Model of hostpathogen interaction dynamics links in vivo optical imaging and immune responses

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Abstract

Tracking disease progression in vivo is essential for the development of treatments against bacterial infection. Optical imaging has become a central tool for in vivo tracking of bacterial population development and therapeutic response. For a precise understanding of in vivo imaging results in terms of disease mechanisms derived from detailed postmortem observations, however, a link between the two is needed. Here, we develop a model that provides that link for the investigation of Citrobacter rodentium infection, a mouse model for enteropathogenic Escherichia coli (EPEC). We connect in vivo disease progression of C57BL/6 mice infected with bioluminescent bacteria, imaged using optical tomography and X-ray computed tomography, to postmortem measurements of colonic immune cell infiltration. We use the model to explore changes to both the host immune response and the bacteria and to evaluate the response to antibiotic treatment. The developed model serves as a novel tool for the identification and development of new therapeutic interventions. © 2016 Ale et al.

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Ale, A., Crepin, V. F., Collins, J. W., Constantinou, N., Habibzay, M., Babtie, A. C., … Stumpf, M. P. H. (2017). Model of hostpathogen interaction dynamics links in vivo optical imaging and immune responses. Infection and Immunity, 85(1). https://doi.org/10.1128/IAI.00606-16

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