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Eosinophils enhance granuloma-mediated control of persistent Salmonella infection in mice

Butler, Daniel S.C. LU ; Di Luccia, Blanda ; Vilches-Moure, José G. and Monack, Denise M. (2025) In Nature Microbiology 10(12). p.3176-3190
Abstract

Salmonella enterica can persist asymptomatically within tissues for extended periods. This is achieved through intricate host–pathogen interactions in immune cell aggregates called granulomas, wherein Salmonella establish favourable cellular niches to exploit while the host limits its expansion and tissue dissemination. Here, using a mouse model of persistent Salmonella infection, we identify a host-protective role for eosinophils in the control of Salmonella Typhimurium (STm) infection within the mesenteric lymph nodes, the main lymphoid tissue of STm persistence. Combining spatial transcriptomics and experimental manipulations, we found that monocytes and macrophages responding to STm infection recruited eosinophils in a C-C motif... (More)

Salmonella enterica can persist asymptomatically within tissues for extended periods. This is achieved through intricate host–pathogen interactions in immune cell aggregates called granulomas, wherein Salmonella establish favourable cellular niches to exploit while the host limits its expansion and tissue dissemination. Here, using a mouse model of persistent Salmonella infection, we identify a host-protective role for eosinophils in the control of Salmonella Typhimurium (STm) infection within the mesenteric lymph nodes, the main lymphoid tissue of STm persistence. Combining spatial transcriptomics and experimental manipulations, we found that monocytes and macrophages responding to STm infection recruited eosinophils in a C-C motif chemokine ligand 11 (CCL11)-dependent manner and enhanced their activation. The protein major basic protein, primarily expressed by eosinophils, was associated with altered macrophage polarization and bacterial control. Thus, eosinophils play a vital role in restraining Salmonella exploitation of granuloma macrophages at a key site of bacterial persistence.

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author
; ; and
publishing date
type
Contribution to journal
publication status
published
in
Nature Microbiology
volume
10
issue
12
pages
3176 - 3190
publisher
Springer Nature
external identifiers
  • pmid:41272146
  • scopus:105022630896
ISSN
2058-5276
DOI
10.1038/s41564-025-02187-1
language
English
LU publication?
no
additional info
Publisher Copyright: © The Author(s) 2025.
id
20a96a8e-a0b6-495a-8778-4d1dcd93ec0b
date added to LUP
2026-09-09 15:39:43
date last changed
2026-09-23 16:27:06
@article{20a96a8e-a0b6-495a-8778-4d1dcd93ec0b,
  abstract     = {{<p>Salmonella enterica can persist asymptomatically within tissues for extended periods. This is achieved through intricate host–pathogen interactions in immune cell aggregates called granulomas, wherein Salmonella establish favourable cellular niches to exploit while the host limits its expansion and tissue dissemination. Here, using a mouse model of persistent Salmonella infection, we identify a host-protective role for eosinophils in the control of Salmonella Typhimurium (STm) infection within the mesenteric lymph nodes, the main lymphoid tissue of STm persistence. Combining spatial transcriptomics and experimental manipulations, we found that monocytes and macrophages responding to STm infection recruited eosinophils in a C-C motif chemokine ligand 11 (CCL11)-dependent manner and enhanced their activation. The protein major basic protein, primarily expressed by eosinophils, was associated with altered macrophage polarization and bacterial control. Thus, eosinophils play a vital role in restraining Salmonella exploitation of granuloma macrophages at a key site of bacterial persistence.</p>}},
  author       = {{Butler, Daniel S.C. and Di Luccia, Blanda and Vilches-Moure, José G. and Monack, Denise M.}},
  issn         = {{2058-5276}},
  language     = {{eng}},
  number       = {{12}},
  pages        = {{3176--3190}},
  publisher    = {{Springer Nature}},
  series       = {{Nature Microbiology}},
  title        = {{Eosinophils enhance granuloma-mediated control of persistent Salmonella infection in mice}},
  url          = {{http://dx.doi.org/10.1038/s41564-025-02187-1}},
  doi          = {{10.1038/s41564-025-02187-1}},
  volume       = {{10}},
  year         = {{2025}},
}