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Catalytic Scavenging of Plant Reactive Oxygen Species In Vivo by Anionic Cerium Oxide Nanoparticles
Published on: August 26, 2018
S-doping regulated cerium active sites in CeN nanozyme for enhanced peroxidase-like activity toward GSH detection and
Dong Wu1, Fuying Zhu2, Yamei Lin3
1School of Food Science and Pharmaceutical Engineering, Nanjing Normal University, Nanjing 210023, China.
Abstract:
Abnormal expression of glutathione (GSH) disrupts the redox equilibrium in organisms, while conventional detection methods are often cumbersome and time-consuming. Herein, a Ce-based graphene-like carbon material (S@Ce-N-C) with excellent POD-like activity was developed using an S-doping pyrolysis strategy. S@Ce-N-C can oxidize colorless TMB to blue oxTMB, while changes in GSH concentration can inhibit its degree of oxidation, resulting in distinct colorimetric response variations. Accordingly, a four-channel colorimetric sensor array for GSH detection was developed, displaying a linear range of 5-100 μM and a detection limit of 0.49 μM. Principal Component Analysis (PCA) and Hierarchical Cluster Analysis (HCA) demonstrated that the four-channel colorimetric sensor array exhibited excellent discrimination between tumor cells and normal cells, overcoming the limitations of the single-channel colorimetric sensor array. Moreover, given that the POD-like activity of S@Ce-N-C could catalyze H2O2 to generate toxic hydroxyl radicals (•OH), S@Ce-N-C also exhibited unique antibacterial properties.

