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A biomimetic chiral-driven ionic gate constructed by pillar6arene-based host–guest systems

机译:由基于柱6芳烃的主客体系统构建的仿生手性驱动离子门

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摘要

Inspired by glucose-sensitive ion channels, herein we describe a biomimetic glucose-enantiomer-driven ion gate via the introduction of the chiral pillar[6]arene-based host–guest systems into the artificial nanochannels. The chiral nanochannels show a high chiral-driven ionic gate for glucose enantiomers and can be switched “off” by d-glucose and be switched “on” by l-glucose. Remarkably, the chiral nanochannel also exhibited a good reversibility toward glucose enantiomers. Further research indicates that the switching behaviors differed due to the differences in binding strength between chiral pillar[6]arene and glucose enantiomers, which can lead to the different surface charge within nanochannel. Given these promising results, the studies of chiral-driven ion gates may not only give interesting insight for the research of biological and pathological processes caused by glucose-sensitive ion channels, but also help to understand the origin of the high stereoselectivity in life systems.
机译:受葡萄糖敏感离子通道的启发,在此我们通过将基于手性柱[6]芳烃的宿主-客体系统引入人工纳米通道,来描述一种仿生葡萄糖-对映体驱动的离子门。手性纳米通道显示了葡萄糖对映异构体的高手性驱动离子门,可通过d-葡萄糖``关闭''并通过l-葡萄糖``打开''。值得注意的是,手性纳米通道还表现出对葡萄糖对映体的良好可逆性。进一步的研究表明,由于手性柱[6]芳烃与葡萄糖对映体之间的结合强度不同,开关行为也不同,这可能导致纳米通道内的表面电荷不同。鉴于这些令人鼓舞的结果,手性驱动离子门的研究不仅可以为葡萄糖敏感离子通道引起的生物学和病理过程研究提供有趣的见解,而且还有助于了解生命系统中高立体选择性的起源。

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