Literature DB >> 2914210

Cholinergic activation of medial pontine reticular formation neurons in vitro.

R W Greene1, U Gerber, R W McCarley.   

Abstract

Direct microinjection of cholinergic compounds into pontine reticular formation furnishes an excellent phenomenological model of the rapid eye movement phase of sleep (REM), but the mechanisms underlying this effect and whether they mimic the cellular events of natural REM remain unknown. Data presented here from intracellular recordings in vitro in the rat demonstrate that two-thirds of medial pontine reticular formation neurons respond to application of 0.5-1.0 microM carbachol with a depolarization characterized by a decreased conductance and a linear I/V curve. The resultant mimicry of REM cellular events by carbachol extends to membrane potential depolarization, increased cellular excitability, enhancement of PSPs from reticular stimulation, and the absence of a burst discharge pattern. The presence of these effects with tetrodotoxin and their blockade by atropine imply a direct, muscarinic cholinergic mediation. Other neurons tested responded with either a biphasic hyperpolarization-depolarization or a hyperpolarization. The hyperpolarization was associated with an increased conductance which exhibited pronounced inward rectification, an effect novel for cholinergic agonists in vertebrate CNS but described in heart cells.

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Year:  1989        PMID: 2914210     DOI: 10.1016/0006-8993(89)91549-7

Source DB:  PubMed          Journal:  Brain Res        ISSN: 0006-8993            Impact factor:   3.252


  20 in total

Review 1.  Neurobiological mechanisms for the regulation of mammalian sleep-wake behavior: reinterpretation of historical evidence and inclusion of contemporary cellular and molecular evidence.

Authors:  Subimal Datta; Robert Ross Maclean
Journal:  Neurosci Biobehav Rev       Date:  2007-03-12       Impact factor: 8.989

2.  Relationships of nucleus reticularis pontis oralis neuronal discharge with sensory and carbachol evoked hippocampal theta rhythm.

Authors:  A Nuñez; I de Andrés; E García-Austt
Journal:  Exp Brain Res       Date:  1991       Impact factor: 1.972

Review 3.  The developmental decrease in REM sleep: the role of transmitters and electrical coupling.

Authors:  Edgar Garcia-Rill; Amanda Charlesworth; David Heister; Meijun Ye; Abdallah Hayar
Journal:  Sleep       Date:  2008-05       Impact factor: 5.849

Review 4.  Control of sleep and wakefulness.

Authors:  Ritchie E Brown; Radhika Basheer; James T McKenna; Robert E Strecker; Robert W McCarley
Journal:  Physiol Rev       Date:  2012-07       Impact factor: 37.312

5.  Evidence for Electrical Coupling in the SubCoeruleus (SubC) Nucleus.

Authors:  David S Heister; Abdallah Hayar; Amanda Charlesworth; Charlotte Yates; Yi-Hong Zhou; Edgar Garcia-Rill
Journal:  J Neurophysiol       Date:  2007-01-10       Impact factor: 2.714

6.  Release of acetylcholine and GABA, and activity of their synthesizing enzymes in the rat pontine reticular formation.

Authors:  I Camacho-Arroyo; R Alvarado; R Tapia
Journal:  Neurochem Res       Date:  1991-08       Impact factor: 3.996

7.  Cholinergic neurons in the pedunculopontine tegmental nucleus are involved in the mediation of prepulse inhibition of the acoustic startle response in the rat.

Authors:  M Koch; M Kungel; H Herbert
Journal:  Exp Brain Res       Date:  1993       Impact factor: 1.972

8.  Discharge profiles across the sleep-waking cycle of identified cholinergic, GABAergic, and glutamatergic neurons in the pontomesencephalic tegmentum of the rat.

Authors:  Soufiane Boucetta; Youssouf Cissé; Lynda Mainville; Marisela Morales; Barbara E Jones
Journal:  J Neurosci       Date:  2014-03-26       Impact factor: 6.167

9.  Brainstem sites for the carbachol elicitation of the hippocampal theta rhythm in the rat.

Authors:  R P Vertes; L V Colom; W J Fortin; B H Bland
Journal:  Exp Brain Res       Date:  1993       Impact factor: 1.972

10.  Muscarinic responses of rat basolateral amygdaloid neurons recorded in vitro.

Authors:  M S Washburn; H C Moises
Journal:  J Physiol       Date:  1992-04       Impact factor: 5.182

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