The Human Pathogen Mycobacterium tuberculosis and the Fish Pathogen Mycobacterium marinum Trigger a Core Set of Late

Ron P Dirks1, Anita Ordas1, Susanne Jong-Raadsen1

  • 1ZF-Screens B.V., J.H. Oortweg 19, 2333 CH Leiden, The Netherlands.

Biology
|September 28, 2024
PubMed

Insights

Zebrafish larvae can propagate Mycobacterium tuberculosis for over a week, showing an immune response similar to M. marinum infection. This supports zebrafish as a tuberculosis infection model and identifies new potential biomarkers.

Area of Science:

  • Infectious disease research
  • Comparative immunology
  • Genomics and transcriptomics

Background:

  • Zebrafish are natural hosts for various Mycobacterium species and serve as a model for tuberculosis (TB) research.
  • Mycobacterium marinum shares virulence genes with M. tuberculosis, making it a useful surrogate.
  • Previous studies demonstrated robotic infection of zebrafish with M. tuberculosis.

Purpose of the Study:

  • To determine the propagation duration of M. tuberculosis in zebrafish larvae.
  • To analyze the transcriptional response of zebrafish larvae infected with M. tuberculosis over time.
  • To further validate M. marinum as a surrogate model for M. tuberculosis infection.

Main Methods:

  • Robotic infection of zebrafish embryos with fluorescently labeled M. tuberculosis.
  • Detection of bacterial aggregates up to 9 days post-infection.
  • Illumina RNA deep sequencing (RNAseq) to study transcriptional response in infected larvae.

Main Results:

  • M. tuberculosis was propagated in zebrafish larvae for at least 9 days.
  • Infected larvae exhibited a specific transcriptional immune response.
  • The immune response closely resembled that of zebrafish larvae infected with M. marinum.
  • New marker genes, such as dusp8 and CD180, were identified.

Conclusions:

  • Zebrafish larvae support M. tuberculosis propagation for over a week.
  • M. marinum serves as a valid surrogate model for M. tuberculosis infection studies in zebrafish.
  • Transcriptome data enhances zebrafish's translational value for TB research.
  • Identified marker genes warrant further investigation in both zebrafish and human macrophages.

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