4.7 Review

Comparative pathology of experimental pulmonary tuberculosis in animal models

Journal

FRONTIERS IN VETERINARY SCIENCE
Volume 10, Issue -, Pages -

Publisher

FRONTIERS MEDIA SA
DOI: 10.3389/fvets.2023.1264833

Keywords

tuberculosis; animal models; pathology; granuloma; mycobacteria; lung

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Research on human tuberculosis is limited due to the availability of human tissues, making animal models crucial for understanding the disease's progression and evaluating new therapies. This review examines the pulmonary pathology induced by tuberculosis bacteria in different animal models and compares them to human pulmonary tuberculosis. Although the models share some histopathological features with human tuberculosis, further research is needed to establish the most appropriate model and standard characterization of pulmonary lesions.
Research in human tuberculosis (TB) is limited by the availability of human tissues from patients, which is often altered by therapy and treatment. Thus, the use of animal models is a key tool in increasing our understanding of the pathogenesis, disease progression and preclinical evaluation of new therapies and vaccines. The granuloma is the hallmark lesion of pulmonary tuberculosis, regardless of the species or animal model used. Although animal models may not fully replicate all the histopathological characteristics observed in natural, human TB disease, each one brings its own attributes which enable researchers to answer specific questions regarding TB immunopathogenesis. This review delves into the pulmonary pathology induced by Mycobacterium tuberculosis complex (MTBC) bacteria in different animal models (non-human primates, rodents, guinea pigs, rabbits, cattle, goats, and others) and compares how they relate to the pulmonary disease described in humans. Although the described models have demonstrated some histopathological features in common with human pulmonary TB, these data should be considered carefully in the context of this disease. Further research is necessary to establish the most appropriate model for the study of TB, and to carry out a standard characterisation and score of pulmonary lesions.

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