Liu Zhixue, Zhou Weilei, Li Jingjing, Zhang Haoyang, Dai Xianyin, Liu Yaohua, Liu Yu
State Key Laboratory of Elemento-Organic Chemistry, College of Chemistry, Nankai University Tianjin 300071 P. R. China
Chem Sci. 2020 Apr 22;11(18):4791-4800. doi: 10.1039/d0sc00414f.
A unique fluorescent supramolecular assembly was constructed using coumarin-modified β-cyclodextrin as a reversible ratiometric probe and an adamantane-modified cyclic arginine-glycine-aspartate peptide as a cancer-targeting agent host-guest inclusion complexation. Importantly, the coumarin-modified β-cyclodextrin not only showed higher sensitivity than the parent coumarin derivatives owing to the presence of numerous hydroxyl groups on the cyclodextrin but also provided a hydrophobic cavity for encapsulation of a cancer-targeting agent. The assembly showed a reversible and fast response to biothiols with a micromolar dissociation constant, as well as outstanding cancer cell permeability, which can be used for high-efficiency real-time monitoring of biothiols in cancer cells. This supramolecular assembly strategy endows the fluorescent probe with superior performance for dynamic sensing of biothiols.
使用香豆素修饰的β-环糊精作为可逆比率探针,以及金刚烷修饰的环化精氨酸-甘氨酸-天冬氨酸肽作为癌症靶向剂,通过主客体包合络合构建了一种独特的荧光超分子组装体。重要的是,香豆素修饰的β-环糊精不仅由于环糊精上存在大量羟基而比母体香豆素衍生物表现出更高的灵敏度,而且还提供了一个疏水腔用于封装癌症靶向剂。该组装体对生物硫醇表现出可逆且快速的响应,解离常数为微摩尔级,同时具有出色的癌细胞渗透性,可用于高效实时监测癌细胞中的生物硫醇。这种超分子组装策略赋予荧光探针卓越的性能,用于动态传感生物硫醇。