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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Self-Assembly of Peptide Chiral Nanostructures with Sequence-Encoded Enantioseparation Capability
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Self-Assembly of Peptide Chiral Nanostructures with Sequence-Encoded Enantioseparation Capability

机译:肽手性纳米结构的自组装,具有序列编码的映对映对能力

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摘要

Biopolymers such as polysaccharides and proteins have been widely used for the chiral separation of various components due to the intrinsic chirality of the polymers. Amyloid-like short peptides can also self-assemble into diverse chiral supramolecular nanostructures or polymers with precisely tailored architectures driving by noncovalent interactions. However, the use of such supramolecular nanostructures for the resolution and separation of chiral components remains largely unexplored. Here, we report that the self-assembled peptide supramolecular nanostructures can be used for the highly efficient chiral separation of various enantiomers. By rationally designing the constituent amino acid sequence of the peptides and the self-assembling environment, we can fabricate supramolecular polymers with distinct surface charges and architectures, including nanohelices, nanoribbons, nanosheets, nanofibrils, and nanospheres. The various supramolecular nanostructures were then used to resolve the racemic mixtures of α-methylbenzylamine, 2-phenylpropionic acid, and 1-phenylethanol. The results indicated that the self-assembled peptide polymers showed excellent enantioselective separation efficiency for different chiral molecules. The enantioselective separation efficiency of the peptide nanostructures can be tailored by changing their surface charges, morphology, and the constituent amino acid sequences of the peptides.
机译:生物聚合物如多糖和蛋白质已被广泛地用于各种构件的手性分离,由于聚合物的固有的手性。淀粉样蛋白样短肽也自组装成不同的手性超分子的纳米结构或聚合物与精确定制体系结构通过非共价相互作用的驱动。然而,使用用于拆分和手性组分的分离,例如超分子的纳米结构在很大程度上仍然未知。在这里,我们报告,自组装超分子肽纳米结构可以被用于各种对映异构体的高效手性分离。通过合理设计的构成氨基的肽和自组装环境的氨基酸序列,就可以制造具有不同的表面电荷和架构,包括nanohelices,纳米带,纳米片,纳米纤维,纳米球和超分子聚合物。然后将各种超分子的纳米结构被用来解决α甲基苄胺,2-苯基丙酸,和1-苯基乙醇的外消旋混合物。结果表明,所述自组装肽的聚合物显示出对不同的手性分子的对映体选择性优异的分离效率。肽纳米结构的对映选择性的分离效率可以通过改变它们的表面电荷,形态和组成氨基酸的肽的氨基酸序列来定制。

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    State Key Laboratory of Chemical Engineering School of Chemical Engineering and Technology Tianjin University;

    State Key Laboratory of Chemical Engineering School of Chemical Engineering and Technology Tianjin University;

    State Key Laboratory of Chemical Engineering School of Chemical Engineering and Technology Tianjin University;

    State Key Laboratory of Chemical Engineering School of Chemical Engineering and Technology Tianjin University;

    State Key Laboratory of Chemical Engineering School of Chemical Engineering and Technology Tianjin University;

    State Key Laboratory of Chemical Engineering School of Chemical Engineering and Technology Tianjin University;

    State Key Laboratory of Chemical Engineering School of Chemical Engineering and Technology Tianjin University;

    State Key Laboratory of Chemical Engineering School of Chemical Engineering and Technology Tianjin University;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物理化学(理论化学)、化学物理学;化学;
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