) and how they translate into changes in the local environment (e.g. water entropy). The type of interaction between proteins and CNTs has important consequences for the preservation of their structure and, in turn, function. This key aspect cannot be neglected during the design of their conjugation, be it covalent, non-covalent, or based on a combination of both methods. The review concludes with a brief discussion of the very many applications intended for CNT-protein systems that go across various fields of science, from industrial biocatalysis to nanomedicine, from innovative materials to biotechnological tools in molecular biology research.

摘要

碳纳米管(CNTs)和蛋白质的非常不同的化学性质的组合,由于具有丰富的化学、电子、催化和生物性质,为具有前所未有的性能的系统提供了可能性。在这里,我们回顾了该领域的最新进展,包括从纳米尺度的创新和富有想象力的方面。CNTs 的管状性质允许内部蛋白质封装,并且还允许其被蛋白质笼外部包裹,从而在分层结构中实现分子的自下而上的有序排列。为了实现这样的复杂系统,必须掌握 CNTs 和蛋白质之间的分子间力,包括几何效应(例如 CNT 直径和曲率)以及它们如何转化为局部环境的变化(例如水熵)。蛋白质和 CNTs 之间的相互作用类型对其结构的保存以及功能具有重要的影响。在它们的缀合设计中,不能忽略这一关键方面,无论其是共价的、非共价的,还是基于这两种方法的组合。综述最后简要讨论了 CNT-蛋白质系统的许多应用,这些应用跨越了科学的各个领域,从工业生物催化到纳米医学,从创新材料到分子生物学研究中的生物技术工具。

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