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Design of Multifunctional Nanogate in Response to Multiple External Stimuli Using Amphiphilic Diblock Copolymer

机译:两亲性嵌段共聚物对多种外部刺激的响应作用

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摘要

Nature uses the interplay between hydrophobic and electrostatic interactions of disordered proteins to orchestrate complicated molecular gates such as the nuclear pore complex to control the transport of biological masses. Inspired by nature, we here theoretically show that well-defined gate shape, sensitive response to pH and salt concentration, and selectivity in cargo transport can be simultaneously achieved by grafting amphiphilic diblock copolymers made of sequence-controlled hydrophobic and ionizable monomers on the inner surface of solid-state nanopore. As a result, multiple functions such as ionic gating and molecular filtering can be implemented into one single copolymer nanogate. The gate structure and thermodynamics is a result of the self-assembly of the sequence-designed copolymer in the confined geometry that minimizes the free energy of the system. Our theory further predicts a phase transition and discontinuous charge regulation of the confined copolymer that allows logical gating in biosensors and nanofluidic devices. As an example of application, a nanolocker with the potential of molecular pumping has also been designed with the cooperation of two amphiphilic copolymer gates. Our results highlight the importance of polymer sequence in nanogating, and these insights can be used to guide the rational design of polymer-coated smart nanopores.
机译:大自然利用无序蛋白质的疏水和静电相互作用之间的相互作用来编排复杂的分子门,例如核孔复合物,以控制生物物质的运输。受自然界的启发,我们在理论上表明,可以通过在内表面接枝由顺序控制的疏水和可电离单体制成的两亲性二嵌段共聚物,同时实现定义明确的门形状,对pH和盐浓度的敏感响应以及货物运输的选择性固态纳米孔。结果,可以将多种功能(例如离子门控和分子过滤)实现到一个单一的共聚物纳米门中。浇口的结构和热力学是按顺序设计的共聚物在有限的几何结构中进行自组装的结果,该结构可最大程度地减少系统的自由能。我们的理论进一步预测了受限共聚物的相变和不连续电荷调节,从而可以在生物传感器和纳米流体装置中进行逻辑门控。作为应用示例,还通过两个两亲共聚物门的协同设计了具有分子泵浦潜力的纳米锁。我们的结果凸显了聚合物序列在纳米浇铸中的重要性,这些见解可用于指导聚合物涂覆的智能纳米孔的合理设计。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2017年第18期|6422-6430|共9页
  • 作者

    Kai Huang;

  • 作者单位

    Department of Biomedical Engineering, Northwestern University, Evanston, Illinois 60208, United States;

  • 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);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 03:07:57

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