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Published on: September 19, 2010
Microglia Proliferation Underlies Synaptic Dysfunction in the Prefrontal Cortex: Implications for the Pathogenesis of
Abstract:
Microglia, which are productively infected by HIV-1, are critical for brain development and maturation, as well as synaptic plasticity. The pathophysiology of HIV-infected microglia and their role in the pathogenesis of HIV-1-associated neurocognitive and affective alterations, however, remains understudied. Three complementary aims were undertaken to critically address this knowledge gap. First, the predominant cell type expressing HIV-1 mRNA in the dorsolateral prefrontal cortex of postmortem HIV-1 seropositive individuals with HAND was investigated. Utilization of a combined RNAscope multiplex fluorescent and immunostaining assay revealed prominent HIV-1 mRNA in microglia of postmortem HIV-1 seropositive individuals with HAND. Second, measures of microglia proliferation and neuronal damage were evaluated in chimeric HIV (EcoHIV) rats. Eight weeks after EcoHIV innoculation, enhanced microglial proliferation was observed in the medial prefrontal cortex (mPFC) of EcoHIV rats, evidenced by an increased number of cells co-localized with both Iba1+ and Ki67+ relative to control animals. Neuronal damage in EcoHIV infected rats was evidenced by pronounced decreases in both synaptophysin and post synaptic density protein 95 (PSD-95), markers of pre-synaptic and post-synaptic damage, respectively. Third, regression analyses were conducted to evaluate whether microglia proliferation mechanistically underlies neuronal damage in EcoHIV and control animals. Indeed, microglia proliferation accounts for 42-68.6% of the variance in synaptic dysfunction. Collectively, microglia proliferation induced by chronic HIV-1 viral protein exposure may underlie the profound synaptodendritic alterations in HIV-1. Understanding how microglia are involved in the pathogenesis of HAND and HIV-1-associated affective disorders affords a key target for the development of novel therapeutics.
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.
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