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.

Retrovirology
|November 20, 2020
PubMed
Abstract

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.

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