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SERS-based Ag NCs@PDMS flexible substrate combined with chemometrics for rapid detection of foodborne pathogens on egg surface
by
Liu, Dongli
, Peng, Sasa
, Xin, Mingwei
, Zhang, Zhilong
in
Analytical Chemistry
/ Animals
/ Bacteria
/ Bacterial infections
/ Calibration
/ Characterization and Evaluation of Materials
/ Chemistry
/ Chemistry and Materials Science
/ Data analysis
/ Dimethylpolysiloxanes - chemistry
/ E coli
/ Egg Shell - chemistry
/ Egg Shell - microbiology
/ Eggs
/ Eggs - microbiology
/ Escherichia coli - isolation & purification
/ Feasibility studies
/ Food Contamination - analysis
/ Food Microbiology - methods
/ Food safety
/ Foodborne pathogens
/ Free surfaces
/ Least squares method
/ Metal Nanoparticles - chemistry
/ Methods
/ Microengineering
/ Multivariate analysis
/ Nanochemistry
/ Nanotechnology
/ Original Paper
/ Pathogens
/ Polydimethylsiloxane
/ Principal Component Analysis
/ Principal components analysis
/ Qualitative analysis
/ Quantitative analysis
/ Raman spectra
/ Raman spectroscopy
/ Regression analysis
/ Reproducibility
/ Rhodamine 6G
/ Salmonella
/ Salmonella typhimurium - isolation & purification
/ Silver
/ Silver - chemistry
/ Software
/ Spectrum analysis
/ Spectrum Analysis, Raman - methods
2024
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SERS-based Ag NCs@PDMS flexible substrate combined with chemometrics for rapid detection of foodborne pathogens on egg surface
by
Liu, Dongli
, Peng, Sasa
, Xin, Mingwei
, Zhang, Zhilong
in
Analytical Chemistry
/ Animals
/ Bacteria
/ Bacterial infections
/ Calibration
/ Characterization and Evaluation of Materials
/ Chemistry
/ Chemistry and Materials Science
/ Data analysis
/ Dimethylpolysiloxanes - chemistry
/ E coli
/ Egg Shell - chemistry
/ Egg Shell - microbiology
/ Eggs
/ Eggs - microbiology
/ Escherichia coli - isolation & purification
/ Feasibility studies
/ Food Contamination - analysis
/ Food Microbiology - methods
/ Food safety
/ Foodborne pathogens
/ Free surfaces
/ Least squares method
/ Metal Nanoparticles - chemistry
/ Methods
/ Microengineering
/ Multivariate analysis
/ Nanochemistry
/ Nanotechnology
/ Original Paper
/ Pathogens
/ Polydimethylsiloxane
/ Principal Component Analysis
/ Principal components analysis
/ Qualitative analysis
/ Quantitative analysis
/ Raman spectra
/ Raman spectroscopy
/ Regression analysis
/ Reproducibility
/ Rhodamine 6G
/ Salmonella
/ Salmonella typhimurium - isolation & purification
/ Silver
/ Silver - chemistry
/ Software
/ Spectrum analysis
/ Spectrum Analysis, Raman - methods
2024
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SERS-based Ag NCs@PDMS flexible substrate combined with chemometrics for rapid detection of foodborne pathogens on egg surface
by
Liu, Dongli
, Peng, Sasa
, Xin, Mingwei
, Zhang, Zhilong
in
Analytical Chemistry
/ Animals
/ Bacteria
/ Bacterial infections
/ Calibration
/ Characterization and Evaluation of Materials
/ Chemistry
/ Chemistry and Materials Science
/ Data analysis
/ Dimethylpolysiloxanes - chemistry
/ E coli
/ Egg Shell - chemistry
/ Egg Shell - microbiology
/ Eggs
/ Eggs - microbiology
/ Escherichia coli - isolation & purification
/ Feasibility studies
/ Food Contamination - analysis
/ Food Microbiology - methods
/ Food safety
/ Foodborne pathogens
/ Free surfaces
/ Least squares method
/ Metal Nanoparticles - chemistry
/ Methods
/ Microengineering
/ Multivariate analysis
/ Nanochemistry
/ Nanotechnology
/ Original Paper
/ Pathogens
/ Polydimethylsiloxane
/ Principal Component Analysis
/ Principal components analysis
/ Qualitative analysis
/ Quantitative analysis
/ Raman spectra
/ Raman spectroscopy
/ Regression analysis
/ Reproducibility
/ Rhodamine 6G
/ Salmonella
/ Salmonella typhimurium - isolation & purification
/ Silver
/ Silver - chemistry
/ Software
/ Spectrum analysis
/ Spectrum Analysis, Raman - methods
2024
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SERS-based Ag NCs@PDMS flexible substrate combined with chemometrics for rapid detection of foodborne pathogens on egg surface
Journal Article
SERS-based Ag NCs@PDMS flexible substrate combined with chemometrics for rapid detection of foodborne pathogens on egg surface
2024
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Overview
An innovative method is introduced based on the combination of label-free surface-enhanced Raman scattering with advanced multivariate analysis. This technique allows both quantitative and qualitative assessment of
Salmonella typhimurium
and
Escherichia coli
on eggshells. Using silver nanocubes embedded in polydimethylsiloxane, we consistently achieved Raman spectra of bacteria. The stability of the Ag NCs@PDMS substrate is confirmed using rhodamine 6G over 30 days under standard conditions. Principal component analysis (PCA) effectively distinguishes between
S. typhimurium
and
E. coli
spectra. Partial least squares regression (PLS) models were developed for quantitative determination of bacteria on egg surfaces, yielding accurate results with minimal error. The
S. typhimurium
model achieves
R
c
2
= 0.9563 and RMSEC = 0.601 in calibration, and
R
v
2
= 0.9113 and RMSEV = 0.907 in validation. Similarly, the
E. coli
model achieves
R
c
2
= 0.9877 and RMSEC = 0.322 in calibration, and
R
v
2
= 0.9606 and RMSEV = 0.579 in validation. Recoveries validate PLS predictions by inoculating egg surfaces with varying bacterial amounts. Our study demonstrates the feasibility of SERS-PLS for quantitative determination of
S. typhimurium
and
E. coli
on eggshells, promising enhanced food safety protocols.
Graphical Abstract
Publisher
Springer Vienna,Springer Nature B.V
Subject
/ Animals
/ Bacteria
/ Characterization and Evaluation of Materials
/ Chemistry and Materials Science
/ Dimethylpolysiloxanes - chemistry
/ E coli
/ Eggs
/ Escherichia coli - isolation & purification
/ Food Contamination - analysis
/ Metal Nanoparticles - chemistry
/ Methods
/ Principal Component Analysis
/ Principal components analysis
/ Salmonella typhimurium - isolation & purification
/ Silver
/ Software
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