Related Experiment Video
Updated: Nov 29, 2025

A Rat Model of EcoHIV Brain Infection
Published on: January 21, 2021
Comparative analysis of human microglial models for studies of HIV replication and pathogenesis
Mohammad A Rai1,2, Jason Hammonds1,3, Mario Pujato4,3
1Division of Infectious Diseases, Cincinnati Children's Hospital, 3333 Burnet Avenue, MLC 7017, Cincinnati, OH, 45229, USA.
Background:
HIV associated neurocognitive disorders cause significant morbidity and mortality despite the advent of highly active antiretroviral therapy. A deeper understanding of fundamental mechanisms underlying HIV infection and pathogenesis in the central nervous system is warranted. Microglia are resident myeloid cells of the brain that are readily infected by HIV and may constitute a CNS reservoir. We evaluated two microglial model cell lines (C20, HMC3) and two sources of primary cell-derived microglia (monocyte-derived microglia [MMG] and induced pluripotent stem cell-derived microglia [iPSC-MG]) as potential model systems for studying HIV-microglia interactions.
Results:
All four microglial model cells expressed typical myeloid markers with the exception of low or absent CD45 and CD11b expression by C20 and HMC3, and all four expressed the microglia-specific markers P2RY12 and TMEM119. Marked differences were observed upon gene expression profiling, however, indicating that MMG and iPSC-MG cluster closely together with primary human microglial cells, while C20 and HMC3 were similar to each other but very different from primary microglia. Expression of HIV-relevant genes also revealed important differences, with iPSC-MG and MMG expressing relevant genes at levels more closely resembling primary microglia. iPSC-MG and MMG were readily infected with R5-tropic HIV, while C20 and HMC3 lack CD4 and require pseudotyping for infection. Despite many similarities, HIV replication dynamics and HIV-1 particle capture by Siglec-1 differed markedly between the MMG and iPSC-MG.
Conclusions:
MMG and iPSC-MG appear to be viable microglial models that are susceptible to HIV infection and bear more similarities to authentic microglia than two transformed microglia cell lines. The observed differences in HIV replication and particle capture between MMG and iPSC-MG warrant further study.
Insights
Monocyte-derived microglia (MMG) and induced pluripotent stem cell-derived microglia (iPSC-MG) are promising models for studying HIV-microglia interactions. These models better mimic authentic microglia and are susceptible to HIV infection compared to transformed cell lines.
Area of Science:
- Neuroscience
- Immunology
- Virology
Background:
- HIV-associated neurocognitive disorders (HAND) contribute to significant morbidity and mortality.
- Understanding HIV pathogenesis in the central nervous system (CNS) is crucial.
- Microglia, the brain's resident myeloid cells, are a potential reservoir for HIV infection.
Purpose of the Study:
- To evaluate microglial model cell lines (C20, HMC3) and primary cell-derived microglia (monocyte-derived microglia [MMG], induced pluripotent stem cell-derived microglia [iPSC-MG]) for studying HIV-microglia interactions.
- To compare the suitability of these models for HIV research.
Main Methods:
- Characterization of four microglial models (C20, HMC3, MMG, iPSC-MG) using myeloid and microglia-specific markers.
- Gene expression profiling to assess similarity to primary human microglia.
- Evaluation of HIV-relevant gene expression and susceptibility to R5-tropic HIV infection.
- Analysis of HIV replication dynamics and HIV-1 particle capture by Siglec-1.
Main Results:
- MMG and iPSC-MG closely resembled primary microglia in gene expression, while C20 and HMC3 differed significantly.
- MMG and iPSC-MG expressed HIV-relevant genes at levels comparable to primary microglia.
- MMG and iPSC-MG were readily infected with R5-tropic HIV, unlike C20 and HMC3 which required pseudotyping.
- Differences in HIV replication and particle capture were observed between MMG and iPSC-MG.
Conclusions:
- MMG and iPSC-MG represent viable microglial models susceptible to HIV infection, showing greater similarity to authentic microglia than transformed cell lines.
- Further investigation into the distinct HIV replication and particle capture dynamics between MMG and iPSC-MG is warranted.

