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Obstructive Sleep Apnea is Associated with Low GABA and High Glutamate in the Insular Cortex

Overview
Journal J Sleep Res
Specialty Psychiatry
Date 2016 Feb 5
PMID 26843332
Citations 25
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Abstract

The insular cortex is injured in obstructive sleep apnea (OSA) and responds inappropriately to autonomic challenges, suggesting neural reorganization. The objective of this study was to assess whether the neural changes might result from γ-aminobutyric acid (GABA) and glutamate alterations. We studied 14 OSA patients [mean age ± standard deviation (SD): 47.5 ± 10.5 years; nine male; apnea-hypopnea index (AHI): 29.5 ± 15.6 events h(-1) ] and 22 healthy participants (47.5 ± 10.1 years; 11 male), using magnetic resonance spectroscopy to detect GABA and glutamate levels in insular cortices. We localized the cortices with anatomical scans, and measured neurochemical levels from anterior to mid-regions. Left and right anterior insular cortices showed lower GABA and higher glutamate in OSA versus healthy subjects [GABA left: OSA n = 6: 0.36 ± 0.10 (mean ± SD), healthy n = 5: 0.62 ± 0.18; P < 0.05), right: OSA n = 11: 0.27 ± 0.09, healthy n = 14: 0.45 ± 0.16; P < 0.05; glutamate left: OSA n = 6: 1.61 ± 0.32, healthy n = 8: 0.94 ± 0.34; P < 0.05, right: OSA n = 14: 1.26 ± 0.28, healthy n = 19: 1.02 ± 0.28; P < 0.05]. GABA and glutamate levels were correlated only within the healthy group in the left insula (r: -0.9, P < 0.05). The altered anterior insular levels of GABA and glutamate may modify integration and projections to autonomic areas, contributing to the impaired cardiovascular regulation in OSA.

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References
1.
Macey P, Kumar R, Woo M, Yan-Go F, Harper R . Heart rate responses to autonomic challenges in obstructive sleep apnea. PLoS One. 2013; 8(10):e76631. PMC: 3806804. DOI: 10.1371/journal.pone.0076631. View

2.
Pellerin L, Magistretti P . Glutamate uptake into astrocytes stimulates aerobic glycolysis: a mechanism coupling neuronal activity to glucose utilization. Proc Natl Acad Sci U S A. 1994; 91(22):10625-9. PMC: 45074. DOI: 10.1073/pnas.91.22.10625. View

3.
Zhang Q, Qin W, He X, Li Q, Chen B, Zhang Y . Functional disconnection of the right anterior insula in obstructive sleep apnea. Sleep Med. 2015; 16(9):1062-70. DOI: 10.1016/j.sleep.2015.04.018. View

4.
Asghari A, Mohammadi F, Kamrava S, Tavakoli S, Farhadi M . Severity of depression and anxiety in obstructive sleep apnea syndrome. Eur Arch Otorhinolaryngol. 2012; 269(12):2549-53. DOI: 10.1007/s00405-012-1942-6. View

5.
Wiebking C, Duncan N, Tiret B, Hayes D, Marjaska M, Doyon J . GABA in the insula - a predictor of the neural response to interoceptive awareness. Neuroimage. 2013; 86:10-8. PMC: 4386686. DOI: 10.1016/j.neuroimage.2013.04.042. View