Microglia Proliferation Underlies Synaptic Dysfunction in the Prefrontal Cortex: Implications for the Pathogenesis of

Insights

Microglia infected with HIV-1 drive neurocognitive impairment by proliferating and causing synaptic damage. This study reveals microglia proliferation as a key factor in HIV-associated neurocognitive disorders (HAND).

Area of Science:

  • Neuroscience
  • Immunology
  • Virology

Background:

  • Microglia, the brain's immune cells, are productively infected by HIV-1.
  • Their role in HIV-1-associated neurocognitive and affective disorders remains understudied.
  • HIV-1 infection impacts brain development, maturation, and synaptic plasticity.

Approach:

  • Investigated HIV-1 mRNA expression in microglia from postmortem human brain tissue using RNAscope multiplex fluorescent and immunostaining.
  • Assessed microglia proliferation and neuronal damage markers (synaptophysin, PSD-95) in chimeric HIV (EcoHIV) rat models.
  • Performed regression analyses to determine the mechanistic link between microglia proliferation and synaptic dysfunction.

Key Points:

  • HIV-1 mRNA was predominantly found in microglia in the dorsolateral prefrontal cortex of individuals with HAND.
  • EcoHIV rats exhibited increased microglial proliferation and significant neuronal damage, including pre- and post-synaptic alterations.
  • Microglia proliferation explained 42-68.6% of the variance in synaptic dysfunction in EcoHIV rats.

Conclusions:

  • Microglia proliferation, induced by chronic HIV-1 viral protein exposure, may underlie synaptic alterations in HIV-1.
  • Understanding microglia's role in HAND pathogenesis offers a therapeutic target for novel treatments.
  • This research highlights microglia as critical players in HIV-1 neuropathogenesis and associated cognitive deficits.