School of Medicine and Life Sciences, University of Jinan-Shandong Academy of Medical Sciences, Jinan 250200, Shandong, China.
Analyst. 2020 Feb 3;145(3):719-744. doi: 10.1039/c9an00741e.
Boronic acids reversibly and covalently bind to Lewis bases and polyols, which facilitated the development of a large number of chemical sensors to recognize carbohydrates, catecholamines, ions, hydrogen peroxide, and so on. However, as the binding mechanism of boronic acids and analytes is not very clear, it is still a challenge to discover sensors with high affinity and selectivity. In this review, boronic acid sensors with two recognition sites, including diboronic acid sensors, and monoboronic acid sensors having another group or binding moiety, are summarized. Owing to double recognition sites working synergistically, the binding affinity and selectivity of sensors can be improved significantly. This review may help researchers to sort out the binding rules and develop ideal boronic acid-based sensors.
硼酸可逆且共价地与路易斯碱和多元醇结合,这促进了大量化学传感器的发展,用于识别碳水化合物、儿茶酚胺、离子、过氧化氢等。然而,由于硼酸和分析物的结合机制不是很清楚,因此仍然是一个挑战,需要发现具有高亲和力和选择性的传感器。在这篇综述中,总结了具有两个识别位点的硼酸传感器,包括二硼酸传感器,以及具有另一个基团或结合部分的单硼酸传感器。由于两个识别位点协同作用,传感器的结合亲和力和选择性可以得到显著提高。这篇综述可能有助于研究人员整理出结合规则,并开发理想的基于硼酸的传感器。