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氯化十六烷基吡啶与葫芦[5/7]脲的刺激响应性超分子胶束组装体

Stimuli-responsive supramolecular micellar assemblies of cetylpyridinium chloride with cucurbit[5/7]urils.

作者信息

Choudhury Sharmistha Dutta, Barooah Nilotpal, Aswal Vinod Kumar, Pal Haridas, Bhasikuttan Achikanath C, Mohanty Jyotirmayee

机构信息

Radiation & Photochemistry Division, Bhabha Atomic Research Centre, Mumbai 400 085, India.

出版信息

Soft Matter. 2014 May 21;10(19):3485-93. doi: 10.1039/c3sm52024b. Epub 2014 Mar 20.

Abstract

This article demonstrates, for the first time, construction of novel cucurbituril (CB)-adorned supramolecular micellar assemblies of a cationic surfactant, cetylpyridinium chloride (CPC), through noncovalent host-guest interactions. The distinct cation receptor features and cavity dimensions of the CB5 and CB7 homologues assert that the macrocyclic hosts remain complexed with the CPC monomers and take part in the micelle formation, a unique observation in contrast to that of the classical host, β-cyclodextrin. The cooperative contributions of the CB macrocycles in the micelle formation have been documented by the photochemical, surface tension, conductivity, DOSY NMR, and SANS measurements. The contrasting downward and upward shifts in the cmc of the CPC surfactant, respectively, with CB5 and CB7 hosts provide a unique opportunity for the controlled tuning of the micellization region for CPC from 0.57 to 1.6 mM, by using a combination of the macrocyclic hosts. The article also establishes the reversible response of these soft supramolecular micellar structures to thermal-stimuli, which projects their utility for on-demand smart drug-delivery vehicles.

摘要

本文首次展示了通过非共价主客体相互作用构建新型葫芦脲(CB)修饰的阳离子表面活性剂十六烷基吡啶氯化物(CPC)的超分子胶束聚集体。CB5和CB7同系物独特的阳离子受体特征和空腔尺寸表明,大环主体与CPC单体保持络合,并参与胶束形成,这与经典主体β-环糊精形成对比,是一个独特的观察结果。通过光化学、表面张力、电导率、扩散排序核磁共振(DOSY NMR)和小角中子散射(SANS)测量记录了CB大环在胶束形成中的协同作用。分别与CB5和CB7主体结合时,CPC表面活性剂临界胶束浓度(cmc)出现相反的向下和向上移动,这为通过组合大环主体将CPC的胶束化区域从0.57 mM可控调节到1.6 mM提供了独特机会。本文还证实了这些柔软的超分子胶束结构对热刺激的可逆响应,这表明它们可用于按需智能药物递送载体。

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