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具有多重可切换状态的棒状细胞模拟光致变色层状离子通道,用于可控离子输运。

Rod-Cell-Mimetic Photochromic Layered Ion Channels with Multiple Switchable States for Controllable Ion Transport.

机构信息

Key Laboratory of Bio-Inspired Smart Interfacial Science and Technology of Ministry of Education, School of Chemistry, Beijing Advanced Innovation Center for Biomedical Engineering, Beihang University, Beijing, 100191, P. R. China.

School of Space and Environment, Beihang University, Beijing, 100124, P. R. China.

出版信息

Chemistry. 2019 Oct 1;25(55):12795-12800. doi: 10.1002/chem.201902450. Epub 2019 Sep 19.

Abstract

The controllable ion transport in the photoreceptors of rod cells is essentially important for the light detection and information transduction in visual systems. Herein, inspired by the photochromism-regulated ion transport in rod cells with stacking structure, layered ion channels have been developed with a visual photochromic function induced by the alternate irradiation with visible and UV light. The layered structure is formed by stacking spiropyran-modified montmorillonite 2D nanosheets on the surface of an alumina nanoporous membrane. The visual photochromism resulting from the photoisomerization of spiropyran chromophores reversibly regulates the ion transport through layered ion channels. Furthermore, the cooperation of photochromism and pH value achieves multiple switchable states of layered ion channels for the controllable ion transport mimicking the biological process of the visual cycle. The ion transport properties of these states are explained quantitatively by a theoretical calculation based on the Poisson and Nernst-Plank (PNP) equations.

摘要

光感受器中离子的可控输运对于视觉系统的光探测和信息转导至关重要。受堆叠结构中光致变色调控的杆状细胞离子输运的启发,本文通过可见光和紫外光交替辐照诱导的可视光致变色功能,开发了具有层状离子通道的材料。该层状结构是通过将螺吡喃修饰的蒙脱石二维纳米片堆叠在氧化铝纳米多孔膜的表面而形成的。螺吡喃发色团的光致异构化产生的可视光致变色可通过层状离子通道可逆地调节离子输运。此外,光致变色和 pH 值的协同作用实现了层状离子通道的多种可切换状态,用于模拟视觉循环的生物过程的可控离子输运。这些状态的离子输运性质通过基于泊松和能斯特-普朗克(PNP)方程的理论计算进行了定量解释。

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