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Characterization of Distinct Monocyte Subtypes and Immune Features Associated with HIV, Tuberculosis, and Coronary
Insights
This study reveals distinct monocyte subsets in adults with HIV, tuberculosis (TB), and coronary artery disease (CAD). Specific non-classical monocyte changes are linked to CAD and TB, offering insights into immune responses.
Area of Science:
- Immunology
- Cardiovascular Disease Research
- Infectious Disease Epidemiology
Background:
- Coronary artery disease (CAD), tuberculosis (TB), and HIV are significant global health challenges.
- Chronic inflammation and immune dysregulation, involving monocytes, are common in these conditions.
- Monocyte subset expansion is observed in individuals with HIV, TB, or CAD, but mechanisms are unclear.
Purpose of the Study:
- To characterize monocyte heterogeneity in Ugandan adults with combinations of HIV, latent TB, and CAD.
- To identify distinct monocyte phenotypes associated with CAD and TB.
- To explore the role of monocyte subsets in immune responses within co-endemic settings.
Main Methods:
- High-dimensional mass cytometry was used to analyze monocyte populations.
- Integrative analysis combined manual gating, unsupervised clustering, and elastic net penalization.
- Sixty-one Ugandan adults with varying combinations of HIV, TB, and CAD were studied.
Main Results:
- Distinct monocyte phenotypes were identified and associated with CAD and TB.
- Reduced CD163 expression on non-classical monocytes was observed in individuals with CAD, particularly with extensive disease.
- Two novel non-classical monocyte subsets were linked to CAD (depleted) and TB (enriched).
Conclusions:
- Monocyte heterogeneity is complex in CAD progression, especially in HIV and TB co-endemic regions.
- Findings suggest potential for new precision biomarkers for CAD, TB, and HIV.
- The study highlights avenues for developing immune-targeted therapies for these prevalent diseases.
Abstract:
Coronary artery disease (CAD), tuberculosis (TB), and HIV represent major global health burdens. Individuals affected by one or more of these conditions often exhibit chronic inflammation and immune dysregulation, with monocytes playing a central role in these processes. Monocyte subsets are known to expand in individuals with HIV, TB, or CAD. However, the precise mechanisms by which these cells contribute to inflammation and immune responses in the context of these conditions remain poorly understood. In this study, we employed high-dimensional mass cytometry to characterize monocyte heterogeneity in 61 Ugandan adults with varying combinations of HIV, latent TB, and subclinical or overt CAD. Through an integrative approach combining manual gating, unsupervised clustering, and elastic net penalization, we identified distinct monocyte phenotypes associated with CAD and TB. Importantly, individuals with CAD, especially those with more extensive disease (Segment Involvement Score >2), showed reduced surface expression of the anti-inflammatory scavenger receptor CD163 on non-classical monocytes. Notably, unsupervised clustering further revealed two distinct non-classical monocyte subsets associated with disease states: A CD86 dim CX3CR1 dim CD45RA + GPR56 + CXCR3 + subset significantly depleted in individuals with CAD, and a CD86 + CX3CR1 ++ CD45RA ++ GPR56 - CD38 - CXCR3 - subset enriched in individuals with TB. These findings underscore the complexity of the monocyte landscape in CAD progression, particularly within settings of HIV and TB co-endemicity. We hope this work motivates further research and offers insights for the development of new precision biomarkers and immune-targeted therapies to prevent or treat CAD, TB, and HIV in populations.
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