Accreditation and Quality Assurance · 2018 · 21 citations · 28 references
Food ForensicsDna AnalysisDiagnosisNucleic Acid Amplification TestVerification And ValidationReal-time Polymerase Chain ReactionPolymerase Chain ReactionBioanalysisBiostatisticsValidation GuidelinesLaboratory MedicineHealth SciencesMethod ValidationFood Safety Risk AssessmentFunctional GenomicsBioinformaticsEpidemiologyFood SafetyDiagnostic Pcr ProcessHuman Safety AssessmentFood DefensePcr WorkflowPatient SafetyForensic ToxicologyContamination ControlComputational BiologyNucleic Acid AmplificationBioterrorism PreparednessMicrobiologyPcr WorkflowsMedicineMicrobial Risk Assessment
The polymerase chain reaction (PCR) is the backbone of contemporary DNA/RNA analysis, ideally enabling detection of one or just a few target molecules. However, when analysing food or forensic samples the analytical procedure is often challenged by low amounts of poor quality template molecules and complex matrices. Applying optimised and validated methods in all steps of the analysis workflow, i.e. sampling, sample treatment, DNA/RNA extraction and PCR (including reverse transcription for RNA analysis), is thus necessary to ensure the reliability of analysis. In this paper, we describe how in-house validation can be performed for the different modules of the diagnostic PCR process, providing practical examples as tools for laboratories in their planning of validation studies. The focus is analysis of heterogeneous samples with interfering matrices, with relevance in food testing, forensic DNA analysis, bioterrorism preparedness and veterinary medicine. Our objective is to enable rational in-house validation for reliable and swift quality assurance when results are urgent, for example in the event of a crisis such as a foodborne outbreak or a crime requiring the analysis of a large number of diverse samples. To that end, we explain the performance characteristics associated with method validation from a PCR and biological sample matrix perspective and suggest which characteristics to investigate depending on the type of method to be validated. Also, we include a modular approach to validation within the PCR workflow, aiming at efficient validation and a flexible use of methods.
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Guidelines for validation of qualitative real-time PCR methods
Sylvia Broeders, Ingrid Huber, Lutz Grohmann et al. · Trends in Food Science & Technology · 2014 · 441 citations · Full text
Properties of the Reverse Transcription Reaction in mRNA Quantification
Anders Ståhlberg, Joakim Håkansson, Xiaojie Xian et al. · Clinical Chemistry · 2004 · 399 citations · Full text