Li, X., Cole, J., Vaughan, D. , Xiao, Y., Walker, D. and Wall, D. M. (2024) Stratifying macrophages based on their infectious burden identifies novel host targets for intervention during Crohn’s disease associated adherent-invasive Escherichia coli infection. Microbiology, 170(6), 001470. (doi: 10.1099/mic.0.001470) (PMID:38916198)
![]() |
Text
326800.pdf - Accepted Version Available under License Creative Commons Attribution. 9MB |
Abstract
Bacterial infection is a dynamic process resulting in a heterogenous population of infected and uninfected cells. These cells respond differently based on their bacterial load and duration of infection. In the case of infection of macrophages with Crohn’s disease (CD) associated adherent-invasive Escherichia coli (AIEC), understanding the drivers of pathogen success may allow targeting of cells where AIEC replicate to high levels. Here we show that stratifying immune cells based on their bacterial load identifies novel pathways and therapeutic targets not previously associated with AIEC when using a traditional homogeneous infected population approach. Using flow cytometry-based cell sorting we stratified cells into those with low or high intracellular pathogen loads, or those which were bystanders to infection. Immune cells transcriptomics revealed a diverse response to the varying levels of infection while pathway analysis identified novel intervention targets that were directly related to increasing intracellular AIEC numbers. Chemical inhibition of identified targets reduced AIEC intracellular replication or inhibited secretion of tumour necrosis factor alpha (TNFα), a key cytokine associated with AIEC infection. Our results have identified new avenues of intervention in AIEC infection that may also be applicable to CD through the repurposing of already available inhibitors. Additionally, they highlight the applicability of immune cell stratification post-infection as an effective approach for the study of microbial pathogens.
Item Type: | Articles |
---|---|
Status: | Published |
Refereed: | Yes |
Glasgow Author(s) Enlighten ID: | Walker, Professor Daniel and Vaughan, Ms Diane and Cole, Mr John and LI, XIANG and Wall, Dr Daniel and Xiao, Yinbo |
Authors: | Li, X., Cole, J., Vaughan, D., Xiao, Y., Walker, D., and Wall, D. M. |
College/School: | College of Medical Veterinary and Life Sciences > School of Infection & Immunity |
Journal Name: | Microbiology |
Publisher: | Microbiology Society |
ISSN: | 1350-0872 |
ISSN (Online): | 1465-2080 |
Copyright Holders: | Copyright: © 2024 The Authors |
First Published: | First published in Microbiology 170(6): 001470 |
Publisher Policy: | Reproduced under a Creative Commons licence |
Related URLs: |
University Staff: Request a correction | Enlighten Editors: Update this record