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Updated: Jan 25, 2026

Genotypic Inference of HIV-1 Tropism Using Population-based Sequencing of V3
Published on: December 27, 2010
Mapping abnormal subcortical neurodevelopment in a cohort of Thai children with HIV
Benjamin S C Wade1, Victor G Valcour2, Thanyawee Puthanakit3
1Imaging Genetics Center, Mark & Mary Stevens Neuroimaging & Informatics Institute, Keck School of Medicine, University of Southern California, Marina del Rey, CA, USA; Ahmanson-Lovelace Brain Mapping Center University of California, Los Angeles, Los Angeles, CA, USA; Missouri Institute of Mental Health, University of Missouri St. Louis, St. Louis, USA.
Insights
Children with perinatal HIV infection (PaHIV) show subtle, yet significant, pallidal thinning. Brain structure in PaHIV is linked to CD4 count, not treatment timing, suggesting early intervention may be key.
Area of Science:
- Neuroimaging
- Pediatric Neurology
- Infectious Diseases
Background:
- Subcortical brain alterations are documented in adults with HIV.
- Longitudinal structural changes in children with perinatal HIV infection (PaHIV) are not well understood.
Purpose of the Study:
- To investigate longitudinal subcortical brain morphometry in children with PaHIV.
- To assess the association between HIV, combination antiretroviral treatment (cART), and brain development.
Main Methods:
- Structural MRI scans (1.5T) from 43 Thai children with PaHIV and 50 HIV- controls were analyzed.
- Volumetric and surface-based shape analyses were used to assess subcortical structures.
- Regression models examined differences in morphometry related to HIV status, CD4 count, and cART initiation timing.
Main Results:
- A specific pallidal subregion was significantly thinner in children with PaHIV.
- Pallidal regional thickness, surface area, and volume correlated with CD4 count in the PaHIV group.
- Longitudinal brain morphometry was not significantly associated with HIV status or cART timing, but pallidal volume trajectory linked to baseline CD4 count.
Conclusions:
- HIV infection in children is associated with subtle abnormalities in basal ganglia structures, particularly the pallidum.
- Brain structural changes in PaHIV appear more related to immune status (CD4 count) than cART initiation timing.
- Findings suggest a potential subtle impact of stable perinatal HIV infection on brain development.
Abstract:
Alterations in subcortical brain structures have been reported in adults with HIV and, to a lesser extent, pediatric cohorts. The extent of longitudinal structural abnormalities in children with perinatal HIV infection (PaHIV) remains unclear. We modeled subcortical morphometry from whole brain structural magnetic resonance imaging (1.5 T) scans of 43 Thai children with PaHIV (baseline age = 11.09±2.36 years) and 50 HIV- children (11.26±2.80 years) using volumetric and surface-based shape analyses. The PaHIV sample were randomized to initiate combination antiretroviral treatment (cART) when CD4 counts were 15-24% (immediate: n = 22) or when CD4 < 15% (deferred: n = 21). Follow-up scans were acquired approximately 52 weeks after baseline. Volumetric and shape descriptors capturing local thickness and surface area dilation were defined for the bilateral accumbens, amygdala, putamen, pallidum, thalamus, caudate, and hippocampus. Regression models adjusting for clinical and demographic variables examined between and within group differences in morphometry associated with HIV. We assessed whether baseline CD4 count and cART status or timing associated with brain maturation within the PaHIV group. All models were adjusted for multiple comparisons using the false discovery rate. A pallidal subregion was significantly thinner in children with PaHIV. Regional thickness, surface area, and volume of the pallidum was associated with CD4 count in children with PaHIV. Longitudinal morphometry was not associated with HIV or cART status or timing, however, the trajectory of the left pallidum volume was positively associated with baseline CD4 count. Our findings corroborate reports in adult cohorts demonstrating a high predilection for HIV-mediated abnormalities in the basal ganglia, but suggest the effect of stable PaHIV infection on morphological aspects of brain development may be subtle.
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