Search results for "Pineal gland"

showing 10 items of 143 documents

Lack of "Synaptic" Ribbons in the Pineal Gland of BALB/c Mice

1988

In mammalian pinealocytes "synaptic" ribbons (SR) are regularly occurring organelles that are functionally poorly understood. Since in a number of studies on the mouse pineal gland the presence of SR has not been mentioned, it was the aim of this investigation to quantitate SR in mice. BALB/c mice were chosen, which have recently been shown to have a genetic defect for melatonin synthesis. The pineals of 15 mice killed at night, when SR numbers are normally high, were examined electron microscopically, scanning an area of greater than 20,000 micron 2 per gland. In none of these pineals were SR detected. It is concluded that the lack or extreme rarity of SR in laboratory mice may be related …

endocrine systemmedicine.medical_specialtyRatónCell CommunicationPineal GlandBALB/cPinealocyteMelatoninSynapseMicePineal glandEndocrinologyInternal medicineOrganoidmedicineAnimalsMelatoninMice Inbred BALB Cbiologybiology.organism_classificationOrganoidsEndocrinologymedicine.anatomical_structureUltrastructureFemalehormones hormone substitutes and hormone antagonistsmedicine.drugJournal of Pineal Research
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Circadian variations of ?synaptic? bodies in the pineal glands of Brattleboro rats

1990

The function of the mammalian pineal gland is regulated primarily by the sympathetic system. Arginine-vasopressin (AVP) may also be involved in the regulation of pineal melatonin synthesis under experimental conditions. The present study was conducted in the AVP-deficient rat strain, the Brattleboro rat, to investigate whether the numbers and rhythms of pineal "synaptic" bodies in this strain are different from those found in intact rats. AVP or its non-vasoconstrictive analog, deamino-D-AVP, was also injected intra-arterially in Brattleboro or Sprague-Dawley rats to test whether this procedure influences "synaptic" body numbers. Brattleboro rats were killed at different time-points through…

endocrine systemmedicine.medical_specialtyVasopressinHistologyPineal GlandPathology and Forensic MedicineSynapsePineal glandRhythmInternal medicinemedicineAnimalsCircadian rhythmMelatoninbiologyurogenital systemRats BrattleboroRats Inbred StrainsCell Biologybiology.organism_classificationBrattleboro ratCircadian RhythmRatsArginine VasopressinEndocrinologymedicine.anatomical_structureInjections Intra-Arterialnervous systemSeasonsSynaptic Vesicleshormones hormone substitutes and hormone antagonistsIntracellularEndocrine glandCell and Tissue Research
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Development of day-night rhythmicity in "synaptic" ribbon numbers in the pinealocytes of posthatch chicks kept under either natural photoperiodic con…

1991

: Pineal synaptic ribbons (SR) undergo characteristic changes over a period of 24 hr under natural photoperiodic conditions in various vertebrates, being low in number during daytime and elevated at night. During posthatch development of chicks, the rhythmicity of SR numbers is reported to appear at the age of about 2 weeks. Because the influence of external light during the growth phase of chicks on the development of day-night rhythmicity in SR numbers is unknown, we studied day-night differences in SR numbers in the pinealocytes of chicks at the posthatch ages of 15, 17, and 19 days; chicks had previously been kept under natural photoperiodic conditions or continuous illumination. Under …

endocrine systemmedicine.medical_specialtyanimal structuresOntogenyPeriod (gene)Cell CountBiologyNocturnalPineal GlandPinealocyteMelatoninEndocrinologyInternal medicinemedicineAnimalsCircadian rhythmLightingphotoperiodismSynaptic ribbonCircadian RhythmEndocrinologyembryonic structuresSynaptic VesiclesChickensPhotic Stimulationmedicine.drugJournal of Pineal Research
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Circadian rhythm in NO synthase I transcript expression and its photoperiodic regulation in the rat pineal gland.

2001

The photoneural regulation of nitric oxide synthase type I (NOS I) expression in the rat pineal was investigated using semiquantitative RT-PCR. NOS I transcript expression exhibited a daily rhythm with peak values during the night hours. The daily rhythm in NOS I transcript expression persisted under constant dark conditions and was abolished under constant light conditions. The extent of nocturnal NOS I expression was found to be dependent on the photoperiod. It was attenuated under 20 h light and 4 h dark (L:D 20:4) compared with 12 h light and 12 h dark (L:D 12:12). The present findings indicate that, in the rat pineal, NOS I transcript expression exhibits a true circadian rhythm. Furthe…

medicine.medical_specialtyArylamine N-AcetyltransferasePhotoperiodNitric Oxide Synthase Type IBiologyPineal GlandGene Expression Regulation EnzymologicRats Sprague-DawleyTranscription (biology)Internal medicineGene expressionmedicineAnimalsCircadian rhythmRNA MessengerMuridaephotoperiodismRegulation of gene expressionGeneral Neurosciencebiology.organism_classificationCircadian RhythmRatsNitric oxide synthaseEndocrinologybiology.proteinNitric Oxide SynthaseEndocrine glandNeuroreport
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Mammalian Pinealocytes: Ultrastructural Aspects and Innervation

2008

In the mammalian pineal gland it is notoriously difficult to relate structure to function. The pineal-specific cells, the pinealocytes, contain only inconspicuous numbers of secretory granules, and the variable amounts of smooth and rough endoplasmic reticulum also do not point to a particular function. In addition to these widely known cellular components, pinealocytes contain organelles, the so-called 'synaptic' ribbons, histophysiological studies of which provide important insights into the structural and functional complexity of the organ. As synaptic ribbons may be involved in neuronal functions of pinealocytes it is notable that these organelles are structurally heterogeneous. Ribbons…

medicine.medical_specialtyBiological clockEndoplasmic reticulumBiologyPinealocyteCell biologyPineal glandEndocrinologymedicine.anatomical_structurenervous systemInternal medicineOrganellemedicineUltrastructuresense organsFunction (biology)
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Inhibition of Melatonin in the Plasma of Third-Generation Male Mice under the Action of ELF Magnetic Fields

1998

The pineal gland has been considered a magnetic receptor organ that regulates circadian rhythms by means of the secretion of melatonin, a potent oncostatic agent that prevents the initiation and promotion of cancer. ELF electromagnetic radiation, similar to that generated by power lines, can alter melatonin plasma levels.To study this effect, 4 OF1 mice generations have been reared subjected to a lifelong 15 μT, 50 Hz magnetic field action. This magnetic field was generated inside a Helmholtz coil system. The concentration of melatonin in the blood has been determined on 40 male mice of the third generation by means of RIA, as they reached sexual maturity (3 months).A radical decrease, more…

medicine.medical_specialtyBiophysicsPlasmaBiologyAgricultural and Biological Sciences (miscellaneous)Magnetic fieldMelatoninPineal glandEndocrinologymedicine.anatomical_structureInternal medicinemedicineSexual maturitySecretionCircadian rhythmHormonemedicine.drugElectro- and Magnetobiology
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Adrenergic Stimulation of Cyclic GMP Formation Requires NO-Dependent Activation of Cytosolic Guanylate Cyclase in Rat Pinealocytes

1993

Cyclic GMP (cGMP) formation in rat pinealocytes is regulated through a synergistic dual receptor mechanism involving beta- and alpha 1-adrenergic receptors. The effects of NG-monomethyl-L-arginine (NMMA), which inhibits nitric oxide (NO) synthase and NO-mediated activation of cytosolic guanylate cyclase, and methylene blue (MB), which inhibits cytosolic guanylate cyclase, were investigated in an attempt to understand the role of NO in adrenergic cGMP formation. Both NMMA and MB inhibited beta-adrenergic stimulation of cGMP formation as well as alpha 1-adrenergic potentiation of beta-adrenergic stimulation of cGMP formation, whereas they had no effect in unstimulated pinealocytes. The inhibi…

medicine.medical_specialtyGUCY1B3AdrenergicStimulationArginineNitric OxidePineal GlandBiochemistryPinealocyteNitric oxideCellular and Molecular Neurosciencechemistry.chemical_compoundCytosolInternal medicinemedicineAnimalsSympathomimeticsCyclic GMPCells Culturedomega-N-MethylargininebiologyChemistryGUCY1A3Guanylate cyclase 2CRatsEnzyme ActivationMethylene BlueNitric oxide synthaseEndocrinologyGuanylate Cyclasebiology.proteinJournal of Neurochemistry
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Pineal 'synaptic' ribbons in sympathectomized rats.

1989

The melatonin metabolism in the mammalian pineal gland is under the clear influence of sympathetic fibers originating in the superior cervical ganglia (SCG). Previous studies suggested that also pineal ‘synaptic’ ribbons (SR) are regulated by the gland’s sympathetic innervation. To gain more insight into the mechanisms involved SR numbers were determined in adult rats which were chemically sympathectomized as newborns by injection of 6-hydroxydopamine (6-OHDA). In control animals (saline injections), a clear day/night difference in the number of SR is present. In sympathectomized animals SR are higher in number throughout the 24-hour cycle but are not significantly elevated at night. The pr…

medicine.medical_specialtyHistologymedicine.medical_treatmentBiologyPineal GlandPineal glandHydroxydopaminesInternal medicinemedicineAnimalsSalineOrganellesSympathectomy ChemicalRats Inbred StrainsRatsMicroscopy Electronmedicine.anatomical_structureEndocrinologySympathectomyPeripheral nervous systemCervical gangliaUltrastructureFemaleAnatomyIntracellularEndocrine glandActa anatomica
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The phototransduction cascade in the isolated chick pineal gland revisited.

2003

It is well established that the isolated chick pineal gland is directly light sensitive and that melatonin synthesis of the gland can be inhibited by exposing the gland to light during scotophase. Since not all the steps of the phototransduction cascade have been clarified to the same extent as in the retina, we have treated isolated chick pineal glands with 90 min of light during scotophase and with drugs that affect key-components of vertebrate phototransduction, i.e., cyclic guanosine monophosphate (cGMP) phosphodiesterase 6 (PDE6), cGMP levels and cGMP-gated calcium channels. The endpoint measured was the activity of the rate-limiting enzyme of melatonin synthesis, arylalkylamine N-acet…

medicine.medical_specialtyLight Signal TransductionArylamine N-AcetyltransferasePhosphodiesterase 3BiologyNitric OxidePineal GlandRetinachemistry.chemical_compoundPineal glandOrgan Culture TechniquesInternal medicinemedicineCyclic AMPAnimalsCyclic adenosine monophosphateNitric Oxide DonorsEnzyme InhibitorsMolecular BiologyCyclic guanosine monophosphateCyclic GMPMelatoninCyclic Nucleotide Phosphodiesterases Type 6Phosphoric Diester HydrolasesGeneral NeurosciencePhosphodiesteraseNatriuretic Peptide C-TypeCyclic Nucleotide Phosphodiesterases Type 3Circadian RhythmCalcium Channel Agonistsmedicine.anatomical_structureEndocrinologychemistry3'5'-Cyclic-AMP PhosphodiesterasesNeurology (clinical)PDE10ACalcium ChannelsZaprinastChickensPhotic StimulationDevelopmental BiologyEndocrine glandBrain research
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Infradian rhythms of serotonin and serotonin‐N‐acetyltransferase in the pineal gland of male rats

1983

Abstract The present investigation was carried out to determine whether in the pineal gland of male Sprague‐Dawley rats infradian rhythms with respect to serotonin, serotonin‐N‐acetyltransferase (NAT) activity, and hydroxyindole‐O‐methyltransferase (HIOMT) can be detected. The serotonin data obtained over a period of 4 weeks and subjected to power spectral analysis suggest the presence of infradian rhythms in the range of 6 and 4.3 days. NAT activity, obtained over a period of 28 days, revealed a 7‐day‐rhythm. A second peak occurring at 2.3 days remained just below the significance limit. HIOMT activity studied over a period of 8 days showed no statistically significant differences between …

medicine.medical_specialtyPeriod (gene)BiologyPineal glandchemistry.chemical_compoundRhythmEndocrinologymedicine.anatomical_structurechemistryInfradian rhythmInternal medicinemedicineCatecholamineGeneral Earth and Planetary SciencesCircadian rhythmSerotoninGeneral Agricultural and Biological SciencesNeurotransmitterGeneral Environmental Sciencemedicine.drugJournal of Interdisciplinary Cycle Research
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