Relative dielectric constants and selectivity ratios in open ionic channels

B. Eisenberg, Weishi Liu
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引用次数: 18

Abstract

Abstract We investigate the effects of the relative dielectric coefficient on ionic flows in open ion channels, using mathematical analysis of reasonably general Poisson-Nernst-Planck type models that can include the finite sizes of ions. The value of the relative dielectric coefficient is of course a crucial parameter for ionic behavior in general. Using the powerful theory of singularly perturbed problems in applied mathematics, we show that some properties of open channels are quite insensitive to variation in the relative dielectric coefficient, thereby explaining such effects seen unexpectedly in simulations. The ratio between the total number of one ion species and that of another ion species, and the ratio between the flux of one ion species and that of another ion species do not depend significantly on the relative dielectric coefficient.
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开放离子通道中的相对介电常数和选择性比
摘要我们研究了相对介电系数对开放离子通道中离子流动的影响,使用了合理通用的泊松-能斯特-普朗克型模型的数学分析,该模型可以包括有限尺寸的离子。相对介电系数的值当然是一般离子行为的关键参数。利用应用数学中奇异摄动问题的强大理论,我们证明了开放通道的一些特性对相对介电系数的变化非常不敏感,从而解释了模拟中意外出现的这种影响。一种离子种类的总数与另一种离子品种的总数之间的比率,以及一种离子物种的通量与另一离子种类的通量之间的比率不显著地取决于相对介电系数。
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来源期刊
Computational and Mathematical Biophysics
Computational and Mathematical Biophysics Mathematics-Mathematical Physics
CiteScore
2.50
自引率
0.00%
发文量
8
审稿时长
30 weeks
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