A fluorescent probe for progressive tracking glyoxal and sulfite and its application in food analysis and biological imaging.
Yuanyuan Wu, Chang Liu, Huirong Yao, Song He, Liancheng Zhao, Xianshun Zeng
Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy
Abstract
In this work, a mitochondrial-targeted fluorescent probe (AATC) for the progressive detection of glyoxal and SO32-via the formation of a dihydroquinoxaline derivative with glyoxal was developed. The probe exhibited a robust "turn-on" fluorescence response toward glyoxal with high selectivity and sensitivity (0.25 μM) in aqueous solution, and showed potential applications in real samples with high recoveries ranging from 98.12 % to 100.88 %. Furthermore, the probe can monitor both endogenous and exogenous glyoxal, as well as dynamic fluctuations in glyoxal levels during glycolysis and carbonyl stress processes stimulated by acrolein. Importantly, through a red-shifted fluorescence decrease change elicited by the addition reaction on the imine bond of the formed dihydroquinoxaline derivative, the product of the probe with glyoxal can serve as a secondary sensor for sulfite detection, demonstrating effective monitoring capabilities in both aqueous environments and cellular systems.