Development of a novel visual assay for ultrasensitive detection of Listeria monocytogenes in milk and chicken meat harnessing helix loop-mediated isothermal amplification (HAMP)

被引:7
作者
Prasad, M. C. B. [1 ]
Milton, A. A. P. [2 ]
Menon, V. K. [1 ]
Srinivas, K. [3 ]
Bhargavi, D. [3 ]
Das, S. [2 ]
Ghatak, S. [2 ]
Vineesha, S. L. [4 ]
Sunil, B. [1 ]
Latha, C. [1 ]
Priya, P. M. [1 ]
Thomas, N. [1 ]
机构
[1] Kerala Vet & Anim Sci Univ, Coll Vet & Anim Sci, Mannuthy, Kerala, India
[2] ICAR Res Complex NEH Reg, Div Anim & Fisheries Sci, Umiam, Meghalaya, India
[3] ICAR Indian Vet Res Inst, Div Vet Publ Hlth, Bareilly, Uttar Pradesh, India
[4] Univ Calgary, Dept Ecosyst & Publ Hlth, Calgary, AB, Canada
关键词
HAMP; Rapid detection; Isothermal assay; Listeria monocytogenes; hlyA; Food; CULTURE;
D O I
10.1016/j.foodcont.2023.110081
中图分类号
TS2 [食品工业];
学科分类号
0832 ;
摘要
Listeria monocytogenes causes foodborne listeriosis, which is an important food safety and public health problem. Monitoring them in the food chain using simple and affordable methods is of paramount importance to avoid untoward consequences. In this study, we have developed and evaluated a novel helix loop-mediated isothermal amplification (HAMP) assay integrating simple three-step centrifugation DNA isolation and pre-added hydroxynaphthol blue (HNB) dye-based result interpretation. Specific amplification of the hlyA gene of L. monocytogenes was ascertained by deploying reference and field strains of L. monocytogenes (n = 16), non-monocytogenes Listeria (n = 3) and other bacteria (n = 15). The analytical sensitivity of HAMP, real-time, and end-point PCR methods was 5.4 fg/& mu;L, 540 fg/& mu;L and 5.4 pg/& mu;L, respectively, displaying 100x more sensitivity than real-time PCR. The detection limit (LoD) of the developed HAMP assay was determined by analysing milk and chicken meat artificially spiked with ten-fold sequential dilutions of L. monocytogenes. The influence of brief enrichment (3 h/6 h) in LoD was also analysed and compared with endpoint and real-time PCR assays. In artificially contaminated milk, the limits of detection of the HAMP assay were 120 CFU/mL, 12 CFU/mL, and 1.2 CFU/mL without any enrichment, after 3 h and 6 h enrichment, respectively. Whereas in artificially contaminated chicken meat, the detection limits without any enrichment, after 3 h and 6 h enrichment were 1500 CFU/g, 150 CFU/g, and 15 CFU/g, respectively. The real-world applicability of the HAMP assay was also assessed by screening field milk and meat samples (n = 200). The developed HAMP assay is more simple, rapid, sensitive, and specific for the detection of L. monocytogenes in food samples, especially in resource-poor establishments. To our knowledge, this is the first study to develop a HAMP assay for the detection of a bacterial pathogen.
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页数:14
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共 31 条
  • [1] [Anonymous], 2021, Data Transfer Project
  • [2] Rapid visual detection of Vibrio parahaemolyticus in seafood samples by loop-mediated isothermal amplification with hydroxynaphthol blue dye
    Anupama, Karanth Padyana
    Nayak, Ashwath
    Karunasagar, Indrani
    Maiti, Biswajit
    [J]. WORLD JOURNAL OF MICROBIOLOGY & BIOTECHNOLOGY, 2020, 36 (05)
  • [3] Listeria monocytogenes survival in raw Atlantic salmon (Salmo salar) fillet under in vitro simulated gastrointestinal conditions by culture, qPCR and PMA-qPCR detection methods
    Barretta, Clarissa
    Verruck, Silvani
    Maran, Bruna Marchesan
    Mauricio, Leticia dos Santos
    Miotto, Marilia
    Werneck Vieira, Cleide Rosana
    Prudencio, Elane Schwinden
    [J]. LWT-FOOD SCIENCE AND TECHNOLOGY, 2019, 107 : 132 - 137
  • [4] Probing antimicrobial resistance and sanitizer tolerance themes and their implications for the food industry through the Listeria monocytogenes lens
    Bland, Rebecca
    Brown, Stephanie R. B.
    Waite-Cusic, Joy
    Kovacevic, Jovana
    [J]. COMPREHENSIVE REVIEWS IN FOOD SCIENCE AND FOOD SAFETY, 2022, 21 (02) : 1777 - 1802
  • [5] The European Union One Health 2021 Zoonoses Report
    Boelaert, Frank
    Amore, Giusi
    Rizzi, Valentina
    Stoicescu, Anca
    Felicio, Maria Teresa Da Silva
    Correia, Sandra Luisa De Almeida Florentino
    Hempen, Michaela
    Messens, Winy
    Antoniou, Sotiria-Eleni
    Baldinelli, Francesca
    Broglia, Alessandro
    Dhollander, Sofie
    Kohnle, Lisa
    Mur, Lina
    Niskanen, Taina
    Haussig, Joana
    Cristea, Veronica
    Scavia, Gaia
    Altieri, Ilaria
    Anniballi, Fabrizio
    Bella, Antonino
    Caccio, Simone
    Casulli, Adriano
    Ciervo, Alessandra
    Delibato, Elisabetta
    D'Errico, Michele Luca
    Fernandez, Aurora Garcia
    Morales, Maria Angeles Gomez
    Iacoponi, Francesca
    Knijn, Arnold
    Lalle, Marco
    Lucarelli, Claudia
    Morabito, Stefano
    Ortoffi, Marco
    Pasquali, Paolo
    Barbariol, Pierfrancesco
    Riccardo, Flavia
    Suffredini, Elisabetta
    Tozzoli, Rosangela
    Ventola, Eleonora
    Villa, Laura
    Angeloni, Giorgia
    Barco, Lisa
    Manca, Grazia
    Capello, Katia
    Cento, Giulia
    Ciot, Laura
    De Benedictis, Paola
    Gagliazzo, Laura
    Ishebabi, Annie
    [J]. EFSA JOURNAL, 2022, 20 (12)
  • [6] Development and Evaluation of a Paper-Based Microfluidic Device for Detection of Listeria monocytogenes on Food Contact and Non-Food Contact Surfaces
    Broten, Codi Jo
    Wydallis, John B.
    Reilly, Thomas H.
    Bisha, Bledar
    [J]. FOODS, 2022, 11 (07)
  • [7] Establishment and application of a rapid visual detection method for Listeria monocytogenes based on polymerase spiral reaction (PSR)
    Chen, Moutong
    Huang, Tengyi
    Du, Min
    Bai, Xiaoxi
    Soteyome, Thanapop
    Yuan, Lei
    Bai, Caiying
    Lan, Haifeng
    Hong, Wei
    Peng, Fang
    Fu, Xin
    Peng, Gongyong
    Liu, Liyan
    Kjellerup, Birthe, V
    Xu, Zhenbo
    [J]. BIOENGINEERED, 2022, 13 (03) : 7860 - 7867
  • [8] A Multiplex RT-PCR Assay for S-aureus, L-monocytogenes, and Salmonella spp. Detection in Raw Milk with Pre-enrichment
    Ding, Tian
    Suo, Yuanjie
    Zhang, Zhaohuan
    Liu, Donghong
    Ye, Xingqian
    Chen, Shiguo
    Zhao, Yong
    [J]. FRONTIERS IN MICROBIOLOGY, 2017, 8
  • [9] FAO/WHO, 2022, Microbiological Risk Assessment Series, V38, DOI [10.4060/cc2400en, DOI 10.4060/CC2400EN]
  • [10] Gummalla S., 2021, IOP conference series: Earth and environmental science, V854