Search results for "Paraventricular Hypothalamic Nucleus"

showing 7 items of 7 documents

Feeding enhances extracellular lactate of local origin in the rostromedial hypothalamus but not in the cerebellum.

1999

Abstract The use of brain microdialysis together with chronic vascular catheterization allowed us to assay extracellular fluid lactate (ECF L ) in both the ventromedial–paraventricular (VMH–PVN) area of the hypothalamus and the cerebellum, in parallel with measures of plasma levels, and in relation to food intake. A 45 min scheduled meal increased VMH–PVN ECF L by 28%. This increase was not observed in the cerebellum. The prandial increase in plasma glucose (43%, from 4.74 to 6.77 mM) and lactate (84%, from 0.83 to 1.53 mM) showed a different temporal pattern and lasted longer than that of the ECF L . Glucose delivery by reverse dialysis for 45 min into the VMH–PVN area increased ECF L by 4…

Blood GlucoseMaleMicrodialysismedicine.medical_specialtyCerebellumTime FactorsMicrodialysisCentral nervous systemBiologyDeoxyglucoseBlood–brain barrierEatingInternal medicineCerebellumExtracellular fluidmedicineExtracellularAnimalsLactic AcidRats WistarMolecular BiologyGeneral Neurosciencedigestive oral and skin physiologyMetabolismPostprandial PeriodRatsmedicine.anatomical_structureEndocrinologyGlucosenervous systemHypothalamusVentromedial Hypothalamic NucleusNeurology (clinical)Extracellular SpaceDevelopmental BiologyParaventricular Hypothalamic NucleusBrain research
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Electrophysiological investigations on the central innervation of the rat and guinea-pig pineal gland

1984

The possible influence of central nervous structures on the electrical activity of single pineal cells was investigated in rat and guinea-pig. In the rat electrical stimulation of the hippocampal formation elicited both single cell responses with different latencies and mostly long-term excitations in single pineal cells, while stimulation of the habenular nuclei caused clear orthodromical responses with different latencies, alterations in the rate of spontaneous electrical activity and evoked discharges of "silent" units. In the guinea-pig electrical stimulation of the paraventricular nucleus influenced predominantly cells in the deeper layers of the posterior part of the pineal gland. Ele…

MaleSuperior Colliculiendocrine systemmedicine.medical_specialtyGuinea PigsCentral nervous systemBiologyHippocampusPineal GlandSynaptic TransmissionGuinea pigPineal glandDiencephalonInternal medicineNeural PathwaysmedicineAnimalsEvoked PotentialsBiological PsychiatryBrain MappingSuperior colliculusInferior ColliculiRatsPsychiatry and Mental healthElectrophysiologymedicine.anatomical_structureEndocrinologyHabenulaNeurologyHypothalamusThalamic NucleiNeurology (clinical)Paraventricular Hypothalamic NucleusJournal of Neural Transmission
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Presence of Oxytocin, Vasopressin and Atrial Natriuretic Peptide and Their Modification in Rat Hypothalamic Paraventricular Nucleus During Resistance…

2013

Summary Many studies have demonstrated the physiological effects of oxytocin (OT), atrial natriuretic peptide (ANP) and vasopressin (VP) in the homoeostasis of body fluids during physical exercise. However, a little information is available about the related immunohistochemical changes in hypothalamic magnocellular neurosecretory system during and after the training. The aim of the present work was to study the immunohistochemical changes in OT, ANP and VP levels in the hypothalamic paraventricular nucleus during and after resistance exercise protocol. Three groups of Wistar rats were trained by a rung ladder protocol for 15, 30 and 45 days, respectively; a fourth group was left to rest for…

MaleVasopressinmedicine.medical_specialtyVasopressinsPeriod (gene)Physical exerciseOxytocinAtrial natriuretic peptidePhysical Conditioning AnimalInternal medicinemedicineAnimalsRats WistarNeuronsBody fluidGeneral Veterinarybusiness.industryOxytocin vasopressinANPbrainResistance TrainingGeneral MedicineRatsmedicine.anatomical_structureEndocrinologyGene Expression RegulationOxytocinsense organsbusinessNucleusAtrial Natriuretic Factorhormones hormone substitutes and hormone antagonistsHomeostasisParaventricular Hypothalamic Nucleusmedicine.drugAnatomia, Histologia, Embryologia
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The role of the hypothalamic paraventricular nuclei for the regulation of pineal melatonin synthesis: New aspects derived from the vasopressin-defici…

1990

Abstract There is evidence for an involvement of the hypothalamic paraventricular nuclei (PVN) in the regulation of pineal melatonin synthesis in rats. Since electrical stimulation of the PVN or the systemic administration of arginine-vasopressin (AVP) result in a depression of the nocturnal melatonin surge, this neuropeptide appears to be pivotal for the transduction of PVN-efferent, pinealopetal signals. We therefore used an AVP-deficient animal model, the Brattleboro rat, to further investigate the mechanisms responsible for pineal regulation. Anesthetized adult male animals received 2 min of bilateral electrical stimulation of the PVN either during the day or at night. Thirty min later,…

Maleendocrine systemmedicine.medical_specialtyVasopressinNeuropeptideStimulationBiologyPineal GlandRats Mutant StrainsMelatoninInternal medicinemedicineAnimalsCircadian rhythmMelatoninEpiphysis cerebriGeneral NeuroscienceRats Brattleborobiology.organism_classificationElectric StimulationBrattleboro ratCircadian RhythmRatsArginine VasopressinEndocrinologynervous systemHypothalamushormones hormone substitutes and hormone antagonistsParaventricular Hypothalamic Nucleusmedicine.drugNeuroscience Letters
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Insulin acts at different CNS sites to decrease acute sucrose intake and sucrose self-administration in rats.

2008

Findings from our laboratory and others have demonstrated that the hormone insulin has chronic effects within the CNS to regulate energy homeostasis and to decrease brain reward function. In this study, we compared the acute action of insulin to decrease intake of a palatable food in two different behavioral tasks—progressive ratios sucrose self-administration and mu opioid-stimulated sucrose feeding—when administered into several insulin-receptive sites of the CNS. We tested insulin efficacy within the medial hypothalamic arcuate (ARC) and paraventricular (PVN) nuclei, the nucleus accumbens, and the ventral tegmental area. Administration of insulin at a dose that has no chronic effect on …

Malemedicine.medical_specialtySucrosePhysiologymedicine.medical_treatmentReceptors Opioid muSelf AdministrationBiologyNucleus accumbensNucleus Accumbenschemistry.chemical_compoundRewardPhysiology (medical)Internal medicinemedicineAnimalsInsulinOpioid peptidePancreatic hormoneMotivationBehavior AnimalAppetite RegulationInsulinVentral Tegmental AreaArcuate Nucleus of HypothalamusBrainEnkephalin Ala(2)-MePhe(4)-Gly(5)-RatsVentral tegmental areaDAMGOmedicine.anatomical_structureEndocrinologychemistryCall for PapersBrain stimulation rewardSelf-administrationParaventricular Hypothalamic NucleusAmerican journal of physiology. Regulatory, integrative and comparative physiology
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Acute selective ablation of rat insulin promoter-expressing (RIP HER ) neurons defines their orexigenic nature

2012

Rat insulin promoter (RIP)-expressing neurons in the hypothalamus control body weight and energy homeostasis. However, genetic approaches to study the role of these neurons have been limited by the fact that RIP expression is predominantly found in pancreatic β-cells, which impedes selective targeting of neurons. To define the function of hypothalamic RIP-expressing neurons, we set out to acutely and selectively eliminate them via diphtheria toxin-mediated ablation. Therefore, the diphtheria toxin receptor transgene was specifically expressed upon RIP-specific Cre recombination using a RIP-Cre line first described by Herrera (RIP HER -Cre) [Herrera PL (2000) Development 127:2317–2322]. Usi…

endocrine systemmedicine.medical_specialtyPituitary glandBiologyReal-Time Polymerase Chain ReactionEnergy homeostasisMiceArcuate nucleusOrexigenicInternal medicineWeight LossmedicineAnimalsInsulinPromoter Regions GeneticDorsomedial hypothalamic nucleusNeuronsDiphtheria toxinMultidisciplinarydigestive oral and skin physiologyArcuate Nucleus of HypothalamusFeeding BehaviorBiological SciencesGlucose Tolerance TestRatsEndocrinologymedicine.anatomical_structurenervous systemHypothalamusNucleushormones hormone substitutes and hormone antagonistsParaventricular Hypothalamic Nucleusmedicine.drugProceedings of the National Academy of Sciences
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The hypothalamic magnocellular neurosecretory system in developing rats

2009

Studies concerning the development of the magnocellular system are scarce and discordant in literature. We carried out an immunohistochemical study on supraotic and paraventricular hypothalamic nuclei using antivasopressin and antioxytocin antibodies in developing rats between the 15th day of intrauterine life and the 6th day of postnatal life. In addition, we performed RT-PCR experiments to establish the stage at which these hormones appear and neurosecretory activity commences. The results showed that supraoptic and paraventricular nuclei appear, respectively, on the 16th and the 18th day of intrauterine life and both immediately synthetize vasopressin neurohormone. By contrast, synthesis…

medicine.medical_specialtyVasopressinHistologyVasopressinsHypothalamusBiophysicsBiologyOxytocinInternal medicinemedicineAnimalsRats Wistarlcsh:QH301-705.5Gene Expression ProfilingCell BiologyNeurosecretory SystemsRatsEndocrinologyOxytocinlcsh:Biology (General)ImmunohistochemistryFemaleSupraoptic Nucleushormones hormone substitutes and hormone antagonistsParaventricular Hypothalamic Nucleusmedicine.drugHormone
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