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Updated: Sep 12, 2026

An Experimental Model to Study Tuberculosis-Malaria Coinfection upon Natural Transmission of Mycobacterium tuberculosis and Plasmodium berghei
Published on: February 17, 2014
An Agent-Based Modelling Approach to Investigate the Impact of Sex and Gender on Tuberculosis Transmission: A Case
James W G Doran1, Dennis Mujuni2,3, Kit Gallagher4,5
1Department of Mathematical Sciences, Centre for Mathematical Biology, University of Bath, Bath, BA2 7AY, UK. jd521@bath.ac.uk.
Abstract:
Tuberculosis (TB) is an airborne disease caused by the pathogen Mycobacterium tuberculosis. In 2023, it returned to being the leading cause of death from an infectious agent globally, replacing COVID-19. More than 10 million people are diagnosed with TB every year. The majority of cases in adults occur in males (62.5% of all global adult cases in 2023, compared to 37.5% in females). The main reasons for males suffering from a higher burden of global TB cases, compared to females, may be in large part due to population-scale factors, such as employment type, the quantity and type of social contacts they make, and their health-seeking behaviours. To investigate which population-scale factors are most important in determining this higher TB burden in males, we have developed an age- and sex/gender-stratified, spatially heterogeneous epidemiological agent-based model. We have focused specifically on Kampala, the capital of Uganda, which is a high-burden TB country. We considered counterfactual scenarios to elucidate the impact of sex and gender on the epidemiology of TB, in order to deduce which factors have greater explanatory power in producing the observed differences between sexes/genders. Within-host parameters had the largest effect on overall case numbers among the scenarios considered. On the other hand, behavioural factors (particularly assortative mixing and gender-specific contact patterns) appear important in explaining the elevated male-to-female case ratio. We also found that super-spreaders appear to cause a majority of infections, with males and individuals with cavitary TB causing more infections on average. Our model provides a proof-of-concept framework that could help support public health policy after further validation.
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The primary infectious agent causing tuberculosis is Mycobacterium tuberculosis, a slow-growing, acid-fast, aerobic rod that exhibits sensitivity to heat and ultraviolet light. Instances of Mycobacterium bovis and Mycobacterium avium contributing to the development of TB infection are rare.
Mode of...
Malaria