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合成通道的离子电导:分析、经验教训和建议。

Ionic conductance of synthetic channels: analysis, lessons, and recommendations.

机构信息

Department of Chemistry, University of Victoria, Victoria BC, Canada.

出版信息

Chem Soc Rev. 2012 Jan 7;41(1):148-75. doi: 10.1039/c1cs15099e. Epub 2011 Jun 21.

Abstract

Synthetic ion channels have been known for nearly three decades, but it is only in the past decade that analysis of the currents these ionic conductors carry has become a standard technique. A broad range of structural types have been explored and these reports have produced a very diverse collection of ion channel conductance behaviours. In this critical review we describe a notational method to extract salient information from reported ion channel experiments. We use an activity grid to represent quantitative information on conductance and opening duration with a five-level colour code to represent qualitative information on the nature of the conductance-time profile. Analysis of the cumulative dataset suggests that the reported conductance data can reflect the structural features of the compounds prepared, but does also reflect the energetic landscape of the bilayer membrane in which synthetic ion channels function (143 references).

摘要

合成离子通道已经为人所知近三十年,但直到过去十年,对这些离子导体所携带的电流的分析才成为一种标准技术。已经探索了广泛的结构类型,这些报告产生了非常多样化的离子通道传导行为集合。在这篇重要的评论中,我们描述了一种从报告的离子通道实验中提取重要信息的符号方法。我们使用活动网格来表示电导和开启持续时间的定量信息,并用五级颜色代码来表示电导-时间曲线的定性信息。对累积数据集的分析表明,报告的电导数据可以反映所制备化合物的结构特征,但也反映了合成离子通道作用的双层膜的能量景观(143 篇参考文献)。

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