Construction of Luminescence- and Fluorescence-Tagged Burkholderia pseudomallei for Pathogen Tracking in a Mouse Model

Molecular imaging is a powerful method for tracking various infectious disease-causing pathogens in host organisms. Currently, a dual molecular imaging method that can provide temporal and spatial information on infected hosts at the organism, organ, tissue, and cellular levels simultaneously has no...

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Veröffentlicht in:Journal of microbiology and biotechnology 2018, 28(3), , pp.498-502
Hauptverfasser: Shin, Yong-Woo, Park, Deok Bum, Choi, Myung-Min, Chun, Jeong-Hoon, Seong, Baik-Lin, Rhie, Gi-Eun
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Sprache:eng
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Zusammenfassung:Molecular imaging is a powerful method for tracking various infectious disease-causing pathogens in host organisms. Currently, a dual molecular imaging method that can provide temporal and spatial information on infected hosts at the organism, organ, tissue, and cellular levels simultaneously has not been reported for , a high-risk pathogen that causes melioidosis. In this study, we have established an experimental method that provides spatiotemporal information on infected hosts using luminescent and fluorescent dual-labeled . Using this method, we visualized infection at the organism, organ, and tissue levels in a BALB/c mouse model by detecting its luminescence and fluorescence. The infection of at the cellular level was also visualized by its emitted fluorescence in infected macrophage cells. This method could be an extremely useful and applicable tool to study the pathogenesis of -related infectious diseases.
ISSN:1017-7825
1738-8872
DOI:10.4014/jmb.1710.10013