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Substituent effect on anthracene-based bisboronic acid glucose sensors
Authors:Gurpreet Kaur
Institution:Department of Chemistry and Center for Biotechnology and Drug Design, Georgia State University, Campus Box 4098, Atlanta, GA 30302-4098, USA
Abstract:Earlier we communicated an anthracene-based bisboronic acid sensor for glucose. Aimed at understanding the substituent effect, we have introduced various functional groups, such as the cyano, nitro, and fluoro group on the boronic acid moiety of this glucose sensor. Fluorescent binding studies indicated that the cyano-substituted sensor (4a) has the highest affinity (K 2540 M−1) for glucose, but the lowest selectivity (three-fold over fructose); the fluoro-substituted compound (4c) shows the lowest affinity (630 M−1) and a modest selectivity (15-fold over fructose); and the unsubstituted one (1a) shows the highest selectivity over fructose (43-fold) and a modest affinity (1472 M−1).
Keywords:Boronic acid  Glucose sensors  Fluorescent sensors  Anthracene boronic acid
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