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The blood transcriptome of experimental melioidosis reflects disease severity and shows considerable similarity with the human disease

  • Laura Conejero
  • , Krzysztof Potempa
  • , Christine M. Graham
  • , Natasha Spink
  • , Simon Blankley
  • , Francisco J. Salguero
  • , Rungnapa Pankla-Sranujit
  • , Prasong Khaenam
  • , Jacques F. Banchereau
  • , Virginia Pascual
  • , Damien Chaussabel
  • , Ganjana Lertmemongkolchai
  • , Anne O'Garra
  • , Gregory J. Bancroft
  • London School of Hygiene and Tropical Medicine
  • Centro Nacional de Investigaciones Cardiovasculares Carlos III
  • The Francis Crick Institute
  • University of Surrey
  • Khon Kaen University
  • Jackson Laboratory for Genomic Medicine
  • Baylor Institute for Immunology Research
  • Sidra Medicine
  • St Mary’s Hospital

Research output: Contribution to journalArticlepeer-review

18 Citations (Scopus)

Abstract

Melioidosis, a severe human disease caused by the bacterium Burkholderia pseudomallei, has a wide spectrum of clinical manifestations ranging from acute septicemia to chronic localized illness or latent infection. Murine models have been widely used to study the pathogenesis of infection and to evaluate novel therapies or vaccines, but how faithfully they recapitulate the biology of human melioidosis at a molecular level is not known. In this study, mice were intranasally infected with either high or low doses of B. pseudomallei to generate either acute, chronic, or latent infection and host blood and tissue transcriptional profiles were generated. Acute infection was accompanied by a homogeneous signature associated with induction of multiple innate immune response pathways, such as IL-10, TREM1, and IFN signaling, largely found in both blood and tissue. The transcriptional profile in blood reflected the heterogeneity of chronic infection and quantitatively reflected the severity of disease. Genes associated with fibrosis and tissue remodeling, including matrix metalloproteases and collagen, were upregulated in chronically infected mice with severe disease. Transcriptional signatures of both acute and chronic melioidosis revealed upregulation of iNOS in tissue, consistent with the expression of IFN-γ, but also Arginase-1, a functional antagonist of the iNOS pathway, and was confirmed by immunohistochemistry. Comparison of these mouse blood datasets by pathway and modular analysis with the blood transcriptional signature of patients with melioidosis showed that many genes were similarly perturbed, including Arginase-1, IL-10, TREM1, and IFN signaling, revealing the common immune response occurring in both mice and humans.

Original languageEnglish
Pages (from-to)3248-3261
Number of pages14
JournalJournal of Immunology
Volume195
Issue number7
DOIs
Publication statusPublished - 1 Oct 2015
Externally publishedYes

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

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