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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
1

Utvärdering av effekter på artidentifiering vid förlängda tidsintervall mellan mikroorganism- och matrixapplicering med MALDI-TOF MS / Evaluation of effects on species level identification at extended time intervals between microbial and matrix application with MALDI-TOF MS

Hassan, Fatima, Ljungström, Emilia January 2023 (has links)
Matrix-assisted laser desorption ionization time-of-flight mass spectrometry (MALDI-TOF MS) är en viktig metod för artidentifiering av mikroorganismer på kliniska mikrobiologiska laboratorier. Enligt rekommendationer från Bruker Daltonics skall matrixapplicering ske relativt omedelbart efter att mikroorganismer har applicerats. Syftet med studien var att utvärdera effekter på artidentifiering vid förlängda tidsintervall mellan applicering av mikroorganismer och matrix med MALDI-TOF MS. Målet var att optimera arbetsflödet på mikrobiologilaboratoriet, laboratoriemedicin, Region Jönköping län (RJL). I studien undersöktes hur identifieringen av mikroorganismer påverkades av applicering avbakterie- och jästsvampstammar (n = 267) och α-Cyano-4-hydroxycinnaminsyra (HCCA)-matrix på en MALDI-provplatta vid varierande tidsintervall upp till tre timmar. Analys med MALDI-TOF MS genomfördes med masspektrometrarna MALDI Biotyper Sirius IVD System och Bruker MicroFlex LT. Resultaten visade att förlängda tidsintervall mellan applicering av mikroorganismer och matrix upp till tre timmar inte hade någon signifikant effekt på scorevärden vid artidentifiering, vilket innebar att tidsintervallen är acceptabla för artidentifiering med MALDI-TOF MS. Detta ger värdefull information för att optimera arbetsflödet och öka effektiviteten på mikrobiologilaboratoriet. / Matrix-assisted laser desorption ionization time-of-flight mass spectrometry (MALDI-TOF MS) is an important method for species level identification in clinical microbiology laboratories. According to recommendations from Bruker Daltonics matrix application should occur relatively immediately after microorganisms have been applied. The aim of the study was to evaluate the effects on microbial identification at extended time intervals between microbial and matrix application using MALDI-TOF MS. The objective was to optimize the workflow at the microbiology laboratory, laboratory medicine, Region Jönköping län (RJL). The study investigated the impact on identification of microorganisms between the application of bacterial and yeast strains (n = 267) and α-Cyano-4-hydroxycinnamic acid (HCCA) matrix on a MALDI target plate of various time intervals up to three hours. MALDI-TOF MS was performed using MALDI Biotyper Sirius IVD System and Bruker MicroFlex LT mass spectrometers.The results showed that a delay of matrix application up to three hours had no significant effect on score values, indicating that time did not affect the accuracy of microbial identification using MALDI-TOF MS. Consequently, the study provided valuable information for optimizing the workflow and increasing the efficiency of the microbiology laboratory.
2

Application de la spectrométrie de masse MALDI-TOF en microbiologie clinique

Seng, Piseth 09 July 2013 (has links)
L'objectif de cette thèse est d'appliquer la méthode d'identification bactérienne par spectrométrie de masse MALDI-TOF pour une utilisation en routine dans un laboratoire de microbiologie clinique. Dans un 1er temps et de manière prospective, nous avons évalué la performance et le coût-efficacité de l'identification bactérienne de routine par MALDI-TOF par rapport aux techniques conventionnelles d'identification phénotypique. Durant la période des 16 semaines d'étude, nous avons comparé la performance de la technique par MALDI-TOF aux techniques conventionnelles d'identification phénotypique comprenant la coloration de Gram, la galerie API ANA et le Vitek 2. En cas de résultats discordants entre ces deux techniques, l'identification était réalisée par biologie moléculaire. Nous avons montré que le MALDI-TOF est un moyen efficace et rentable pour l'identification des bactéries de routine. Le MALDI-TOF peut être utilisée en 1ère intention dans l'identification bactérienne avant l'ensemble de techniques phénotypiques. Dans un 2ème temps, nous avons évalué rétrospectivement la performance et le coût-efficacité de l'utilisation exclusive de MALDI-TOF en diagnostic bactériologique de routine en comparaison avec les techniques conventionnelles. En analysant les données des 11 dernières années, nous avons montré que le MALDI-TOF est efficace et tout à fait adaptée pour l'identification d'espèce bactérienne en routine. Nous avons également prouvé que MALDI-TOF est un outil puissant pour identifier les espèces bactériennes rarement impliquées dans les infections humaines. Cette technique pourrait être une alternative aux méthodes moléculaires dans le laboratoire clinique. / The objective of this thesis is to apply the method of bacterial identification by MALDI-TOF MS in daily practice in a routine clinical microbiological laboratory. Firstly, we prospectively evaluated the performance and the cost-effective of bacterial identification by MALDI-TOF in comparison with conventional phenotypic identification methods. During a 16-week study, we compared the performance of MALDI-TOF with conventional techniques of identification including Gram staining, API ANA identification strip and automated identification using the Vitek 2. The unmatched identifications between MALDI-TOF and conventional methods were resolved by molecular identification. In this study, we showed that MALDI-TOF was an effective tool and less expensive for the rapid identification of bacterial species in clinical microbiology laboratory. MALDI-TOF can be used in first intention for identification before Gram staining or other phenotypic identification techniques based on physicochemical properties of bacteria. Secondly, we retrospectively evaluated the performance and the cost-effectiveness of the exclusive use of MALDI-TOF in bacteriological diagnosis in comparison with conventional phenotypic identification. 11-year retrospective analysis of data showed that MALDI-TOF was efficient and completely adapted for the routine identification of bacterial species. We also showed that MALDI-TOF had capacity to identify bacterial species that were rarely involved in human diseases. This technique could be an alternative to molecular methods in the clinical laboratory.

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