Membrane channels as a tool to control nanoreactors.

M Lindemann, M Winterhalter
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引用次数: 9

Abstract

We present an example of the use of self-assembly of biomolecules to create nanostructured building blocks. The resulting individual compartments can be tailored to fulfil specific functions: catalysis of a chemical reaction in a confined environment, detection on a molecular level and feedback with the outside. For example, such individually designed components can be assembled to build up macroscopic chemically active filters. The main component is membrane channels acting as molecular sieves, able to control the permeation across the capsule wall. We introduce briefly a new microdevice to characterise membrane channels with a future potential for high-throughput screening of channel properties based on automation, parallelisation and the use of microfluidics. Subsequently, we outline a possible application for channel-forming proteins: encapsulation of charged polymers or proteins into liposomes and restriction of diffusion through transmembrane channels to small ions, creating a Donnan potential. This Donnan potential can be used for external manipulation of nanocontainers by coupling of the capsule to an external electric field, or for the selective uptake of small charged molecules into the capsule.

膜通道作为控制纳米反应器的工具。
我们提出了一个使用生物分子的自组装来创建纳米结构构建块的例子。由此产生的单个隔间可以定制以实现特定功能:在受限环境中催化化学反应,在分子水平上进行检测,并与外部进行反馈。例如,这种单独设计的组件可以组装成宏观的化学活性过滤器。其主要成分是作为分子筛的膜通道,能够控制通过囊壁的渗透。我们简要介绍了一种新的微设备来表征膜通道,该设备具有基于自动化、并行化和微流体使用的高通量通道特性筛选的未来潜力。随后,我们概述了通道形成蛋白的可能应用:将带电聚合物或蛋白质封装到脂质体中,并通过跨膜通道限制小离子的扩散,从而产生唐南电位。这种唐纳电位可以通过将胶囊与外电场耦合来用于纳米容器的外部操作,或者用于选择性地将小带电分子吸收到胶囊中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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