Non-enzymatic detection of uric acid in serum and urine by fluorescent and visual dual-mode sensor based on 3- aminophenylboric acid functionalized carbon dots

Author:

Li Xin1,Chen Guoqing1,Hu Anqi1,Xiong Yi1,Yang Taiqun1,Ma Chaoqun1,Li Lei1,Gao Hui1,Zhu Chun1,Wu Yamin1,Gu Jiao1,Wu Hui1,Zhou Yan1,Guan Weinan1,Zhang Wei1

Affiliation:

1. Jiangnan University

Abstract

Abstract Herein, we developed a sophisticated dual-mode sensor that utilized 3-aminophenylboric acid functionalized carbon dots (APBA-CDs) to accurately detect uric acid (UA). Our innovative process involved synthesizing APBA-CDs that emitted at 369 nm using a one-step hydrothermal method with 3-aminophenylboric acid and L-glutamine as precursors, ethanol and deionized water as solvents. Once UA was introduced to the APBA-CDs, the fluorescence of the system became visibly quenched. The results of Zeta potential, Fourier transformed infrared (FTIR) spectra, fluorescence lifetime, and other characteristics were analyzed to determine that the reaction mechanism was static quenching. This meant that after UA was mixed with APBA-CDs, it combined with the boric acid genes on the surface to form complexes, resulting in a decrease in fluorescence intensity and a blue shift in the absorption peak at about 295 nm in the Ultraviolet-visible (UV-vis) absorption spectra. We were pleased to report that we have successfully used the dual-reading platform to accurately detect UA in serum and human urine. It provided a superior quantitative and visual analysis of UA without the involvement of enzymes. We firmly believe that our innovative dual-mode sensor has immense potential in the fields of biosensing and health monitoring.

Publisher

Research Square Platform LLC

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