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Examinando por Autor "Niemcewicz, Marcin"

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    OmpU as a biomarker for rapid discrimination between toxigenic and epidemic Vibrio cholerae O1/O139 and non-epidemic Vibrio cholerae in a modified MALDI-TOF MS assay
    (Springer Nature Link, 2014-06-18) Paauw, Armand; Trip, Hein; Niemcewicz, Marcin; Sellek Cano, Ricela; Heng, Jonathan; Mars Groenendijk, Roos; De Jong, Ad; Majchrzykiewicz Koehorst, Joanna; Olsen, Jaran; Tsivtsivadze, Evgeni
    Background Cholera is an acute diarrheal disease caused by Vibrio cholerae. Outbreaks are caused by a genetically homogenous group of strains from serogroup O1 or O139 that are able to produce the cholera toxin. Rapid detection and identification of these epidemic strains is essential for an effective response to cholera outbreaks. Results The use of ferulic acid as a matrix in a new MALDI-TOF MS assay increased the measurable mass range of existing MALDI-TOF MS protocols for bacterial identification. The assay enabled rapid discrimination between epidemic V. cholerae O1/O139 strains and other less pathogenic V. cholerae strains. OmpU, an outer membrane protein whose amino acid sequence is highly conserved among epidemic strains of V. cholerae, appeared as a discriminatory marker in the novel MALDI-TOF MS assay. Conclusions The extended mass range of MALDI-TOF MS measurements obtained by using ferulic acid improved the screening for biomarkers in complex protein mixtures. Differences in the mass of abundant homologous proteins due to variation in amino acid sequences can rapidly be examined in multiple samples. Here, a rapid MALDI-TOF MS assay was developed that could discriminate between epidemic O1/O139 strains and other less pathogenic V. cholerae strains based on differences in mass of the OmpU protein. It appeared that the amino acid sequence of OmpU from epidemic V. cholerae O1/O139 strains is unique and highly conserved.
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    Phenotypic and genetic analyses of 111 clinical and environmental O1, O139, and non-O1/O139 Vibrio cholerae strains from different geographical areas
    (Cambridge University Press, 2012-08-05) Sellek Cano, Ricela; Niemcewicz, Marcin; Olsen, Jaran; Bassy Alvarez, Olga; Lorenzo Lozano, P.; Martí, L.; Roszowiak, A.; Kocik, J.; Cabria Ramos, J. C.
    A total of 111 clinical and environmental O1, O139 and non-O1/O139 Vibrio cholerae strains isolated between 1978 and 2008 from different geographical areas were typed using a combination of methods: antibiotic susceptibility, biochemical test, serogroup, serotype, biotype, sequences containing variable numbers of tandem repeats (VNTRs) and virulence genes ctxA and tcpA amplification. As a result of the performed typing work, the strains were organized into four clusters: cluster A1 included clinical O1 Ogawa and O139 serogroup strains (ctxA + and tcpA +); cluster A2 included clinical non-O1/O139 strains (ctxA − and tcpA −), as well as environmental O1 Inaba and non-O1/O139 strains (ctxA − and tcpA −/tcpA +); cluster B1 contained two clinical O1 strains and environmental non-O1/O139 strains (ctxA − and tcpA +/tcpA −); cluster B2 contained clinical O1 Inaba and Ogawa strains (ctxA + and tcpA +). The results of this work illustrate the advantage of combining several typing methods to discriminate between clinical and environmental V. cholerae strains.
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