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通过仿生高密度弹性体纳米通道实现的超机械敏感氯离子传输。

Ultra-mechanosensitive Chloride Ion Transport through Bioinspired High-Density Elastomeric Nanochannels.

作者信息

Li Chao, Liu Pengxiang, Zhi Yafang, Zhai Yi, Liu Zhiwen, Gao Longcheng, Jiang Lei

机构信息

Laboratory of Bio-Inspired Smart Interfacial Science and Technology of Ministry of Education, School of Chemistry, Beihang University, Beijing 100191, P. R. China.

Key Laboratory of Bio-inspired Materials and Interfacial Science, Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Beijing 100190, P. R. China.

出版信息

J Am Chem Soc. 2023 Aug 30;145(34):19098-19106. doi: 10.1021/jacs.3c07675. Epub 2023 Aug 21.

Abstract

Mechanosensitive ion channels play crucial roles in physiological activities, where small mechanical stimuli induce the membrane tension, trigger the ion channels' deformation, and are further transformed into significant electrochemical signals. Artificial ion channels with stiff moduli have been developed to mimic mechanosensory behaviors, exhibiting an electrochemical response by the high-pressure-induced flow. However, fabricating flexible mechanosensitive channels capable of regulating specific ion transporting upon dramatic deformation has remained a challenge. Here, we demonstrate bioinspired high-density elastomeric channels self-assembled by polyisoprene--poly4-vinylpyridine, which exhibit ultra-mechanosensitive chloride ion transport resulting from nanochannel deformation. The PI-formed continuous elastic matrix can transmit external forces into internal tensions, while P4VP forms transmembrane chloride channels that undergo dramatic deformation and respond to mechanical stimuli. The integrated and flexible chloride channels present a dramatic and stable electrochemical signal toward a low pressure of 0.2 mbar. This research first demonstrates the artificial mechanosensory chloride channels, which could provide a promising avenue for designing flexible and responsive channel systems.

摘要

机械敏感离子通道在生理活动中发挥着关键作用,其中微小的机械刺激会引起膜张力,触发离子通道的变形,并进一步转化为显著的电化学信号。人们已经开发出具有刚性模量的人工离子通道来模拟机械传感行为,通过高压诱导的流动表现出电化学响应。然而,制造能够在剧烈变形时调节特定离子运输的柔性机械敏感通道仍然是一个挑战。在这里,我们展示了由聚异戊二烯-聚4-乙烯基吡啶自组装而成的受生物启发的高密度弹性体通道,该通道表现出由纳米通道变形导致的超机械敏感氯离子运输。由PI形成的连续弹性基质可以将外力传递为内部张力,而P4VP形成跨膜氯离子通道,该通道会发生剧烈变形并对机械刺激做出响应。集成的柔性氯离子通道在0.2毫巴的低压下呈现出显著且稳定的电化学信号。这项研究首次展示了人工机械传感氯离子通道,这可能为设计灵活且响应灵敏的通道系统提供一条有前景的途径。

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