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基于两亲性树枝状四苯乙烯的双响应超分子手性组装体

Dual-Responsive Supramolecular Chiral Assemblies from Amphiphilic Dendronized Tetraphenylethylenes.

作者信息

Zhang Jianan, Lu Xueting, Li Wen, Zhang Afang

机构信息

International Joint Laboratory of Biomimetic and Smart Polymers, School of Materials Science and Engineering, Shanghai University, Nanchen Street 333, Shanghai 200444, China.

出版信息

Molecules. 2023 Sep 12;28(18):6580. doi: 10.3390/molecules28186580.

Abstract

Supramolecular assembly of amphiphilic molecules in aqueous solutions to form stimuli-responsive entities is attractive for developing intelligent supramolecular materials for bioapplications. Here we report on the supramolecular chiral assembly of amphiphilic dendronized tetraphenylethylenes (TPEs) in aqueous solutions. Hydrophobic TPE moieties were connected to the hydrophilic three-fold dendritic oligoethylene glycols (OEGs) through a tripeptide proline-hydroxyproline-glycol (POG) to afford the characteristic topological structural effects of dendritic OEGs and the peptide linker. Both ethoxyl- and methoxyl-terminated dendritic OEGs were used to modulate the overall hydrophilicity of the dendronized TPEs. Their supramolecular aggregates exhibited thermoresponsive behavior that originated from the dehydration and collapse of the dendritic OEGs, and their cloud point temperatures (s) were tailored by solution pH conditions. Furthermore, aggregation-induced fluorescent emission (AIE) from TPE moieties was used as an indicator to follow the assembly, which was reversibly tuned by temperature variation at different pH conditions. Supramolecular assemblies from these dendronized amphiphiles exhibited enhanced supramolecular chirality, which was dominated mainly by the interaction balance between TPE with dendritic OEG and TPE with POG moieties and was modulated through different solvation by changing solution temperature or pH conditions. More interestingly, ethoxyl-terminated dendritic OEG provided a much stronger shielding effect than its methoxyl-terminated counterpart to prevent amino groups within the peptide from protonation, even in strong acidic conditions, resulting in different responsive behavior to the solution temperature and pH conditions for these supramolecular aggregates.

摘要

两亲性分子在水溶液中进行超分子组装以形成刺激响应性实体,这对于开发用于生物应用的智能超分子材料具有吸引力。在此,我们报道两亲性树枝状化四苯乙烯(TPEs)在水溶液中的超分子手性组装。疏水性的TPE部分通过三肽脯氨酸-羟脯氨酸-甘氨酸(POG)连接到亲水性的三分支树枝状低聚乙二醇(OEGs)上,以实现树枝状OEGs和肽连接子的特征拓扑结构效应。乙氧基和甲氧基封端的树枝状OEGs均用于调节树枝状化TPEs的整体亲水性。它们的超分子聚集体表现出热响应行为,该行为源于树枝状OEGs的脱水和塌缩,并且其浊点温度可通过溶液pH条件进行调节。此外,TPE部分的聚集诱导荧光发射(AIE)被用作跟踪组装过程的指标,该指标可在不同pH条件下通过温度变化进行可逆调节。这些树枝状两亲分子形成的超分子组装体表现出增强的超分子手性,其主要由TPE与树枝状OEG之间以及TPE与POG部分之间的相互作用平衡所主导,并通过改变溶液温度或pH条件下的不同溶剂化作用进行调节。更有趣的是,乙氧基封端的树枝状OEG比甲氧基封端的对应物提供了更强的屏蔽效应,即使在强酸性条件下也能防止肽内的氨基质子化,从而导致这些超分子聚集体对溶液温度和pH条件具有不同的响应行为。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7a24/10537776/904598f03b13/molecules-28-06580-sch001.jpg

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