Literature DB >> 23435884

Simultaneous quantification of multiple food- and waterborne pathogens by use of microfluidic quantitative PCR.

Satoshi Ishii1, Takahiro Segawa, Satoshi Okabe.   

Abstract

The direct quantification of multiple pathogens has been desired for diagnostic and public health purposes for a long time. In this study, we applied microfluidic quantitative PCR (qPCR) technology to the simultaneous detection and quantification of multiple food- and waterborne pathogens. In this system, multiple singleplex qPCR assays were run under identical detection conditions in nanoliter-volume chambers that are present in high densities on a chip. First, we developed 18 TaqMan qPCR assays that could be run in the same PCR conditions by using prevalidated TaqMan probes. Specific and sensitive quantification was achieved by using these qPCR assays. With the addition of two previously validated TaqMan qPCR assays, we used 20 qPCR assays targeting 10 enteric pathogens, a fecal indicator bacterium (general Escherichia coli), and a process control strain in the microfluidic qPCR system. We preamplified the template DNA to increase the sensitivity of the qPCR assays. Our results suggested that preamplification was effective for quantifying small amounts of the template DNA without any major impact on the sensitivity, efficiency, and quantitative performance of qPCR. This microfluidic qPCR system allowed us to detect and quantify multiple pathogens from fecal samples and environmental water samples spiked with pathogens at levels as low as 100 cells/liter. These results suggest that the routine monitoring of multiple pathogens in food and water samples is now technically feasible. This method may provide more reliable information for risk assessment than the current fecal contamination indicator approach.

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Year:  2013        PMID: 23435884      PMCID: PMC3623133          DOI: 10.1128/AEM.00205-13

Source DB:  PubMed          Journal:  Appl Environ Microbiol        ISSN: 0099-2240            Impact factor:   4.792


  46 in total

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3.  Chicken- and duck-associated Bacteroides-Prevotella genetic markers for detecting fecal contamination in environmental water.

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4.  Use of a real time PCR assay for detection of the ctxA gene of Vibrio cholerae in an environmental survey of Mobile Bay.

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5.  Pathogenic bacteria in sewage treatment plants as revealed by 454 pyrosequencing.

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6.  The evolutionary history of Shigella and enteroinvasive Escherichia coli revised.

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8.  Duplex real-time SYBR green PCR assays for detection of 17 species of food- or waterborne pathogens in stools.

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Review 9.  Detection of pathogens in water: from phylochips to qPCR to pyrosequencing.

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  36 in total

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Review 3.  Foodomics and Food Safety: Where We Are.

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5.  Integrated LAMP and immunoassay platform for diarrheal disease detection.

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7.  Stoichiometric approach to quantitative analysis of biomolecules: the case of nucleic acids.

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Review 8.  Selected Instrumental Techniques Applied in Food and Feed: Quality, Safety and Adulteration Analysis.

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9.  Development of a high-throughput real-time PCR system for detection of enzootic pathogens in pigs.

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Review 10.  Twenty-first century molecular methods for analyzing antimicrobial resistance in surface waters to support One Health assessments.

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