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Rapid Nanoprobe Signal Enhancement by In Situ Gold Nanoparticle Synthesis
Published on: March 7, 2018
Ag nanoparticles grown on a waste eggshell membrane as an efficient monolithic oxidase mimic for ascorbic acid
Qiuxia Deng1, Shuang Xiao1, Jinyi Xie1
1Key Laboratory of Green Materials and Technology, College of Chemistry and Materials Science, Chongqing Normal University, Chongqing 401331, China. jphdp868@126.com.
Abstract:
Nanozymes act as a promising alternative to natural enzymes in constructing a colorimetric sensing platform for biosensing and food analysis, yet most nanozymes are in powder form and require special separation prior to colorimetric detection. To address such issues, monolithic architecture has attracted more attention due to its simple operation and convenient control. In this work, Ag nanoparticles (Ag NPs) grown on discarded eggshell membranes (Ag/ESM) were proposed as a novel biomaterial based monolithic oxidase mimic to fabricate a colorimetric sensing platform for ascorbic acid (AA) detection. Due to the abundant reductive functional groups in ESM protein, Ag NPs were acquired through the auto-reduction of Ag+ without the participation of other reductive agents. These Ag NPs feature small size and high dispersion, which make them highly active in triggering 3,3',5,5'-tetramethylbenzidine (TMB) oxidation, with a low Km of 0.118 mM and a high Vmax of 1.32 × 10-7 M s-1. More significantly, Ag/ESM as a monolithic oxidase mimic holds great merits of simple operation and facile control of the enzyme-mimicking reaction for on-demand analysis. A colorimetric sensing platform based on an Ag/ESM-TMB system was established, which exhibits excellent sensitivity and selectively for AA detection, as well as remarkable feasibility and reliability for real food samples. This work exemplifies a novel "turn trash to treasure" strategy to fabricate a Ag-based monolithic oxidase mimic by using waste ESM as the matrix, and establishes a simple but sensitive colorimetric sensing platform for AA in food samples.

