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Updated: Oct 12, 2025

A Rat Model of EcoHIV Brain Infection
Published on: January 21, 2021
Neurodevelopmental Processes in the Prefrontal Cortex Derailed by Chronic HIV-1 Viral Protein Exposure
Kristen A McLaurin1, Hailong Li1, Rosemarie M Booze1
1Department of Psychology, University of South Carolina, Columbia, SC 29208, USA.
Insights
Human immunodeficiency virus type 1 (HIV-1) infection in adolescents causes progressive neurocognitive impairments. This study reveals HIV-1 proteins cause developmental deficits and synaptic dysfunction in brain neurons, impacting cognitive function.
Area of Science:
- Neuroscience
- Virology
- Developmental Biology
Background:
- Combination antiretroviral therapy allows individuals perinatally infected with HIV-1 to live into adulthood.
- Perinatally HIV-1 infected adolescents (pALHIV) experience chronic neurocognitive impairments.
- The underlying pathophysiological mechanisms of these deficits remain understudied.
Purpose of the Study:
- To investigate the neurodevelopmental and synaptodendritic alterations in the medial prefrontal cortex (mPFC) of HIV-1 transgenic (Tg) rats.
- To determine if neuroinflammation plays a role in early development.
Main Methods:
- A longitudinal experimental design was used, examining rats from postnatal day 30 to 180.
- Pyramidal neurons and dendritic spines in layers II-III of the mPFC were analyzed.
- Neuroinflammatory markers (IL-1β, IL-6, TNF-α) were assessed at postnatal day 30.
Main Results:
- HIV-1 viral proteins induced significant neurodevelopmental alterations and progressive synaptodendritic dysfunction in the mPFC.
- HIV-1 Tg rats showed deficits in dendritic and synaptic pruning.
- An age-related shift towards immature dendritic spine phenotypes was observed in HIV-1 Tg animals.
- No significant neuroinflammation was detected in the mPFC during early development.
Conclusions:
- Progressive neuronal and dendritic spine dysmorphology are key mechanisms underlying chronic neurocognitive impairments in pALHIV.
- Synaptodendritic dysfunction, rather than early neuroinflammation, is implicated in the observed deficits.
Abstract:
Due to the widespread access to, and implementation of, combination antiretroviral therapy, individuals perinatally infected with human immunodeficiency virus type 1 (HIV-1) are living into adolescence and adulthood. Perinatally infected adolescents living with HIV-1 (pALHIV) are plagued by progressive, chronic neurocognitive impairments; the pathophysiological mechanisms underlying these deficits, however, remain understudied. A longitudinal experimental design from postnatal day (PD) 30 to PD 180 was utilized to establish the development of pyramidal neurons, and associated dendritic spines, from layers II-III of the medial prefrontal cortex (mPFC) in HIV-1 transgenic (Tg) and control animals. Three putative neuroinflammatory markers (i.e., IL-1β, IL-6, and TNF-α) were evaluated early in development (i.e., PD 30) as a potential mechanism underlying synaptic dysfunction in the mPFC. Constitutive expression of HIV-1 viral proteins induced prominent neurodevelopmental alterations and progressive synaptodendritic dysfunction, independent of biological sex, in pyramidal neurons from layers II-III of the mPFC. From a neurodevelopmental perspective, HIV-1 Tg rats exhibited prominent deficits in dendritic and synaptic pruning. With regards to progressive synaptodendritic dysfunction, HIV-1 Tg animals exhibited an age-related population shift towards dendritic spines with decreased volume, increased backbone length, and decreased head diameter; parameters associated with a more immature dendritic spine phenotype. There was no compelling evidence for neuroinflammation in the mPFC during early development. Collectively, progressive neuronal and dendritic spine dysmorphology herald synaptodendritic dysfunction as a key neural mechanism underlying chronic neurocognitive impairments in pALHIV.
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