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Thermoresponsive PEG-Coated Nanotubes as Chiral Selectors of Amino Acids and Peptides

机译:热响应性PEG涂层纳米管作为氨基酸和肽的手性选择器

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摘要

A series of nanotubes with a dense layer of short poly(ethylene glycol) (PEG) chains on the inner surface are prepared by means of a coassembly process using glycolipids and PEG derivatives. Dehydration of the PEG chains by heating increases the hydrophobicity of the nanotube channel and fluorescent-dye-labeled amino acids are extracted from bulk solution. Rehydration of the PEG chains by cooling results in back-extraction of the amino acids into the bulk solution. Because of the supramolecular chirality of the nanotubes, amino acid enantiomers can be separated in the back-extraction procedure, which is detectable with the naked eye as a change in fluorescence as the amino acids are released from the nanotubes. The efficiency and selectivity of the chiral separation are enhanced by tuning the chemical features and inner diameter of the nanotube channels. For example, compared with wide nanotube channels (8 nm), narrow nanotube channels (4 nm) provide more effective electrostatic attraction and hydrogen bond interaction environments for the transporting amino acids. Introduction of branched alkyl chains to the inner surface of the nanotubes enables chiral separation of peptides containing hydrophobic amino acids. The system described here provides a simple, quick, and on-site chiral separation in biological and medical fields.
机译:通过使用糖脂和PEG衍生物的共组合工艺制备内表面上具有致密的短聚(乙二醇)(PEG)链的一系列纳米管。通过加热脱水通过加热增加了纳米管道通道的疏水性,并从本体溶液中提取荧光染料标记的氨基酸。通过冷却将PEG链的再水解导致将氨基酸的后萃取到本体溶液中。由于纳米管的超分子手性,氨基酸对映体可以在后萃取过程中分离,其随着肉眼可检测为荧光的变化,因为氨基酸从纳米管中释放。通过调整纳米管通道的化学特征和内径来增强手性分离的效率和选择性。例如,与宽纳米管通道(8nm)相比,窄纳米管通道(4nm)为转运氨基酸提供更有效的静电吸引和氢键相互作用环境。将支链烷基链引入纳米管内表面能够进行含有疏水氨基酸的肽的手性分离。这里描述的系统在生物和医疗领域提供了简单,快速和现场的手性分离。

著录项

  • 来源
    《Small 》 |2018年第15期| 共9页
  • 作者单位

    Nanomaterials Research Institute Department of Materials and Chemistry National Institute of Advanced Industrial Science and Technology (AIST) Tsukuba Central 5 1-1-1 Higashi Tsukuba Ibaraki 305-8565 Japan;

    Nanomaterials Research Institute Department of Materials and Chemistry National Institute of Advanced Industrial Science and Technology (AIST) Tsukuba Central 5 1-1-1 Higashi Tsukuba Ibaraki 305-8565 Japan;

    Department of Chemistry Faculty of Science Tokyo University of Science 1-3 Kagurazaka Shinjuku-ku Tokyo 162-8601 Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 特种结构材料 ;
  • 关键词

    chiral sensing; chiral separation; polyethylene glycols; supramolecular nanotubes; thermoresponsive materials;

    机译:手性感;手性分离;聚乙二醇;超分子纳米管;热响应材料;

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