4.3 Article

Susceptibility to Salmonella carrier-state: A possible Th2 response in susceptible chicks

Journal

VETERINARY IMMUNOLOGY AND IMMUNOPATHOLOGY
Volume 159, Issue 1-2, Pages 16-28

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.vetimm.2014.03.001

Keywords

Chicken; Salmonella; Carrier-state; Microarray

Funding

  1. French project RESISAL - Agenavi
  2. Agence Nationale pour la Recherche
  3. European Integrated Project SABRE

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Infection of chicken with Salmonella may lead to a carrier-state characterized by the persistence of bacteria in the ceca for a long period of time and result in their excretion in feces. This excretion is the source of contamination of their congeners and food. During infection, enterocytes are the primary target cells for Salmonella, the producers of soluble factors which launch immune response and cells which are reciprocally responsive to surrounding immune cells. This study used microarrays to compare the gene expression profile during carrier-state of enterocytes purified from infected and control chicks which are either resistant or susceptible to Salmonella Enteritidis carrier-state. In total, we identified 271 genes significantly differentially expressed with an absolute fold change greater than 1.5. A global analysis determined interaction networks between differentially regulated genes. Using an a priori approach, our analyses focused on differentially expressed genes which were transcriptionally linked to cytokines playing a major role in the fate of the immune response. The expression of genes transcriptionally linked to type I interferon and TGF-beta was down-regulated in infected chicks from both lines. Gene expression linked to the Th1 axis suggests the latter is inhibited in both lines. Finally, the expression of genes linked to IL-4, IL-5 and IL-13 indicates that susceptibility to carrier-state could be associated with a Th2 bias. Overall, these results highlight that the response to Salmonella during the acute phase and carrier-state is different and that enterocytes play a central role in this response. (C) 2014 Elsevier B.V. All rights reserved.

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