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1.
J Food Drug Anal ; 32(2): 184-193, 2024 Jun 15.
Article in English | MEDLINE | ID: mdl-38934688

ABSTRACT

Aflatoxin B1, a major global food safety concern, is produced by toxigenic fungi during crop growing, drying, and storage, and shows increasing annual prevalence. This study aimed to detect aflatoxin B1 in chili samples using ATR-FTIR coupled with machine learning algorithms. We found that 83.6% of the chili powder samples were contaminated with Aspergillus and Penicillium species, with aflatoxin B1 levels ranging from 7.63 to 44.32 µg/kg. ATR-FTIR spectroscopy in the fingerprint region (1800-400 cm-1) showed peak intensity variation in the bands at 1587, 1393, and 1038 cm-1, which are mostly related to aflatoxin B1 structure. The PCA plots from samples with different trace amounts of aflatoxin B1 could not be separated. Vibrational spectroscopy combined with machine learning was applied to address this issue. The logistic regression model had the best F1 score with the highest %accuracy (73%), %sensitivity (73%), and %specificity (71%), followed by random forest and support vector machine models. Although the logistic regression model contributed significant findings, this study represents a laboratory research project. Because of the peculiarities of the ATR-FTIR spectral measurements, the spectra measured for several batches may differ, necessitating running the model on multiple spectral ranges and using increased sample sizes in subsequent applications. This proposed method has the potential to provide rapid and accurate results and may be valuable in future applications regarding toxin detection in foods when simple onsite testing is required.


Subject(s)
Aflatoxin B1 , Aspergillus , Capsicum , Food Contamination , Capsicum/chemistry , Spectroscopy, Fourier Transform Infrared/methods , Aflatoxin B1/analysis , Food Contamination/analysis , Aspergillus/chemistry , Powders/chemistry , Penicillium/chemistry
2.
Anal Chem ; 96(21): 8543-8551, 2024 May 28.
Article in English | MEDLINE | ID: mdl-38748432

ABSTRACT

In this study, the covalently fixed "end-on" orientation of a monoclonal Listeria monocytogenes antibody (mAb-Lis) to amino terminated oligo (ethylene glycol)-capped gold nanoparticles (NH2-TEG-AuNPs) was used to fabricate an in-house lateral flow strip (LFS), namely, the fixed "end-on" Lis-mAb-NH-TEG-AuNPs LFS. The aim was to evaluate the performance of the fixed "end-on" Lis-mAb-NH-TEG-AuNPs LFS in detecting L. monocytogenes. The proposed LFS enabled the sensitive detection of L. monocytogenes in 15 min with a visual limit of detection of 102 CFU/mL. Quantitative analysis indicated an LOD at 10 CFU/mL. The fixed "end-on" Lis-mAb-NH-TEG-AuNPs LFS showed no cross-reactivity with other pathogenic bacteria and practical performance across different food matrices, including human blood, milk, and mushroom samples. Furthermore, the clinical performance of the fixed "end-on" Lis-mAb-NH-TEG-AuNPs LFS for detecting L. monocytogenes was evaluated by using 12 clinical samples validated by the hemoculture method. It demonstrated excellent concordance with the reference methods, with no false-positive or false-negative results observed. Therefore, the fixed "end-on" Lis-mAb-NH-TEG-AuNPs LFS serves as a promising candidate for a point-of-care test (POCT), enabling the rapid, precise, and highly sensitive detection of L. monocytogenes in clinical samples and contaminated food.


Subject(s)
Antibodies, Monoclonal , Gold , Listeria monocytogenes , Metal Nanoparticles , Listeria monocytogenes/isolation & purification , Listeria monocytogenes/immunology , Gold/chemistry , Metal Nanoparticles/chemistry , Antibodies, Monoclonal/immunology , Antibodies, Monoclonal/chemistry , Humans , Limit of Detection , Food Microbiology , Milk/microbiology , Milk/chemistry , Antibodies, Bacterial/chemistry , Antibodies, Bacterial/immunology , Antibodies, Immobilized/chemistry , Antibodies, Immobilized/immunology , Animals , Listeriosis/microbiology , Listeriosis/diagnosis
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