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溶剂挥发-溶解法调控制备肽两亲分子的超分子结构和功能。

Tuning Supramolecular Structure and Functions of Peptide bola-Amphiphile by Solvent Evaporation-Dissolution.

机构信息

State Key Laboratory of Biochemical Engineering, Institute of Process Engineering, Chinese Academy of Sciences , 100190 Beijing, China.

WestCHEM, Department of Pure and Applied Chemistry, University of Strathclyde , Glasgow G1 1XL, United Kingdom.

出版信息

ACS Appl Mater Interfaces. 2017 Jun 28;9(25):21390-21396. doi: 10.1021/acsami.7b05661. Epub 2017 Jun 15.

Abstract

Solvent molecules significantly affect the supramolecular self-assembly, for example, in forming solvent-bridged hydrogen bonding networks. Even small changes in solvent composition can have dramatic impact on supramolecular assembly. Herein, we demonstrate the use of trace solvents (as low as 0.04%) to tune the morphology and consequent functions of supramolecular nanostructures based on an aromatic peptide bola-amphiphile. Specifically, perylene bisimide-(di)glycine-tyrosine (PBI-[GY]) bola-amphiphile was shown to give rise to red-emitting nanofibers when assembled in water, while exposure to trace organic solvents such as tetrahydrofuran (THF) and others via solvent-evaporation followed by aqueous assembly gave rise to white-light-emitting nanospheres. Differential hydrogen bonding between water (donor and acceptor) and THF (acceptor only) impacts supramolecular organization, which was verified using a density functional theory (DFT) simulation. The tunable consequent surface hydrophobicity was utilized in staining the cytoplasm and membrane of cells, respectively. The trace-solvent effect achieved through evaporation-dissolution provides a methodology to mediate the morphologies and consequent functions for supramolecular biomaterials controlled by the self-assembly pathway.

摘要

溶剂分子会显著影响超分子自组装,例如形成溶剂桥氢键网络。即使溶剂组成发生微小变化,也会对超分子组装产生巨大影响。在此,我们展示了使用痕量溶剂(低至 0.04%)来调节基于芳香族肽两亲分子的超分子纳米结构的形态和随后的功能。具体而言,当 PBI-[GY]两亲分子在水中组装时,会产生红色发射的纳米纤维,而通过溶剂蒸发和随后的水溶液组装暴露于痕量有机溶剂(如四氢呋喃(THF)和其他溶剂),则会产生白色发光的纳米球。水(供体和受体)和 THF(仅受体)之间的氢键差异会影响超分子组织,这可以通过密度泛函理论(DFT)模拟来验证。随后的表面疏水性可调性分别用于分别对细胞质和细胞膜进行染色。通过蒸发-溶解实现的痕量溶剂效应提供了一种方法,可以通过自组装途径来调节超分子生物材料的形态和随后的功能。

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