Development and characterization of a caprine aerosol infection model of melioidosis

Carl Soffler1, Angela M Bosco-Lauth, Tawfik A Aboellail

  • 1Department of Microbiology, Immunology, and Pathology, College of Veterinary Medicine and Biomedical Sciences, Colorado State University, Fort Collins, Colorado, USA.

Plos One
|August 24, 2012
PubMed

Insights

A new goat model for melioidosis, caused by Burkholderia pseudomallei, mimics subacute and chronic human disease. This model aids research into melioidosis pathogenesis and therapeutic development for this emerging infectious disease.

Area of Science:

  • Veterinary Pathology
  • Infectious Diseases
  • Animal Models

Background:

  • Melioidosis, caused by Burkholderia pseudomallei, is a severe, often fatal emerging infectious disease prevalent in Southeast Asia.
  • Current understanding of melioidosis pathogenesis remains incomplete, necessitating new research tools.
  • Existing animal models do not fully recapitulate the subacute to chronic forms of human melioidosis.

Purpose of the Study:

  • To develop and characterize a subacute to chronic caprine (goat) model of melioidosis.
  • To investigate the progression of melioidosis in goats following intratracheal aerosol challenge.
  • To evaluate the utility of this model for studying melioidosis pathogenesis and testing therapeutics.

Main Methods:

  • Goats were inoculated via intratracheal aerosol with 10(4) CFU of Burkholderia pseudomallei.
  • Disease progression was monitored through clinical signs, hematology, microbiology, thoracic radiography, and gross and microscopic pathology.
  • Histopathological analysis focused on lesion development, dissemination pathways, and inflammatory responses.

Main Results:

  • All goats developed variable clinical signs consistent with subacute to chronic melioidosis.
  • Bronchointerstitial pneumonia with pyogranuloma formation was observed by day 2, progressing over time.
  • Extrapulmonary dissemination was linked to pyogranuloma invasion of pulmonary vasculature, with leukocytoclastic vasculitis identified as a key dissemination mechanism.

Conclusions:

  • The developed caprine model effectively replicates key features of subacute and chronic human melioidosis.
  • This model provides a valuable platform for investigating Burkholderia pseudomallei pathogenesis and evaluating novel treatments.
  • The model holds potential for studying both naturally occurring and bioterrorism-associated melioidosis.

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