4.5 Article

Metabolic markers of neuronal injury correlate with SIVCNS disease severity and inoculum in the macaque model of NeuroAIDS

Journal

MAGNETIC RESONANCE IN MEDICINE
Volume 59, Issue 3, Pages 475-484

Publisher

WILEY
DOI: 10.1002/mrm.21556

Keywords

SIV; HIV; encephalitis; MRS

Funding

  1. NCRR NIH HHS [P41 RR14075, RR13213, P51 RR000168, K26 RR000168, P41 RR014075, RR000150, RR00168-39, K01 RR000150, P41 RR00995] Funding Source: Medline
  2. NINDS NIH HHS [NS34626, NS050041, NS051129, K25 NS051129-04, K25 NS051129, R01 NS034626, R01 NS050041] Funding Source: Medline

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In vivo MR spectroscopy (MRS) studies have shown reductions in NAA/Cr levels in patients with severe neurocognitive deficits due to AIDS dementia complex (ADC), also known as neuroAIDS. The relationship between the cellular changes within the brain during neuroAIDS and the role of NAA/Cr as a metabolic marker remains unclear. In order to clarify the relationship between NAA/Cr and disease severity we utilized the simian immunodeficiency virus (SIV)/macaque model of encephalitis. High-field proton MRS was performed on extracted metabolites from frontal cortex tissue samples of 29 rhesus macaques (6 healthy, 23 moribund with AIDS). Neuropathologic determination of encephalitis severity for each animal was completed and was found to correlate with NAA/Cr levels. Decreases in Glu/Cr and GABA/Cr may indicate that both excitatory and inhibitory neurons are affected. Highly significant correlations between NAA/Cr, Glu/Cr, and GABA/Cr were observed. These neuronal metabolites were also decreased in the absence of classical SIV encephalitis (SIVE). At any disease classification, animals inoculated with SIVmac251 were found to have lower levels of NAA/Cr than-animals inoculated with SIVmac239. In considering therapy for neuroAIDS the findings here support prevention of the encephalitic process, but suggest that suppressing the formation of multinucleated giant cells alone would be insufficient to prevent neuronal injury.

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