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Updated: Dec 7, 2025

Phagosome Migration and Velocity Measured in Live Primary Human Macrophages Infected with HIV-1
Published on: September 5, 2016
Macrophage Tropism in Pathogenic HIV-1 and SIV Infections
Matthew Moeser1, Joshua R Nielsen2, Sarah B Joseph2
1Lineberger Comprehensive Cancer Center, University of North Carolina at Chapel Hill, Chapel Hill, NC 27599, USA.
Abstract:
Most myeloid lineage cells express the receptor and coreceptors that make them susceptible to infection by primate lentiviruses (SIVs and HIVs). However, macrophages are the only myeloid lineage cell commonly infected by SIVs and/or HIVs. The frequency of infected macrophages varies greatly across specific host and virus combinations as well as disease states, with infection rates being greatest in pathogenic SIV infections of non-natural hosts (i.e., Asian nonhuman primates (Asian NHPs)) and late in untreated HIV-1 infection. In contrast, macrophages from natural SIV hosts (i.e., African NHPs) are largely resistant to infection due to entry and/or post-entry restriction mechanisms. These highly variable rates of macrophage infection may stem from differences in the host immune environment, entry and post-entry restriction mechanisms, the ability of a virus to adapt to efficiently infect macrophages, and the pleiotropic effects of macrophage-tropism including the ability to infect cells lacking CD4 and increased neutralization sensitivity. Questions remain about the relationship between rates of macrophage infection and viral pathogenesis, with some evidence suggesting that elevated levels of macrophage infection may contribute to greater pathogenesis in non-natural SIV hosts. Alternatively, extensive infection of macrophages may only emerge in the context of high viral loads and immunodeficiency, making it a symptom of highly pathogenic infections, not a primary driver of pathogenesis.
Insights
Macrophages are key targets for primate lentiviruses like HIV. Their infection susceptibility varies greatly, impacting disease severity in different hosts and offering insights into viral pathogenesis.
Area of Science:
- Virology
- Immunology
- Cell Biology
Background:
- Most myeloid cells can be infected by primate lentiviruses (SIVs and HIVs).
- Macrophages are the primary myeloid cells infected by these viruses, but infection rates vary significantly.
- Natural SIV hosts (African NHPs) show macrophage resistance, unlike non-natural hosts (Asian NHPs) and untreated HIV-1 infection.
Purpose of the Study:
- To explore the variable rates of macrophage infection by SIVs and HIVs.
- To understand the factors influencing macrophage tropism and infection frequency.
- To investigate the relationship between macrophage infection levels and viral pathogenesis.
Main Methods:
- Comparative analysis of macrophage infection across different host-virus systems (SIV, HIV, NHPs).
- Investigation of entry and post-entry restriction mechanisms in resistant macrophages.
- Examination of viral adaptation and host immune environment influences on macrophage tropism.
Main Results:
- Macrophage infection rates differ widely based on host species, virus, and disease stage.
- African NHP macrophages exhibit resistance due to intrinsic cellular mechanisms.
- Elevated macrophage infection may correlate with increased pathogenesis in non-natural hosts.
Conclusions:
- Macrophage tropism is a critical factor in lentiviral pathogenesis.
- Host-specific restriction mechanisms significantly control SIV/HIV infection in macrophages.
- The role of macrophage infection in pathogenesis is complex, potentially acting as both a driver and a marker of disease progression.
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