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Peer-reviewed veterinary case report

A Rapid Active-Latent-Relapse Murine Model of Tuberculosis Based Blood Transcriptional Signature That Distinguishes Disease Stages.

Journal:
International journal of molecular sciences
Year:
2026
Authors:
Li, Haifeng et al.
Affiliation:
Institute of Laboratory Animal Science · China
Species:
rodent

Abstract

The lack of reliable diagnostic tools and relapse monitoring for latent tuberculosis infection (LTBI) constitutes a major obstacle to global tuberculosis (TB) control. This highlights an urgent need for robust animal models and predictive biomarkers. To address this, we report the successful establishment of a rapid murine model of recapitulating the active, latent, and relapse phases of TB within a compressed ten-week timeframe-hence termed the rapid multi-stage TB murine model. In this model, mice were first intravenously infected with, followed by a four-week isoniazid (INH) regimen starting at two weeks post-infection. By week six, pulmonary bacterial loads in most mice dropped below the detection limit, signifying the establishment of latency. Reactivation was subsequently triggered by a four-week administration of anti-TNF-α (Tumor Necrosis Factor-α) monoclonal antibody. Leveraging this reproducible and time-efficient model, we performed transcriptomic profiling of peripheral blood and identified a distinct sixteen-gene signature (including,,,,,,,,,,,,,,,) that dynamically tracks disease progression. Collectively, these findings not only provide a valuable and efficient preclinical tool but also deliver transformable candidate biomarkers with immediate potential to guide the development of novel diagnostic strategies for LTBI surveillance and management.

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Original publication: https://pubmed.ncbi.nlm.nih.gov/41898418/