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Escherichia coli Uropathogenesis In Vitro: Invasion, Cellular Escape, and Secondary Infection Analyzed in a Human Bladder Cell Infection Model

Authors :
Michelle Madelung
Thomas Emil Andersen
Hans Jørn Kolmos
Jonathan R. Brewer
Jakob Møller-Jensen
Surabhi Khandige
Source :
Andersen, T E, Khandige, S, Madelung, M, Brewer, J, Kolmos, H J & Møller-Jensen, J 2012, ' Escherichia coli Uropathogenesis In Vitro : Invasion, Cellular Escape, and Secondary Infection Analyzed in a Human Bladder Cell Infection Model ', Infection and Immunity, vol. 80, no. 5, pp. 1858-67 . https://doi.org/10.1128/IAI.06075-11
Publication Year :
2012
Publisher :
American Society for Microbiology, 2012.

Abstract

Uropathogenic Escherichia coli (UPEC) strains are capable of invading bladder epithelial cells (BECs) on the bladder luminal surface. Based primarily on studies in mouse models, invasion is proposed to trigger an intracellular uropathogenic cascade involving intracellular bacterial proliferation followed by escape of elongated, filamentous bacteria from colonized BECs. UPEC filaments on the mouse bladder epithelium are able to revert to rod-shaped bacteria, which are believed to invade neighboring cells to initiate new rounds of intracellular colonization. So far, however, these late-stage infection events have not been replicated in vitro . We have established an in vitro model of human bladder cell infection by the use of a flow chamber (FC)-based culture system, which allows investigation of steps subsequent to initial invasion. Short-term bacterial colonization on the FC-BEC layer led to intracellular colonization. Exposing invaded BECs to a flow of urine, i.e., establishing conditions similar to those faced by UPEC reemerging on the bladder luminal surface, led to outgrowth of filamentous bacteria similar to what has been reported to occur in mice. These filaments were capable of reverting to rods that could invade other BECs. Hence, under growth conditions established to resemble those present in vivo , the elements of the proposed uropathogenic cascade were inducible in a human BEC model system. Here, we describe the model and show how these characteristics are reproduced in vitro .

Details

Language :
English
Database :
OpenAIRE
Journal :
Andersen, T E, Khandige, S, Madelung, M, Brewer, J, Kolmos, H J & Møller-Jensen, J 2012, ' Escherichia coli Uropathogenesis In Vitro : Invasion, Cellular Escape, and Secondary Infection Analyzed in a Human Bladder Cell Infection Model ', Infection and Immunity, vol. 80, no. 5, pp. 1858-67 . https://doi.org/10.1128/IAI.06075-11
Accession number :
edsair.doi.dedup.....7a948018bc851ecd788ef611d2a9ad28
Full Text :
https://doi.org/10.1128/IAI.06075-11