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Nanosupramolecular assembly of amphiphilic guest mediated by cucurbituril for doxorubicin delivery

机译:纳米芦属植物的两亲宫用于葫芦菌介导的多柔枯蛋白递送

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摘要

Nanosupramolecular amphiphilic assemblies have aroused significant attention in the biomaterials field and find potential applications in biomimetic synthesis, controlled/sustained drug release, and targeted imaging and diagnosis. In this work, a drug delivery system has been constructed by the host–guest complexation of cucurbit[6]uril (CB[6]) with a bifunctional guest compound (DTA) possessing one alkyl head and two ammonium tails. The assistance of CB[6] can dramatically decrease the critical aggregation concentration of this amphiphilic guest, thus leading to the formation of uniform and stable supramolecular nanoparticles (DTA·CB[6] NPs) at relatively lower concentration in water. Spectroscopic and microscopic experiments jointly demonstrate that the obtained NPs can not only encapsulate hydrophobic dye as molecular probe but also load hydrophilic drug (doxorubicin, DOX) in its internal microenvironment. In addition, when the hydrophobic region of DTA is included by α-cyclodextrin, the DTA·CB[6] NPs are completely dissipated and the encapsulated substrates can be released in a controlled manner. More interestingly, the DOX-loaded NPs exhibited better anticancer activity toward tumor cells, and therefore, the present study may provide a biocompatible platform in the construction of smart nanocarriers for on-demand drug delivery and release.
机译:纳米果分子两亲组件在生物材料领域引起了显着的关注,并在仿生合成,受控/持续的药物释放和靶向成像和诊断中找到潜在的应用。在这项工作中,通过葫芦[6] URIL(CB [6])的宿主 - 访客络合(CB [6])与具有一个烷基头和两种铵尾部的双官能化合物(DTA)构成的药物递送系统。 CB [6]的辅助可以显着降低这种两亲客人的关键聚集浓度,从而导致在水中相对较低的浓度下形成均匀和稳定的超分子纳米颗粒(DTA·Cb [6] NPS)。光谱和微观实验共同证明所获得的NP不能仅将疏水染料包封作为分子探针,而是在其内部微环境中加载亲水药物(Doxorubicin,Dox)。另外,当DTA的疏水区域由α-环糊精包括时,DTA·Cb [6] NPS完全耗散,并且可以以受控的方式释放包封的基材。更有趣的是,DOX加载的NPS对肿瘤细胞表现出更好的抗癌活动,因此,本研究可以在智能纳米载体的构建中提供生物相容性平台,以供应药物输送和释放。

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