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torsdag 29 november 2012

Glysinerginen säätely orexiinineuroniin.

 Suomennettavia: 
PLoS One. 2011;6(9):e25076. Epub 2011 Sep 16. 
Orexin neurons receive glycinergic innervations.

Abstract

Glycine, a nonessential amino-acid that acts as an inhibitory neurotransmitter in the central nervous system, is currently used as a dietary supplement to improve the quality of sleep, but its mechanism of action is poorly understood.

We confirmed the effects of glycine on sleep/wakefulness behavior in mice when administered peripherally.

 Glycine administration increased non-rapid eye movement (NREM) sleep time and decreased the amount and mean episode duration of wakefulness when administered in the dark period.

 Since peripheral administration of glycine induced fragmentation of sleep/wakefulness states, which is a characteristic of orexin deficiency, we examined the effects of glycine on orexin neurons.  The number of Fos-positive orexin neurons markedly decreased after intraperitoneal administration of glycine to mice.

 To examine whether glycine acts directly on orexin neurons, we examined the effects of glycine on orexin neurons by patch-clamp electrophysiology. Glycine directly induced hyperpolarization and cessation of firing of orexin neurons. These responses were inhibited by a specific glycine receptor antagonist, strychnine. Triple-labeling immunofluorescent analysis showed close apposition of glycine transporter 2 (GlyT2)-immunoreactive glycinergic fibers onto orexin-immunoreactive neurons.

Immunoelectron microscopic analysis revealed that GlyT2-immunoreactive terminals made symmetrical synaptic contacts with somata and dendrites of orexin neurons.

 Double-labeling immunoelectron microscopy demonstrated that glycine receptor alpha subunits were localized in the postsynaptic membrane of symmetrical inhibitory synapses on orexin neurons.

 Considering the importance of glycinergic regulation during REM sleep, our observations suggest that glycine injection might affect the activity of orexin neurons, and that glycinergic inhibition of orexin neurons might play a role in physiological sleep regulation.

Suomennosta vailla.
7.5. 2013 

Onko orexiinisysteemillä ja Gly r yhteyttä?

Eur J Neurosci. 2004 Mar;19(5):1278-84. Orexin (hypocretin)/dynorphin neurons control GABAergic inputs to tuberomammillary neurons.

Source

Department of Neurophysiology, Heinrich-Heine-University Düsseldorf, Germany. kristere@stanford.edu

Abstract

High activity of the histaminergic neurons in the tuberomammillary (TM) nucleus increases wakefulness, and their firing rate is highest during waking and lowest during rapid eye movement sleep.

 The TM neurons receive a prominent innervation from sleep-active gamma-aminobutyric acidergic (GABAergic) neurons in the ventrolateral preoptic nucleus, which inhibits them during sleep.

 They also receive an excitatory input from the orexin- and dynorphin-containing neurons in the lateral hypothalamus, which are critically involved in sleep regulation and whose dysfunction causes narcolepsy

We have used intracellular recordings and immunohistochemistry to study if orexin neurons exert control over the GABAergic inputs to TM neurons in rat hypothalamic slices.

 Dynorphin suppressed GABAergic inputs and thus disinhibits the TM neurons, acting in concert with orexin to increase the excitability of these neurons.

 In contrast, both orexin-A and orexin-B markedly increased the frequency of GABAergic potentials, while co-application of orexin and dynorphin produced responses similar to dynorphin alone. Thus, orexins excite TM neurons directly and by disinhibition, gated by dynorphin. These data might explain some of the neuropathology of narcolepsy.

OREXIINISYSTEEMIN  JA GLYSIINISYSTEEMIN yhteys:
 On olemassa. Suomennan jatkossa.
 http://www.ncbi.nlm.nih.gov/pubmed?term=glycinergic%20receptor%2C%20orexin



  • Orexiinisysteemi toimii kuin Aspartaterginen järjestelmä (erittäin nopea  glutamaterginen excitatorien neuroni, joka stimuloi histaminergista neuronia. 
 http://www.ncbi.nlm.nih.gov/pubmed/22956835