Scientific article
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English

Gray matter gamma-hydroxy-butyric acid and glutamate reflect beta-amyloid burden at old age

Publication date2024
First online date2024-04-30
Abstract

Unlabelled: Gamma-hydroxy-butyric acid (GABA) and glutamate are neurotransmitters with essential importance for cognitive processing. Here, we investigate relationships between GABA, glutamate, and brain ß-amyloid (Aß) burden before clinical manifestation of Alzheimer's disease (AD). Thirty cognitively healthy adults (age 69.9 ± 6 years) received high-resolution atlas-based1H-magnetic resonance spectroscopic imaging (MRSI) at ultra-high magnetic field strength of 7 Tesla for gray matter-specific assessment of GABA and glutamate. We assessed Aß burden with positron emission tomography and risk factors for AD. Higher gray matter GABA and glutamate related to higher Aß-burden (ß = 0.60,p < 0.05;ß = 0.64,p < 0.02), with positive effect modification by apolipoprotein-E-epsilon-4-allele (APOE4) (p = 0.01-0.03). GABA and glutamate negatively related to longitudinal change in verbal episodic memory performance (ß = -0.48;p = 0.02;ß = -0.50;p = 0.01). In vivo measures of GABA and glutamate reflect early AD pathology at old age, in an APOE4-dependent manner. GABA and glutamate may represent promising biomarkers and potential targets for early therapeutic intervention and prevention.

Highlights: Gray matter-specific metabolic imaging with high-resolution atlas-based MRSI at 7 Tesla.Higher GABA and glutamate relate to ß-amyloid burden, in an APOE4-dependent manner.Gray matter GABA and glutamate identify older adults with high risk of future AD.GABA and glutamate might reflect altered synaptic and neuronal activity at early AD.

Keywords
  • 7 Tesla
  • APOE4
  • Alzheimer
  • GABA
  • Aging
  • Beta‐amyloid
  • Biomarker
  • Cognitive impairment
  • Dementia
  • Glutamate
  • Magnetic resonance spectroscopic imaging
  • Magnetic resonance spectroscopy
  • Memory
  • Positron emission tomography
  • Prevention
  • Synaptic dysfunction
  • Synaptic metabolism
Citation (ISO format)
SCHREINER, Simon J et al. Gray matter gamma-hydroxy-butyric acid and glutamate reflect beta-amyloid burden at old age. In: Alzheimer’s & dementia. Diagnosis, assessment & disease monitoring, 2024, vol. 16, n° 2, p. e12587. doi: 10.1002/dad2.12587
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accessLevelPublic
Identifiers
Journal ISSN2352-8729
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Technical informations

Creation21/06/2024 12:30:33
First validation24/06/2024 14:39:13
Update18/11/2024 16:59:41
Status update18/11/2024 16:59:41
Last indexation18/11/2024 16:59:42
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