Key Laboratory of Mesoscopic Chemistry (Ministry of Education), State Key Laboratory of Coordination Chemistry, Collaborative Innovation Center of Chemistry for Life Sciences, School of Chemistry and Chemical Engineering, Nanjing University, Nanjing, 210023, China.
Angew Chem Int Ed Engl. 2017 Mar 1;56(10):2655-2659. doi: 10.1002/anie.201611973. Epub 2017 Jan 31.
Novel supramolecular vesicles based on host-guest systems were coassembled from carboxylate-substituted pillar[6]arene (CPA[6]) and disulfide-linked benzimidazolium amphiphiles, and the microstructures of the CPA-based supramolecular vesicles were clearly elaborated. The supramolecular vesicles showed controlled drug release in response to five stimuli, with glutathione, pH, CO , Zn ions, and hexanediamine, leading to cleavage of the disulfide bonds, protonation of the carboxylate groups, metal chelation, and competitive binding. This is the first case of a smart pillararene-based supramolecular vesicle being integrated with five stimuli-responsive functions to meet the diverse requirements of controlled drug release. Importantly, each of the five stimuli is closely related to microenvironments of tumors and diseases of the human body. The smart stimuli-responsive supramolecular vesicles have promising applications in drug therapy of tumors and relevant diseases.
基于主客体体系的新型超分子囊泡由羧酸取代的柱[6]芳烃(CPA[6])和二硫键连接的苯并咪唑两性离子共组装而成,详细阐述了基于 CPA 的超分子囊泡的微观结构。超分子囊泡对五种刺激表现出可控的药物释放,包括谷胱甘肽、pH 值、CO、Zn 离子和己二胺,导致二硫键断裂、羧酸基团质子化、金属螯合和竞争性结合。这是首例将具有智能功能的基于柱芳烃的超分子囊泡与五种刺激响应功能集成在一起,以满足控制药物释放的多样化需求。重要的是,这五种刺激中的每一种都与肿瘤和人体疾病的微环境密切相关。智能刺激响应超分子囊泡在肿瘤和相关疾病的药物治疗中有广阔的应用前景。