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Updated: Feb 5, 2026

Phagosome Migration and Velocity Measured in Live Primary Human Macrophages Infected with HIV-1
Published on: September 5, 2016
Human interleukin-34-derived macrophages have increased resistance to HIV-1 infection
Dominic Paquin-Proulx1, Benjamin C Greenspun1, Shannon M Kitchen1
1Department of Microbiology, Immunology & Tropical Medicine, The George Washington University, Washington, DC, USA.
Abstract:
The establishment of latent HIV-1 reservoirs in terminally differentiated cells represents a major impediment to the success of antiretroviral therapies. Notably, macrophages (Mϕs) are susceptible to HIV-1 infection and recent evidence suggests that they may be involved in long-term HIV-1 persistence. While the extensive functional heterogeneity seen across the Mϕ cell lineage parallels the spectrum of HIV-1 susceptibility reported across these cell subsets, the facets of Mϕ HIV-1 resistance and susceptibility remain to be fully defined. Notably, the differentiation of most Mϕ subsets depends on signaling through the macrophage colony-stimulating factor receptor (M-CSFR), which in addition to M-CSF, is now known to bind the unrelated interleukin-34 (IL-34) cytokine. The biological need for two M-CSFR ligands awaits full elucidation. Here, we report that Mϕs differentiated from human peripheral blood monocytes with IL-34 are substantially more resistant to HIV-1 infection than M-CSF-derived Mϕs. Moreover, while both Mϕ subsets express comparable surface protein levels of the HIV-1 receptor and co-receptor, CD4 and CCR5 respectively, the IL-34-Mϕs express significantly greater levels of pertinent restriction factor genes, potentially accounting for their greater resistance to HIV-1 infection than that observed in M-CSF-Mϕs. Together, our findings underline previously unexplored differentiation pathways resulting in HIV-1-susceptible and resistant Mϕ subsets and pave the way for further research that may overcome one of the last major hurdles in developing more successful antiretroviral therapy.
Insights
Interleukin-34 (IL-34) can differentiate macrophages (Mϕs) more resistant to HIV-1 infection than those from macrophage colony-stimulating factor (M-CSF). This discovery offers new avenues for developing effective antiretroviral therapies.
Area of Science:
- Immunology
- Virology
- Cell Biology
Background:
- Latent HIV-1 reservoirs in differentiated cells hinder antiretroviral therapy.
- Macrophages (Mϕs) are susceptible to HIV-1 and may contribute to viral persistence.
- Macrophage heterogeneity influences HIV-1 susceptibility, but resistance factors are not fully understood.
Purpose of the Study:
- To investigate the differential susceptibility of Mϕ subsets to HIV-1 infection.
- To explore the role of macrophage colony-stimulating factor receptor (M-CSFR) ligands, M-CSF and IL-34, in Mϕ differentiation and HIV-1 infection.
- To identify factors contributing to HIV-1 resistance in specific Mϕ subsets.
Main Methods:
- Differentiated human peripheral blood monocytes into Mϕs using either M-CSF or IL-34.
- Assessed HIV-1 infection levels in both Mϕ subsets.
- Quantified surface expression of HIV-1 receptors (CD4) and co-receptors (CCR5).
- Measured the expression levels of restriction factor genes.
Main Results:
- IL-34-differentiated Mϕs exhibited significantly greater resistance to HIV-1 infection compared to M-CSF-differentiated Mϕs.
- Both Mϕ subsets expressed comparable levels of CD4 and CCR5.
- IL-34-Mϕs showed significantly higher expression of restriction factor genes, potentially explaining their enhanced resistance.
Conclusions:
- Distinct Mϕ differentiation pathways, driven by IL-34 versus M-CSF, result in subsets with differential HIV-1 susceptibility and resistance.
- These findings highlight unexplored mechanisms of Mϕ-mediated HIV-1 control.
- This research may inform strategies to overcome barriers in developing improved antiretroviral therapies.
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