Development of an Enzymatic Biosensor Using Glutamate Oxidase on Organic-Inorganic-Structured, Electrospun Nanofiber-Modified Electrodes for Monosodium Glutamate Detection

BIOSENSORS-BASEL(2023)

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Abstract
Herein, dendrimer-modified montmorillonite (Mt)-decorated poly-sigma-caprolactone (PCL) and chitosan (CHIT)-based nanofibers were prepared. Mt was modified with a poly(amidoamine) generation 1 (PAMAM(G1)) dendrimer, and the obtained PAMAM(G1)-Mt was incorporated into the PCL-CHIT nanofiber's structure. The PCL-CHIT/PAMAM(G1)-Mt nanofibers were conjugated with glutamate oxidase (GluOx) to design a bio-based detection system for monosodium glutamate (MSG). PAMAM(G1)-Mt was added to the PCL-CHIT backbone to provide a multipoint binding side to immobilize GluOx via covalent bonds. After the characterization of PCL-CHIT/PAMAM(G1)-Mt/GluOx, it was calibrated for MSG. The linear ranges were determined from 0.025 to 0.25 mM MSG using PCL-CHIT/Mt/GluOx and from 0.0025 to 0.175 mM MSG using PCL-CHIT/PAMAMG(1)-Mt/GluOx (with a detection limit of 7.019 mu M for PCL-CHIT/Mt/GluOx and 1.045 mu M for PCL-CHIT/PAMAMG(1)-Mt/GluOx). Finally, PCL-CHIT/PAMAMG(1)-Mt/GluOx was applied to analyze MSG content in tomato soup without interfering with the sample matrix, giving a recovery percentage of 103.125%. Hence, the nanofiber modification with dendrimer-intercalated Mt and GluOx conjugation onto the formed nanocomposite structures was performed, and the PCL-CHIT/PAMAM(G1)-Mt/GluOx system was successfully developed for MSG detection.
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Key words
glutamate oxidase,enzymatic biosensor,inorganic-structured,nanofiber-modified
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