Obstructive sleep apnea results from the interaction of an inadequate airway with the loss of tone in airway dilators. We hypothesize that the loss of tone during sleep is due to both: 1. Active inhibition of airway dilator motoneurons by glycine and GABA and 2. Disfacilitation of airway dilator motoneurons by the withdrawal of noradrenergic, serotonergic and glutamatergic inputs. We further hypothesize that this combination of inhibition and disfacilitation is present if trigeminal, hypoglossal and ambiguus motoneurons. We hypothesize that glutamate release onto trigeminal, hypoglossal and ambiguus motoneurons is selectively decreased in NREM sleep, whereas norepinephrine and serotonin released are minimal in REM sleep. We propose to test these hypothesis by conducting the first microdialysis studies of amino acid and norepinephrine release into motoneurons as a function of sleep state. We will also measure serotonin release in all these sites across the sleep cycle. We will study the release of these transmitters in the decerebrate animal and during naturally occurring sleep. We will determine if the profile of transmitter release across the sleep cycle differs in trigeminal, hypoglossal and ambiguus motoneurons. We will determine the effect of activating hypnogenic neurons in the preoptic area by local warming and the effect of inactivating periaqueductal gray neurons, on transmitter release onto upper airway dilator motoneurons. Our pilot data have already provided important new insights into how airway muscle tone is controlled and demonstrate the feasibility of our approach. This work will allow us to identify the major amino acid and monoamine neurotransmitters involved in the loss of tone in airway dilators during REM and NREM sleep. It will also have implications for understanding brain mechanisms controlling muscle tone in normal and pathological conditions.

Agency
National Institute of Health (NIH)
Institute
National Heart, Lung, and Blood Institute (NHLBI)
Type
Specialized Center (P50)
Project #
5P50HL060296-03
Application #
6349183
Study Section
Project Start
2000-09-01
Project End
2001-08-31
Budget Start
1997-10-01
Budget End
1998-09-30
Support Year
3
Fiscal Year
2000
Total Cost
$230,757
Indirect Cost
Name
University of California Los Angeles
Department
Type
DUNS #
119132785
City
Los Angeles
State
CA
Country
United States
Zip Code
90095
Macey, Paul M; Kumar, Rajesh; Yan-Go, Frisca L et al. (2012) Sex differences in white matter alterations accompanying obstructive sleep apnea. Sleep 35:1603-13
Wang, Yang; Guo, Shang Z; Bonen, Arend et al. (2011) Monocarboxylate transporter 2 and stroke severity in a rodent model of sleep apnea. J Neurosci 31:10241-8
Yamuy, Jack; Fung, Simon J; Xi, Mingchu et al. (2010) State-dependent control of lumbar motoneurons by the hypocretinergic system. Exp Neurol 221:335-45
Macey, Paul M; Woo, Mary A; Kumar, Rajesh et al. (2010) Relationship between obstructive sleep apnea severity and sleep, depression and anxiety symptoms in newly-diagnosed patients. PLoS One 5:e10211
Engelhardt, John K; Silveira, Valentina; Morales, Francisco R et al. (2010) Serotoninergic control of glycinergic inhibitory postsynaptic currents in rat hypoglossal motoneurons. Brain Res 1345:1-8
Vespa, P M; McArthur, D L; Xu, Y et al. (2010) Nonconvulsive seizures after traumatic brain injury are associated with hippocampal atrophy. Neurology 75:792-8
Ramanathan, Lalini; Hu, Shuxin; Frautschy, Sally A et al. (2010) Short-term total sleep deprivation in the rat increases antioxidant responses in multiple brain regions without impairing spontaneous alternation behavior. Behav Brain Res 207:305-9
Methippara, Melvi; Bashir, Tariq; Suntsova, Natalia et al. (2010) Hippocampal adult neurogenesis is enhanced by chronic eszopiclone treatment in rats. J Sleep Res 19:384-93
Sportiche, N; Suntsova, N; Methippara, M et al. (2010) Sustained sleep fragmentation results in delayed changes in hippocampal-dependent cognitive function associated with reduced dentate gyrus neurogenesis. Neuroscience 170:247-58
Alam, Md Noor; Kumar, Sunil; Rai, Seema et al. (2009) Role of adenosine A(1) receptor in the perifornical-lateral hypothalamic area in sleep-wake regulation in rats. Brain Res 1304:96-104

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