Cell Reports
Volume 36, Issue 3, 20 July 2021, 109351
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Article
Early invasion of the bladder wall by solitary bacteria protects UPEC from antibiotics and neutrophil swarms in an organoid model

https://doi.org/10.1016/j.celrep.2021.109351Get rights and content
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Highlights

  • A bladder organoid model reproduces key features of urinary tract infections (UTIs)

  • UPEC forms intracellular bacterial communities (IBCs) in bladder organoids

  • QIR-like bacteria appear concurrently with and independently of IBCs

  • QIR-like bacteria are protected from clearance by antibiotics and host immune cells

Summary

Recurrence of uropathogenic Escherichia coli (UPEC) infections has been attributed to reactivation of quiescent intracellular reservoirs (QIRs) in deep layers of the bladder wall. QIRs are thought to arise late during infection following dispersal of bacteria from intracellular bacterial communities (IBCs) in superficial umbrella cells. Here, we track the formation of QIR-like bacteria in a bladder organoid model that recapitulates the stratified uroepithelium within a volume suitable for high-resolution live-cell imaging. Bacteria injected into the organoid lumen enter umbrella-like cells and proliferate to form IBC-like bodies. In parallel, single bacteria penetrate deeper layers of the organoid wall, where they localize within or between uroepithelial cells. These “solitary” bacteria evade killing by antibiotics and neutrophils and are morphologically distinct from bacteria in IBCs. We conclude that bacteria with QIR-like properties may arise at early stages of infection, independent of IBC formation and rupture.

Keywords

bladder organoids
uropathogenic Escherichia coli
UPEC
quiescent intracellular reservoirs
QIRs
intracellular bacterial colonies
IBCs
antibiotic persistence
neutrophils
time-lapse microscopy
serial block-face scanning electron microscopy (SBEM)

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These authors contributed equally

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