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Centrifugal microfluidic system for colorimetric sample-to-answer detection of viral pathogens.
Geissler, Matthias; Brassard, Daniel; Adam, Nadine; Nasheri, Neda; Pilar, Ana Victoria C; Tapp, Kyle; Clime, Liviu; Miville-Godin, Caroline; Mounier, Maxence; Nassif, Christina; Lukic, Ljuboje; Malic, Lidija; Corneau, Nathalie; Veres, Teodor.
Afiliação
  • Geissler M; Life Sciences Division, National Research Council of Canada, 75 de Mortagne Boulevard, Boucherville, QC, J4B 6Y4, Canada. teodor.veres@cnrc-nrc.gc.ca.
  • Brassard D; Life Sciences Division, National Research Council of Canada, 75 de Mortagne Boulevard, Boucherville, QC, J4B 6Y4, Canada. teodor.veres@cnrc-nrc.gc.ca.
  • Adam N; Bureau of Microbial Hazards, Health Canada, 251 Sir Frederick Banting Driveway, Ottawa, ON, K1A 0K9, Canada. nathalie.corneau@hc-sc.gc.ca.
  • Nasheri N; Bureau of Microbial Hazards, Health Canada, 251 Sir Frederick Banting Driveway, Ottawa, ON, K1A 0K9, Canada. nathalie.corneau@hc-sc.gc.ca.
  • Pilar AVC; Department of Biochemistry, Microbiology and Immunology, Faculty of Medicine, University of Ottawa, 451 Smyth Road, Ottawa, ON, K1H 8M5, Canada.
  • Tapp K; Bureau of Microbial Hazards, Health Canada, 251 Sir Frederick Banting Driveway, Ottawa, ON, K1A 0K9, Canada. nathalie.corneau@hc-sc.gc.ca.
  • Clime L; Bureau of Microbial Hazards, Health Canada, 251 Sir Frederick Banting Driveway, Ottawa, ON, K1A 0K9, Canada. nathalie.corneau@hc-sc.gc.ca.
  • Miville-Godin C; Life Sciences Division, National Research Council of Canada, 75 de Mortagne Boulevard, Boucherville, QC, J4B 6Y4, Canada. teodor.veres@cnrc-nrc.gc.ca.
  • Mounier M; Life Sciences Division, National Research Council of Canada, 75 de Mortagne Boulevard, Boucherville, QC, J4B 6Y4, Canada. teodor.veres@cnrc-nrc.gc.ca.
  • Nassif C; Life Sciences Division, National Research Council of Canada, 75 de Mortagne Boulevard, Boucherville, QC, J4B 6Y4, Canada. teodor.veres@cnrc-nrc.gc.ca.
  • Lukic L; Life Sciences Division, National Research Council of Canada, 75 de Mortagne Boulevard, Boucherville, QC, J4B 6Y4, Canada. teodor.veres@cnrc-nrc.gc.ca.
  • Malic L; Life Sciences Division, National Research Council of Canada, 75 de Mortagne Boulevard, Boucherville, QC, J4B 6Y4, Canada. teodor.veres@cnrc-nrc.gc.ca.
  • Corneau N; Life Sciences Division, National Research Council of Canada, 75 de Mortagne Boulevard, Boucherville, QC, J4B 6Y4, Canada. teodor.veres@cnrc-nrc.gc.ca.
  • Veres T; Bureau of Microbial Hazards, Health Canada, 251 Sir Frederick Banting Driveway, Ottawa, ON, K1A 0K9, Canada. nathalie.corneau@hc-sc.gc.ca.
Lab Chip ; 24(4): 668-679, 2024 02 13.
Article em En | MEDLINE | ID: mdl-38226743
ABSTRACT
We describe a microfluidic system for conducting thermal lysis, polymerase chain reaction (PCR) amplification, hybridization, and colorimetric detection of foodborne viral organisms in a sample-to-answer format. The on-chip protocol entails 24 steps which are conducted by a centrifugal platform that allows for actuating liquids pneumatically during rotation and so facilitates automation of the workflow. The microfluidic cartridge is fabricated from transparent thermoplastic polymers and accommodates assay components along with an embedded micropillar array for detection and read-out. A panel of oligonucleotide primers and probes has been developed to perform PCR and hybridization assays that allows for identification of five different viruses, including pathogens such as norovirus and hepatitis A virus (HAV) in a multiplexed format using digoxigenin-labelled amplicons and immunoenzymatic conversion of a chromogenic substrate. Using endpoint detection, we demonstrate that the system can accurately and repetitively (n = 3) discriminate positive and negative signals for HAV at 350 genome copies per µL. As part of the characterization and optimization process, we show that the implementation of multiple (e.g., seven) micropillar arrays in a narrow fluidic pathway can lead to variation (up to 50% or more) in the distribution of colorimetric signal deriving from the assay. Numerical modeling of flow behaviour was used to substantiate these findings. The technology-by virtue of automation-can provide a pathway toward rapid detection of viral pathogens, shortening response time in food safety surveillance, compliance, and enforcement as well as outbreak investigations.
Assuntos

Texto completo: 1 Bases de dados: MEDLINE Assunto principal: Colorimetria / Microfluídica Tipo de estudo: Diagnostic_studies / Prognostic_studies Idioma: En Revista: Lab Chip Assunto da revista: BIOTECNOLOGIA / QUIMICA Ano de publicação: 2024 Tipo de documento: Article País de afiliação: Canadá

Texto completo: 1 Bases de dados: MEDLINE Assunto principal: Colorimetria / Microfluídica Tipo de estudo: Diagnostic_studies / Prognostic_studies Idioma: En Revista: Lab Chip Assunto da revista: BIOTECNOLOGIA / QUIMICA Ano de publicação: 2024 Tipo de documento: Article País de afiliação: Canadá