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Engineered Ionic Gates for Ion Conduction Based on Sodium and Potassium Activated Nanochannels

机译:基于钠和钾活化的纳米通道的离子传导工程离子门

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摘要

In living systems, ion conduction plays a major role in numerous cellular processes and can be controlled by biological ion channels in response to specific environmental stimuli. This article describes biomimetic ionic gates for ion conduction based on sodium and potassium activated nanochannels. The Na~+ activated ionic gate and K~+ activated ionic gate were developed by immobilizing the alkali metal cation-responsive functional molecules, 4'-aminobenzo-15- crown-5 and 4'-aminobenzo-18-crown-6, respectively, onto the conical polyimide nanochannels. When the ionic gate was in the presence of the specific alkali metal cation, positively charged complexes formed between the crown ether and the alkali metal cation. On the basis of the resulting changes in surface charge, wettability and effective pore size, the nanochannel can achieve reversible switching. The switching behaviors of the two complexes differed due to the differences in binding strength between the two complexes. The Na~+ activated ionic gate is able to open and close to control the ion conduction through the nanochannel, and the K~+ activated ionic gate enables selective cation and anion conduction through the nanochannel. The Na~+ and K~+ activated ionic gates show great promise for use in clinical medicine, biosensors and drug delivery based on their high sensitivity and selectivity of being activated, and good stability.
机译:在生物系统中,离子传导在许多细胞过程中起着重要作用,可以响应特定的环境刺激而由生物离子通道控制。本文介绍了基于钠和钾激活的纳米通道的离子传导仿生离子门。通过分别固定碱金属阳离子响应性功能分子4'-氨基苯并-15- Crown-5和4'-氨基苯并18-crown-6来开发Na〜+活化离子门和K〜+活化离子门。 ,在锥形聚酰亚胺纳米通道上。当离子门存在特定的碱金属阳离子时,在冠醚和碱金属阳离子之间形成带正电的络合物。根据表面电荷,润湿性和有效孔径的变化,纳米通道可以实现可逆转换。由于两个复合物之间的结合强度不同,两个复合物的转换行为也不同。 Na +活化的离子门能够打开和关闭,以控制通过纳米通道的离子传导,而K +活化的离子门能够通过纳米通道进行选择性的阳离子和阴离子传导。 Na〜+和K〜+活化的离子门具有很高的灵敏度和选择性,并且具有良好的稳定性,因此有望用于临床医学,生物传感器和药物递送。

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  • 来源
    《Journal of the American Chemical Society 》 |2015年第37期| 11976-11983| 共8页
  • 作者单位

    Beijing Key Laboratory of Energy Conversion and Storage Materials, College of Chemistry, Key Laboratory of Theoretical and Computational Photochemistry, Ministry of Education, Beijing Normal University, Beijing 100875, PR China;

    Beijing National Laboratory for Molecular Sciences (BNLMS), Key Laboratory of Organic Solids, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100190, PR China;

    Laboratory of Bioinspired Smart Interfacial Science, Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Beijing 100190, PR China;

    Beijing Key Laboratory of Energy Conversion and Storage Materials, College of Chemistry, Key Laboratory of Theoretical and Computational Photochemistry, Ministry of Education, Beijing Normal University, Beijing 100875, PR China;

    Beijing Key Laboratory of Energy Conversion and Storage Materials, College of Chemistry, Key Laboratory of Theoretical and Computational Photochemistry, Ministry of Education, Beijing Normal University, Beijing 100875, PR China;

    Laboratory of Bioinspired Smart Interfacial Science, Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Beijing 100190, PR China;

    Beijing National Laboratory for Molecular Sciences (BNLMS), Key Laboratory of Organic Solids, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100190, PR China;

    Beijing National Laboratory for Molecular Sciences (BNLMS), Key Laboratory of Organic Solids, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100190, PR China;

    Beijing Key Laboratory of Energy Conversion and Storage Materials, College of Chemistry, Key Laboratory of Theoretical and Computational Photochemistry, Ministry of Education, Beijing Normal University, Beijing 100875, PR China;

    Laboratory of Bioinspired Smart Interfacial Science, Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Beijing 100190, PR China ,Beijing National Laboratory for Molecular Sciences (BNLMS), Key Laboratory of Organic Solids, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100190, PR China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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