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Reduced macrophage killing of M. avium drives infection risk in post-menopausal patients
Catherine Weathered1, Ning Wei2, Elsje Pienaar1
1Weldon School of Biomedical Engineering, Purdue University, West Lafayette, IN, USA.
Abstract:
Non-tuberculous mycobacterial (NTM) infections, and Mycobacterium avium Complex (MAC) in particular, affect women at nearly twice the rate of men, and post-menopausal patients are at higher risk than pre-menopausal patients. The reasons for the disproportionate number of cases in women and post-menopausal patients remain unclear. One possibility is that menopause-associated immunological changes contribute to higher MAC prevalence post-menopause compared to pre-menopause. Menopause-associated immune disruption includes increased cytokine and chemokine production, and reduced cytotoxicity and phagocytosis in macrophages. Here we use an agent-based model of bacterial and host immune interactions in the airway to translate the combined impact of menopause-associated cellular immune disruptions to tissue scale outcomes. Our simulations indicate that menopause-associated immune disruptions can result in increased macrophage recruitment. However, this increase in macrophage number is unable to overcome functional deficits in macrophage phagocytosis and killing, since the post-menopausal simulations also show increased bacterial loads. Post-menopausal conditions are also associated with a lower number of cleared infections, and more simulations that have predominantly extracellular bacteria. Taken together, our work quantifies the potential impact of menopause-associated disruptions of innate immune functions on early MAC infection progression. Our findings will support the development of new therapies targeted to this high-risk group of patients.
Insights
Post-menopausal women face higher risks of Mycobacterium avium Complex (MAC) infections due to immune changes. Our model shows impaired macrophage function, not just numbers, increases bacterial load in these individuals.
Area of Science:
- Immunology
- Infectious Diseases
- Computational Biology
Background:
- Non-tuberculous mycobacterial (NTM) infections, particularly Mycobacterium avium Complex (MAC), disproportionately affect women, especially post-menopause.
- Menopause is linked to immune alterations, including altered cytokine/chemokine production and reduced macrophage phagocytic and cytotoxic functions.
Discussion:
- Agent-based modeling simulates airway immune responses to MAC, incorporating menopause-associated immune changes.
- Simulations reveal that while macrophage recruitment increases post-menopause, functional deficits in phagocytosis and killing lead to higher bacterial loads.
- Post-menopausal conditions correlate with fewer cleared infections and a higher prevalence of extracellular bacteria.
Key Insights:
- Menopause-associated immune dysfunctions significantly impair the host's ability to control early MAC infections.
- Functional deficits in macrophages, rather than just numbers, are critical in determining infection outcomes.
- The study quantifies the impact of innate immune changes on MAC progression in a high-risk demographic.
Outlook:
- Findings highlight the need for targeted therapies for post-menopausal women at risk of MAC infections.
- Further research can explore specific immune pathways affected by menopause to develop novel therapeutic strategies.
- Computational models can predict infection dynamics and evaluate potential interventions in specific patient groups.

