Search results for "Pineal gland"

showing 10 items of 143 documents

Morphological and electrophysiological evidence for habenular influence on the guinea-pig pineal gland

1981

The central innervation of the guinea-pig pineal gland was investigated by histological and electrophysiological methods: Staining the pineal gland and the epithalamus, a double route of central innervation could be shown in the anterior part of the organ: (a) Fibres from the habenular nuclei, mainly from the lateral part, penetrate the organ via the pineal stalk. (b) Other fibres join the striae medullares and running in the habenulae reach the organ more dorsally. The fibres end in the intercellular space where they form a dense network. In 15 male guinea-pigs under urethane anesthesia, two series of unit recording experiments were performed: (a) Recordings were made from 128 units in the…

MaleNeuronsHypothalamo-Hypophyseal Systemendocrine systemGuinea PigsMedian EminenceAnatomyBiologyPineal GlandElectric StimulationGuinea pigPsychiatry and Mental healthPineal glandElectrophysiologymedicine.anatomical_structurenervous systemstomatognathic systemNeurologyOptic ChiasmmedicineAnimalsNeurology (clinical)Microelectrodeshormones hormone substitutes and hormone antagonistsBiological PsychiatryJournal of Neural Transmission
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Electrophysiological evidence for circadian rhythmicity in a mammalian pineal organ

1980

Long-term electrophysiological recordings from the guinea-pig pineal organ show that three types of intrinsic cells can be distinguished: (i) Cells showing constant firing rates over periods of up to 24 hours. (ii) Cells which are highly active during the day and show a low firing rate during the night. (iii) Cells which exhibit low activity during the day and enhanced activity during the night; these cells can be strongly inhibited by 1 min of light given during the night. Both the light- and darkness-activated cells show activity patterns which closely follow season-dependent differences in day- and night-lengths. In addition, both cell types show an oscillatory pattern in maintained acti…

MaleNeuronsmedicine.medical_specialtyCell typeLightGuinea PigsLow activityDarknessBiologyPineal GlandCircadian RhythmPsychiatry and Mental healthElectrophysiologyPineal glandEndocrinologymedicine.anatomical_structureNeurologyInternal medicineDarknessmedicineAnimalsNeurology (clinical)Circadian rhythmPineal organBiological PsychiatryJournal of Neural Transmission
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Modulatory role of acetylcholine in the rat pineal gland

1998

Abstract The function of acetylcholine (ACh) in the mammalian pineal gland is unknown. To test the hypothesis that ACh exerts a modulatory role in this organ, in the present study electrophysiogical multiunit recordings were carried out in ex-vivo rat pineal glands superfused with different drugs. It was found that ACh (10 −7 M) as well as the cholinergic agonists oxotremorine (10 −7 M) and nicotine (10 −6 M) increased the discharge rates of most of the spontaneously active units and led to burst activity in previously regularly firing cells. It is concluded that ACh may play a modulatory role in the pineal by influencing the firing of a special population of pineal cells with perhaps recep…

MaleNicotinePeriodicityendocrine systemmedicine.medical_specialtyAction PotentialsIn Vitro TechniquesBiologyPineal GlandRats Sprague-Dawleychemistry.chemical_compoundPineal glandInternal medicinemedicineOxotremorineAnimalsReceptorNeurotransmitterElectrodesAcetylcholine receptorOxotremorineGeneral NeuroscienceAcetylcholineRatsElectrophysiologyPerfusionEndocrinologymedicine.anatomical_structurenervous systemchemistryCholinergicAcetylcholinemedicine.drugEndocrine glandNeuroscience Letters
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Sulfhydryl G Proteins and Phospholipase A2-Associated G Proteins Are Involved in Adrenergic Signal Transduction in the Rat Pineal Gland

2001

The rat pineal gland with its circadian noradrenaline-regulated melatonin rhythm is an excellent model for studying adrenergic signal transduction with respect to cAMP and cGMP formation. The stimulatory G(s) proteins play a well-established role in this process. In contrast, the potential roles of the inhibitory G(i) proteins, the functionally unclear other G(o) proteins, and a number of G protein subtypes are not known. The present study examines the effects on beta(1)- and beta(1)-plus-alpha(1)-stimulated cAMP and cGMP formation of a number of G protein modulators in rat pinealocyte suspension cultures. The effects of the nitric oxide donor sodium nitroprusside on cGMP were also examined…

MaleNitroprussideArylamine N-AcetyltransferaseG proteinAdrenergicWasp VenomsPhospholipaseBiologyNitric OxidePertussis toxinBenzylisoquinolinesPineal GlandPhospholipases APinealocyteRats Sprague-DawleyPhenylephrineAlkaloidsEndocrinologyPhospholipase A2GTP-Binding ProteinsCyclic AMPAnimalsp-Methoxy-N-methylphenethylamineVirulence Factors BordetellaCyclic GMPSulfhydryl ReagentsIsoproterenolAdrenergic beta-AgonistsRatsReceptors AdrenergicPhospholipases A2Pertussis ToxinBiochemistryEthylmaleimideMastoparanbiology.proteinIntercellular Signaling Peptides and ProteinsAnimal Science and ZoologySignal transductionPeptidesAdrenergic alpha-AgonistsSignal TransductionGeneral and Comparative Endocrinology
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In rat pinealocytes the cyclic GMP response to NO is regulated by Ca2+ and protein kinase C

1995

There is ample evidence that beta-adrenergic stimulation of cyclic GMP formation is potentiated by alpha1-adrenergic mechanisms, the latter leading to elevation of intracellular Ca2+ concentration ([Ca2+]i) and protein kinase C (PKC) activation. Recent studies have shown that nitric oxide synthase (NOS) and nitric oxide (NO) are a component of the adrenoceptor-cyclic GMP signalling pathway. The aim of the present investigation was to study the roles of alpha1-adrenergic mechanisms, Ca2+ and PKC on NO-stimulated cyclic GMP formation. To this end suspension cultures of rat pinealocytes were treated with the NO donor sodium nitroprusside (SNP) in the presence of alpha1-adrenergic agonists, [Ca…

MaleNitroprussidePhosphodiesterase InhibitorsNitric OxidePineal GlandPinealocyteNitric oxideRats Sprague-DawleyPhenylephrinechemistry.chemical_compoundCalmodulinmedicineAnimalsOuabainCyclic GMPProtein Kinase InhibitorsMolecular BiologyProtein Kinase CProtein kinase CbiologyKinaseGeneral NeuroscienceIsoproterenolPhosphodiesterasePhosphoric Monoester HydrolasesRatsNitric oxide synthaseCytosolBiochemistrychemistrybiology.proteinCalciumNeurology (clinical)Sodium nitroprussideDevelopmental Biologymedicine.drugBrain Research
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Involvement of cyclic guanosine monophosphosphate (cGMP) and cytosolic guanylate cyclase in the regulation of synaptic ribbon numbers in rat pineal g…

1992

In the rat pineal gland N-acetyltransferase (NAT) activity and synaptic ribbon (SR) numbers display a circadian rhythm. It is well-known that NAT activity is regulated by adrenergic mechanisms involving cyclic adenosine monophosphate (cAMP) as a second messenger. However, the mechanism involved in the regulation of SR numbers has not been established so far. In the present in vitro study, we have investigated the effects of 8-bromo-cyclic guanosine monophosphate (8-bromo-cGMP), a cyclic guanosine monophosphate (cGMP) analog, and stimulation of guanylate cyclase on SR numbers. Incubation with 8-bromo-cGMP increased SR numbers in a dose- and time-dependent manner. Further, stimulation of the …

MaleNitroprussidemedicine.medical_specialtyGuanosineBiologyPineal Glandchemistry.chemical_compoundPineal glandCytosolOrgan Culture TechniquesInternal medicineGuanosine monophosphatemedicineAnimalsCyclic adenosine monophosphateCyclic GMPMolecular BiologyCyclic guanosine monophosphateSynaptic ribbonGeneral NeuroscienceCircadian RhythmRatsEnzyme ActivationMicroscopy Electronmedicine.anatomical_structureEndocrinologyBucladesinechemistryGuanylate CyclaseSynapsesSecond messenger systemNeurology (clinical)Atrial Natriuretic FactorDevelopmental BiologyEndocrine glandBrain Research
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Demonstration of action-potential-producing cells in the rat pineal gland in vitro and their regulation by norepinephrine and nitric oxide

1998

There is evidence that sympathetically innervated mammalian pineal glands contain cells that exhibit action potentials. It is unknown whether ex vivo pineal glands deprived of their nervous input are still capable of firing. In the present study, multiple-unit recordings from rat pineals revealed spontaneously active cell clusters with a mean firing frequency of 1.5 +/- 0.3 Hz which could be abolished by tedrodotoxin. Regularly firing clusters showed no inherent periodicity in the minute range, whereas rhythmical clusters with periodically repeated bursts had period lengths of 12.6 min (day) and 9.5 min (night). Superfusion of norepinephrine reduced the firing frequency of both cluster type…

MaleNitroprussidemedicine.medical_specialtyPhysiologyPeriod (gene)8-Bromo Cyclic Adenosine MonophosphateAction PotentialsBiologyNitric OxideNitroargininePineal GlandNitric oxideRats Sprague-DawleyRat Pineal GlandNorepinephrine (medication)NorepinephrineBehavioral Neurosciencechemistry.chemical_compoundInternal medicinemedicineAnimalsSympathomimeticsCyclic GMPPhenylephrineInhibitory effectEcology Evolution Behavior and SystematicsNeuronsPenicillamineSulfhydryl ReagentsIsoproterenolIn vitroRatsElectrophysiologyEndocrinologychemistryAnimal Science and ZoologyEx vivomedicine.drugJournal of Comparative Physiology A: Sensory, Neural, and Behavioral Physiology
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Nitric oxide inhibits electrically active units in the rat pineal gland.

1997

Extracellular multiple unit recordings were performed in isolated rat pineal glands to determine a possible effect of nitric oxide (NO) on the spontaneous electrical activity of pinealocytes. Spontaneously active cells forming clusters of 3-5 cells fell into two categories: more or less regularly firing clusters (REG, 64%) and irregularly discharging clusters with periodically repeated bursts (RHY, 36%). The NO-donor sodium nitroprusside (SNP) reduced the discharge rate of the great majority of REG clusters and of all the RHY clusters examined. Moreover, the burst activity of RHY clusters was abolished. These results could be completely reproduced by using another NO-donor, S-nitroso-N-acet…

MaleNitroprussidemedicine.medical_specialtyTime FactorsIn Vitro TechniquesS-Nitroso-N-AcetylpenicillamineNitric OxidePineal GlandNitric oxidePinealocyteMembrane PotentialsRats Sprague-Dawleychemistry.chemical_compoundPineal glandInternal medicineExtracellularmedicineAnimalsBiological PsychiatryPenicillamineSnapNeural InhibitionRatsElectrophysiologyPsychiatry and Mental healthElectrophysiologyEndocrinologymedicine.anatomical_structureNeurologychemistryBiophysicsNeurology (clinical)Sodium nitroprussideEndocrine glandmedicine.drugSignal TransductionJournal of neural transmission (Vienna, Austria : 1996)
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‘Synaptic’ Bodies in the Pineal Glands of the Cow, Sheep and Pig

1990

The present results show that ‘synaptic’ bodies (SB) are a heterogeneous group of organelles in the pineal glands of Artiodactyla. Basically, rod-like (ribbons) and sphere-like (spherules) SB can be distinguished. In the pig small numbers of both ‘synaptic’ ribbons (SR) and ‘synaptic’ spherules (SS) are found. In bovine and ovine pineal glands few SS but no SR were seen. The same results were obtained from animals of the same species but from different continents. This suggests that the numbers of SB are species specific rather than influenced by the different lighting conditions in Europe and in equatorial Africa.

MalePathologymedicine.medical_specialtyHistologySwineBiologyPineal GlandPineal glandOrganellemedicineAnimalsOrganellesSheepHeterogeneous groupAnatomyEuropeGlandula endocrinamedicine.anatomical_structurenervous systemAfricaUltrastructureCattleFemalesense organsAnatomyEndocrine glandCells Tissues Organs
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Pleomorphic pineocytoma with extensive neuronal differentiation: report of two cases

1994

Two pineal parenchymal tumors are presented, arising in a 54-year-old man and a 72-year-old woman; respectively. They showed isomorphic, cellular areas of small cells, often with characteristic pineocytomatous rosettes, and of medium-sized cells, as well as less cellular regions with highly pleomorphic, often ganglioid large cells. Immunohistochemistry disclosed extensive neuronal differentiation. There was intense positivity for neurofilament protein and microtubule-associated protein 2 in the pleomorphic areas and more variable expression in the isomorphic regions. Diffuse synaptophysin positivity was seen, accentuated along the borders of pleomorphic cells and in the rosettes, as well as…

MalePathologymedicine.medical_specialtyNeurofilamentEnolasePineal GlandPathology and Forensic MedicineCellular and Molecular NeurosciencemedicineCentral neurocytomaHumansAgedNeuronsPineoblastomaGlial fibrillary acidic proteinbiologyBrain NeoplasmsPineocytomaMiddle Agedmedicine.diseaseImmunohistochemistrybiology.proteinSynaptophysinImmunohistochemistryFemaleNeurology (clinical)PinealomaActa Neuropathologica
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