A rational framework for evaluating the next generation of vaccines against Mycobacterium avium subspecies

John P Bannantine1, Murray E Hines2, Luiz E Bermudez3

  • 1Infectious Bacterial Diseases USDA-ARS, National Animal Disease Center Ames, IA, USA.

Insights

Developing modified live vaccines against Mycobacterium avium subspecies paratuberculosis (MAP) shows promise. A standardized three-phase trial identified promising candidates for Johne

Area of Science:

  • Veterinary Immunology
  • Vaccinology
  • Microbiology

Background:

  • Johne's disease, caused by Mycobacterium avium subspecies paratuberculosis (MAP), significantly impacts cattle and sheep health.
  • Previous whole-cell inactivated vaccines limited disease but did not prevent MAP infection.
  • Modified live vaccines inducing a Th1 immune response offer potential for improved protection against MAP.

Purpose of the Study:

  • To accelerate the identification and comparative evaluation of promising modified live MAP vaccine candidates.
  • To establish a standardized, multi-institutional testing platform for MAP vaccine development.
  • To assess the efficacy of candidate vaccines through a rigorous three-phase trial pipeline.

Main Methods:

  • Twenty-two modified live MAP vaccine candidates from five laboratories entered a double-blind, stage-gated trial.
  • Phase I: Candidate survival in bovine macrophages.
  • Phase II: Tissue colonization in C57/BL6 mice.
  • Phase III: Fecal shedding, tissue colonization, and pathology reduction in a baby goat challenge model.

Main Results:

  • A standardized three-phase trial pipeline was successfully implemented for evaluating MAP vaccine candidates.
  • The trial pipeline involved assessing candidate survival, colonization, and efficacy in challenge models.
  • Insights were gained for optimizing vaccine trials for Johne's disease and other animal pathogens.

Conclusions:

  • The multi-institutional consortium facilitated a standardized approach to evaluating modified live MAP vaccine candidates.
  • The macrophage-to-mouse-to-native host pipeline provides a framework for MAP vaccine development and evaluation.
  • Further refinement of this pipeline is suggested for future vaccine trials against MAP and similar pathogens.