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Synthetic Nanopores as a Test Case for Ion Channel Theories: The Anomalous Mole Fraction Effect without Single Filing

机译:合成的纳米孔作为离子通道理论的测试案例:无需单次填充的异常摩尔分数效应

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摘要

The predictions of a theory for the anomalous mole fraction effect (AMFE) are tested experimentally with synthetic nanopores in plastic. The negatively charged synthetic nanopores under consideration are highly cation selective and 50 Å in diameter at their smallest point. These pores exhibit an AMFE in mixtures of Ca2+ and monovalent cations. An AMFE occurs when the conductance through a pore is lower in a mixture of salts than in the pure salts at the same concentration. For ion channels, the textbook interpretation of the AMFE is that multiple ions move through the pore in coordinated, single-file motion. However, because the synthetic nanopores are so wide, their AMFE shows that single filing is not necessary for the AMFE. It is shown that the AMFE in the synthetic nanopores is explained by a theory of preferential ion selectivity. The unique properties of the synthetic nanopores allow us to experimentally confirm several predictions of this theory. These same properties make synthetic nanopores an interesting new platform to test theories of ion channel permeation and selectivity in general.
机译:使用塑料中的合成纳米孔实验性地测试了异常摩尔分数效应(AMFE)的理论预测。所考虑的带负电荷的合成纳米孔具有高度的阳离子选择性,其最小点直径为50。这些孔在Ca 2 + 和单价阳离子的混合物中表现出AMFE。当盐混合物中通过孔的电导率低于相同浓度的纯盐中的电导率时,就会发生AMFE。对于离子通道,教科书对AMFE的解释是,多个离子以协调的单行运动通过孔。但是,由于合成的纳米孔是如此之宽,因此它们的AMFE表明AMFE不​​需要单次填充。结果表明,合成纳米孔中的AMFE由优先离子选择性理论解释。合成纳米孔的独特性质使我们能够在实验上证实该理论的一些预测。这些相同的特性使合成的纳米孔成为测试离子通道渗透和选择性理论的有趣新平台。

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