Sugita Ko, Suzuki Yota, Tsuchido Yuji, Fujiwara Shoji, Hashimoto Takeshi, Hayashita Takashi
Department of Materials and Life Sciences, Faculty of Science and Technology, Sophia University 7-1, Kioi-cho Chiyoda-ku Tokyo 102-8554 Japan
Department of Life Science and Medical Bioscience, Graduate School of Advanced Science and Engineering, Waseda University (TWIns) Wakamatsu-cho Shinjuku-ku Tokyo 162-8480 Japan.
RSC Adv. 2022 Jul 14;12(31):20259-20263. doi: 10.1039/d2ra03567g. eCollection 2022 Jul 6.
Various diboronic acid-based chemosensors for d-glucose have been developed for use in diabetes diagnostic systems. However, most of these chemosensors have limitations, such as poor water solubility, difficulties in synthesis, and inability to selectively detect d-glucose from among other saccharides. We report a simple chemosensor based on a supramolecular complex of fluorophenylboronic acid-appended β-cyclodextrin (FPB-βCyD) and an anthracene-based probe having a boronic acid moiety (1). Hydrophobic 1 is encapsulated in the cyclodextrin cavity of FPB-βCyD, making the supramolecular complex (1/FPB-βCyD) applicable in a water-rich solvent mixture (98% water). Interestingly, 1/FPB-βCyD showed a strong turn-on response to d-glucose with a 9.6-fold enhancement in fluorescence intensity, and no response to other saccharides. This study uncovers an innovative approach based on the supramolecular assembly of simple components for the development of a water-soluble d-glucose chemosensor with excellent selectivity.
已经开发出各种用于检测d-葡萄糖的基于二硼酸的化学传感器,用于糖尿病诊断系统。然而,这些化学传感器大多存在局限性,如水溶性差、合成困难以及无法从其他糖类中选择性检测d-葡萄糖。我们报道了一种基于附加氟代苯基硼酸的β-环糊精(FPB-βCyD)与具有硼酸部分的蒽基探针(1)形成的超分子复合物的简单化学传感器。疏水性的1被封装在FPB-βCyD的环糊精腔内,使得超分子复合物(1/FPB-βCyD)适用于富水溶剂混合物(98%水)。有趣的是,1/FPB-βCyD对d-葡萄糖表现出强烈的开启响应,荧光强度增强了9.6倍,对其他糖类无响应。本研究揭示了一种基于简单组分超分子组装的创新方法,用于开发具有优异选择性的水溶性d-葡萄糖化学传感器。