Fang Guiqian, Wang Hao, Bian Zhancun, Sun Jie, Liu Aiqin, Fang Hao, Liu Bo, Yao Qingqiang, Wu Zhongyu
School of Medicine and Life Sciences, University of Jinan-Shandong Academy of Medical Sciences Jinan 250200 Shandong China
Institute of Materia Medica, Shandong Academy of Medical Sciences Jinan 250062 Shandong China.
RSC Adv. 2018 Aug 20;8(51):29400-29427. doi: 10.1039/c8ra04503h. eCollection 2018 Aug 14.
As Lewis acids, boronic acids can bind with 1,2- or 1,3-diols in aqueous solution reversibly and covalently to form five or six cyclic esters, thus resulting in significant fluorescence changes. Based on this phenomenon, boronic acid compounds have been well developed as sensors to recognize carbohydrates or other substances. Several reviews in this area have been reported before, however, novel boronic acid-based fluorescent sensors have emerged in large numbers in recent years. This paper reviews new boron-based sensors from the last five years that can detect carbohydrates such as glucose, ribose and sialyl Lewis A/X, and other substances including catecholamines, reactive oxygen species, and ionic compounds. And emerging electrochemically related fluorescent sensors and functionalized boronic acid as new materials including nanoparticles, smart polymer gels, and quantum dots were also involved. By summarizing and discussing these newly developed sensors, we expect new inspiration in the design of boronic acid-based fluorescent sensors.
作为路易斯酸,硼酸可在水溶液中与1,2 - 二醇或1,3 - 二醇可逆且共价结合,形成五元或六元环状酯,从而导致显著的荧光变化。基于这一现象,硼酸化合物已被广泛开发为识别碳水化合物或其他物质的传感器。此前已有多篇该领域的综述报道,然而,近年来新型硼酸基荧光传感器大量涌现。本文综述了过去五年中新型硼基传感器,这些传感器可检测葡萄糖、核糖和唾液酸化路易斯A/X等碳水化合物,以及儿茶酚胺、活性氧和离子化合物等其他物质。同时还涉及了新兴的与电化学相关的荧光传感器以及作为新材料的功能化硼酸,包括纳米颗粒、智能聚合物凝胶和量子点。通过总结和讨论这些新开发的传感器,我们期望能为硼酸基荧光传感器的设计带来新的灵感。