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Detection of Soybean-Derived Components in Dairy Products Using Proofreading Enzyme-Mediated Probe Cleavage Coupled with Ladder-Shape Melting Temperature Isothermal Amplification (Proofman–LMTIA)

Food adulteration is a serious problem all over the world. Establishing an accurate, sensitive and fast detection method is an important part of identifying food adulteration. Herein, a sequence-specific ladder-shape melting temperature isothermal amplification (LMTIA) assay was reported to detect s...

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Autores principales: Xiao, Fugang, Gu, Menglin, Zhang, Yaoxuan, Xian, Yaodong, Zheng, Yaotian, Zhang, Yongqing, Sun, Juntao, Ding, Changhe, Zhang, Guozhi, Wang, Deguo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9964665/
https://www.ncbi.nlm.nih.gov/pubmed/36838673
http://dx.doi.org/10.3390/molecules28041685
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author Xiao, Fugang
Gu, Menglin
Zhang, Yaoxuan
Xian, Yaodong
Zheng, Yaotian
Zhang, Yongqing
Sun, Juntao
Ding, Changhe
Zhang, Guozhi
Wang, Deguo
author_facet Xiao, Fugang
Gu, Menglin
Zhang, Yaoxuan
Xian, Yaodong
Zheng, Yaotian
Zhang, Yongqing
Sun, Juntao
Ding, Changhe
Zhang, Guozhi
Wang, Deguo
author_sort Xiao, Fugang
collection PubMed
description Food adulteration is a serious problem all over the world. Establishing an accurate, sensitive and fast detection method is an important part of identifying food adulteration. Herein, a sequence-specific ladder-shape melting temperature isothermal amplification (LMTIA) assay was reported to detect soybean-derived components using proofreading enzyme-mediated probe cleavage (named Proofman), which could realize real-time and visual detection without uncapping. The results showed that, under the optimal temperature of 57 °C, the established Proofman–LMTIA method for the detection of soybean-derived components in dairy products was sensitive to 1 pg/μL, with strong specificity, and could distinguish soybean genes from those of beef, mutton, sunflower, corn, walnut, etc. The established Proofman–LMTIA detection method was applied to the detection of actual samples of cow milk and goat milk. The results showed that the method was accurate, stable and reliable, and the detection results were not affected by a complex matrix without false positives or false negatives. It was proved that the method could be used for the detection and identification of soybean-derived components in actual dairy products samples.
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spelling pubmed-99646652023-02-26 Detection of Soybean-Derived Components in Dairy Products Using Proofreading Enzyme-Mediated Probe Cleavage Coupled with Ladder-Shape Melting Temperature Isothermal Amplification (Proofman–LMTIA) Xiao, Fugang Gu, Menglin Zhang, Yaoxuan Xian, Yaodong Zheng, Yaotian Zhang, Yongqing Sun, Juntao Ding, Changhe Zhang, Guozhi Wang, Deguo Molecules Article Food adulteration is a serious problem all over the world. Establishing an accurate, sensitive and fast detection method is an important part of identifying food adulteration. Herein, a sequence-specific ladder-shape melting temperature isothermal amplification (LMTIA) assay was reported to detect soybean-derived components using proofreading enzyme-mediated probe cleavage (named Proofman), which could realize real-time and visual detection without uncapping. The results showed that, under the optimal temperature of 57 °C, the established Proofman–LMTIA method for the detection of soybean-derived components in dairy products was sensitive to 1 pg/μL, with strong specificity, and could distinguish soybean genes from those of beef, mutton, sunflower, corn, walnut, etc. The established Proofman–LMTIA detection method was applied to the detection of actual samples of cow milk and goat milk. The results showed that the method was accurate, stable and reliable, and the detection results were not affected by a complex matrix without false positives or false negatives. It was proved that the method could be used for the detection and identification of soybean-derived components in actual dairy products samples. MDPI 2023-02-10 /pmc/articles/PMC9964665/ /pubmed/36838673 http://dx.doi.org/10.3390/molecules28041685 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Xiao, Fugang
Gu, Menglin
Zhang, Yaoxuan
Xian, Yaodong
Zheng, Yaotian
Zhang, Yongqing
Sun, Juntao
Ding, Changhe
Zhang, Guozhi
Wang, Deguo
Detection of Soybean-Derived Components in Dairy Products Using Proofreading Enzyme-Mediated Probe Cleavage Coupled with Ladder-Shape Melting Temperature Isothermal Amplification (Proofman–LMTIA)
title Detection of Soybean-Derived Components in Dairy Products Using Proofreading Enzyme-Mediated Probe Cleavage Coupled with Ladder-Shape Melting Temperature Isothermal Amplification (Proofman–LMTIA)
title_full Detection of Soybean-Derived Components in Dairy Products Using Proofreading Enzyme-Mediated Probe Cleavage Coupled with Ladder-Shape Melting Temperature Isothermal Amplification (Proofman–LMTIA)
title_fullStr Detection of Soybean-Derived Components in Dairy Products Using Proofreading Enzyme-Mediated Probe Cleavage Coupled with Ladder-Shape Melting Temperature Isothermal Amplification (Proofman–LMTIA)
title_full_unstemmed Detection of Soybean-Derived Components in Dairy Products Using Proofreading Enzyme-Mediated Probe Cleavage Coupled with Ladder-Shape Melting Temperature Isothermal Amplification (Proofman–LMTIA)
title_short Detection of Soybean-Derived Components in Dairy Products Using Proofreading Enzyme-Mediated Probe Cleavage Coupled with Ladder-Shape Melting Temperature Isothermal Amplification (Proofman–LMTIA)
title_sort detection of soybean-derived components in dairy products using proofreading enzyme-mediated probe cleavage coupled with ladder-shape melting temperature isothermal amplification (proofman–lmtia)
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9964665/
https://www.ncbi.nlm.nih.gov/pubmed/36838673
http://dx.doi.org/10.3390/molecules28041685
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