研究目的
Developing simple and rapid methods for the monitoring of ENRO residues in food to provide an important advance for controlling antibiotic residues in foods.
研究成果
PDA/TC/SDS nanosensors detected ENRO with a LOD of 0.054 μM, showing potential for cheap and easy preparation of nanosensors for antibiotic residues detection in food matrices. The optimal SDS concentration was around 9–14 mM, and the nanoblend containing L64 showed faster responses than that with F68.
研究不足
Food samples containing molecules absorbing in blue or red region and/or turbid samples should be cleaned-up before the detection analysis.
1:Experimental Design and Method Selection:
The nanoblends were prepared by mixing PDA, TC, and SDS, followed by sonication and UV radiation for polymerization.
2:Sample Selection and Data Sources:
ENRO solutions were prepared in TC/SDS solvent mixtures for analysis.
3:List of Experimental Equipment and Materials:
Included 10,12-Pentacosadiynoic acid, TCs L64 and F68, SDS, and ENRO.
4:Experimental Procedures and Operational Workflow:
Involved preparation of nanoblends, characterization, colorimetric response analysis, kinetic experiments, and fluorescence experiments.
5:Data Analysis Methods:
Statistical analysis using SAS? for modeling the effects of SDS and ENRO concentrations on CR and RCT.
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Zetasizer Nano ZS90
Zetasizer Nano ZS90
Malvern
Used for measuring zeta potential (ζ) and hydrodynamic diameter (Dh) of the nanostructures.
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Lambda 35 UV-Vis spectrophotometer
Lambda 35
Perkin Elmer Inc
Used for obtaining spectra between 400 and 900 nm for colorimetric response analysis.
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LS55 fluorescence spectrophotometer
LS55
Perkin Elmer Inc
Used for fluorescence experiments to analyze the partitioning of ENRO into the nanoblends.
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10,12-Pentacosadiynoic acid
Fluka
Used as a monomer for the preparation of polydiacetylene (PDA) nanosensors.
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Poly(ethylene oxide)-poly(propylene oxide)-poly(ethylene oxide) L64
Sigma-Aldrich
Used as a triblock copolymer in the formation of nanoblends for nanosensors.
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Poly(ethylene oxide)-poly(propylene oxide)-poly(ethylene oxide) F68
Sigma-Aldrich
Used as a triblock copolymer in the formation of nanoblends for nanosensors.
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Sodium dodecyl sulfate
Sigma-Aldrich
Used as a surfactant in the formation of nanoblends for nanosensors.
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Enrofloxacin
Sigma-Aldrich
Target molecule for detection by the developed nanosensors.
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