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Article
Neuroimaging Abnormalities in Clade C HIV Are Independent of Tat Genetic Diversity
Journal of NeuroVirology
  • Robert H. Paul
  • Sarah Phillips
  • Jacqueline Hoare
  • David H. Laidlaw
  • Ryan Cabeen
  • Gayla R. Olbricht, Missouri University of Science and Technology
  • For full list of authors, see publisher's website., For full list of authors, see publisher's website.
Abstract

Controversy remains regarding the neurotoxicity of clade C human immunodeficiency virus (HIV-C). When examined in preclinical studies, a cysteine to serine substitution in the C31 dicysteine motif of the HIV-C Tat protein (C31S) results in less severe brain injury compared to other viral clades. By contrast, patient cohort studies identify significant neuropsychological impairment among HIV-C individuals independent of Tat variability. The present study clarified this discrepancy by examining neuroimaging markers of brain integrity among HIV-C individuals with and without the Tat substitution. Thirty-seven HIV-C individuals with the Tat C31S substitution, 109 HIV-C individuals without the Tat substitution (C31C), and 34 HIV− controls underwent 3T structural magnetic resonance imaging (MRI) and diffusion tensor imaging (DTI). Volumes were determined for the caudate, putamen, thalamus, corpus callosum, total gray matter, and total white matter. DTI metrics included fractional anisotropy (FA), radial diffusivity (RD), and axial diffusivity (AD). Tracts of interest included the anterior thalamic radiation (ATR), cingulum bundle (CING), uncinate fasciculus (UNC), and corpus callosum (CC). HIV+ individuals exhibited smaller volumes in subcortical gray matter, total gray matter and total white matter compared to HIV− controls. HIV+ individuals also exhibited DTI abnormalities across multiple tracts compared to HIV− controls. By contrast, neither volumetric nor diffusion indices differed significantly between the Tat C31S and C31C groups. Tat C31S status is not a sufficient biomarker of HIV-related brain integrity in patient populations. Clinical attention directed at brain health is warranted for all HIV+ individuals, independent of Tat C31S or clade C status.

Department(s)
Mathematics and Statistics
Research Center/Lab(s)
Center for High Performance Computing Research
Keywords and Phrases
  • C30C31 dicysteine motif,
  • Clade C,
  • HIV,
  • Neuroimaging,
  • Tat C31S
Document Type
Article - Journal
Document Version
Citation
File Type
text
Language(s)
English
Rights
© 2017 Taylor & Francis, All rights reserved.
Publication Date
4-1-2017
Publication Date
01 Apr 2017
Citation Information
Robert H. Paul, Sarah Phillips, Jacqueline Hoare, David H. Laidlaw, et al.. "Neuroimaging Abnormalities in Clade C HIV Are Independent of Tat Genetic Diversity" Journal of NeuroVirology Vol. 23 Iss. 2 (2017) p. 319 - 328 ISSN: 1355-0284; 1538-2443
Available at: http://works.bepress.com/gayla-olbricht/50/