Search results for "Ethidium monoazide"

showing 2 items of 2 documents

Recent developments in the use of viability dyes and quantitative PCR in the food microbiology field.

2013

The increase in foodborne outbreaks highlights the need for rapid, sensitive and specific methods for food safety monitoring, enabling specific detection and quantification of viable foodborne pathogens. Real-time PCR (qPCR) combined with the use of viability dyes, recently introduced, fulfils all these requirements. The strategy relies on the use of DNA-binding molecules such as propidium monoazide (PMA) or ethidium monoazide (EMA) as sample pretreatment previous to the qPCR. These molecules permeate only membrane-compromised cells and have successfully been applied for different types of foodborne pathogens, including bacteria and viruses. Moreover, those dyes have been explored to monito…

Microbial ViabilityFood industrybusiness.industrySpecific detectionFoodborne outbreakGeneral MedicineBiologyFood safetyReal-Time Polymerase Chain ReactionApplied Microbiology and BiotechnologyBiotechnologyReal-time polymerase chain reactionPropidium monoazideFood MicrobiologyFood microbiologyFood sciencebusinessColoring AgentsBiotechnologyEthidium monoazideJournal of applied microbiology
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Evaluation of viability PCR performance for assessing norovirus infectivity in fresh-cut vegetables and irrigation water

2016

Norovirus (NoV) detection in food and water is mainly carried out by quantitative RT-PCR (RT-qPCR). The inability to differentiate between infectious and inactivated viruses and the resulting overestimation of viral targets is considered a major disadvantage of RT-qPCR. Initially, conventional photoactivatable dyes (i.e. propidium monoazide, PMA and ethidium monoazide, EMA) and newly developed ones (i.e. PMAxx and PEMAX) were evaluated for the discrimination between infectious and thermally inactivated NoV genogroup I (GI) and II (GII) suspensions. Results showed that PMAxx was the best photoactivatable dye to assess NoV infectivity. This procedure was further optimized in artificially inoc…

0301 basic medicineVirus inactivation030106 microbiologyReal-Time Polymerase Chain Reactionmedicine.disease_causeMicrobiologyIrrigation waterMicrobiology03 medical and health sciencesstomatognathic systemPropidium monoazideVegetablesmedicineFood scienceInfectivityMicrobial ViabilitybiologyInoculationNorovirusGeneral Medicinebiology.organism_classification030104 developmental biologyFoodNorovirusRNA ViralVirus InactivationSpinachWater MicrobiologyHazard Analysis and Critical Control PointsFood ScienceEthidium monoazideInternational Journal of Food Microbiology
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