Search results for "Cholin"

showing 10 items of 1261 documents

Muscarinic inhibition of [3H]-noradrenaline release on rabbit iris in vitro: effects of stimulation conditions on intrinsic activity of methacholine …

1988

1. Rabbit isolated irides were loaded with [3H]-noradrenaline and superfused with Tyrode solution. The inhibition by the muscarinic agonists (+/-)-methacholine and pilocarpine of the [3H]-noradrenaline overflow into the superfusate evoked by field stimulation (pulses of 1 ms duration, 75 mA) was measured as an index of activation of presynaptic muscarinic receptors. 2. The fractional rate of release per pulse during the first stimulation period (S1) was low with 360 pulses at 3 Hz, intermediate with 360 pulses at 10 Hz and high with 1200 pulses at 10 Hz. Upon repetitive stimulation (7 periods at 20 min intervals), the fractional rates of release per pulse during S7 no longer differed, sugge…

AtropineMalemedicine.medical_specialtyIrisStimulationIn Vitro TechniquesNorepinephrineInternal medicineMuscarinic acetylcholine receptormedicineAnimalsMethacholine CompoundsMethacholine ChlorideMethacholine CompoundsPharmacologyChemistryPilocarpineReceptors MuscarinicElectric StimulationAtropineIris dilator muscleEndocrinologyPilocarpineFemaleMethacholineRabbitsAcetylcholineResearch Articlemedicine.drugBritish Journal of Pharmacology
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Safety and feasibility of atropine added in patients with sub-maximal heart rate during exercise myocardial perfusion SPECT.

2006

Failure to reach 80% of maximal predicted heart rate (HR) during exercise may render a myocardial perfusion single photon emission computed tomography (SPECT) study non-diagnostic for ischemia detection. We sought to investigate the injection of atropine in patients who fail to achieve 80% of age-predicted HR during exercise performed for myocardial perfusion SPECT (MPS), defining its safety and efficacy to raise HR to adequate levels as well as its effect on MPS interpretation.Between January 2002 and December 2004, we studied 3,150 consecutive patients (2,253 men and 897 women, mean age 55 +/- 6 years) who were referred to a single office-based nuclear cardiology laboratory for MPS using …

AtropineMalemedicine.medical_specialtyIschemiaMyocardial IschemiaBlood PressureSingle-photon emission computed tomographySeverity of Illness IndexMetabolic equivalentCholinergic AntagonistsOrganophosphorus CompoundsHeart RateInternal medicineSpect imagingCoronary CirculationHeart rateMedicineHumansRadiology Nuclear Medicine and imagingTomography Emission-Computed Single-Photonexercise testingmedicine.diagnostic_testmaximal predicted heart ratebusiness.industrymyocardial perfusion SPECTArrhythmias CardiacOrganotechnetium CompoundsMiddle Agedmedicine.diseaseAtropineRate pressure productResearch DesignCardiologyExercise TestFeasibility StudiesFemaleRadiopharmaceuticalsCardiology and Cardiovascular MedicinebusinessPerfusionmedicine.drugThe international journal of cardiovascular imaging
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Muscarinic inhibition of potassium-induced noradrenaline release and its dependence on the calcium concentration.

1975

1. Noradrenaline release from the isolated rabbit heart was evoked by perfusion with a medium containing 135 mM potassium and 17 mM sodium ions (high K+-low Na+). 2. The noradrenaline output in response to high K+-low Na+ was dose-dependently decreased by methacholine (0.625-320 muM) and this effect was reserved by atropine 1.44 mM. 3. Lowering the calcium concentration of high K+-low Na+ from 1.8-0.1125 mM decreased the noradrenaline output by 85%. The effect of methacholine, expressed as % inhibition of noradrenaline release, was potentiated by lowering of the calcium concentration. 4. Both at normal and lowered calcium concentrations the inhibitory action of methacholine was larger from …

AtropineMalemedicine.medical_specialtyReserpineTime FactorsSodiumPotassiumchemistry.chemical_elementAdrenergicCalciumchemistry.chemical_compoundNorepinephrineInternal medicineMuscarinic acetylcholine receptormedicinePressureAnimalsMethacholine CompoundsReceptors CholinergicPharmacologyCalcium metabolismMuscarineChemistryMyocardiumOsmolar ConcentrationSodiumGeneral MedicinePerfusionEndocrinologyPotassiumMethacholineCalciumFemaleRabbitsmedicine.drugNaunyn-Schmiedeberg's archives of pharmacology
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Spontaneous Cardiomyocyte Differentiation From Adipose Tissue Stroma Cells

2004

Cardiomyocyte regeneration is limited in adult life. Thus, the identification of a putative source of cardiomyocyte progenitors is of great interest to provide a usable model in vitro and new perspective in regenerative therapy. As adipose tissues were recently demonstrated to contain pluripotent stem cells, the emergence of cardiomyocyte phenotype from adipose-derived cells was investigated. We demonstrated that rare beating cells with cardiomyocyte features could be identified after culture of adipose stroma cells without addition of 5-azacytidine. The cardiomyocyte phenotype was first identified by morphological observation, confirmed with expression of specific cardiac markers, immunocy…

AtropineMalemedicine.medical_specialtyStromal cellPhysiologyCellular differentiationHeart VentriclesCholinergic AgentsAdipose tissueAdipose tissueCardiomyocytes ; Adipose tissue ; Differentiation ; Stem cells ; Cell therapyStem cellsBiologyCell therapyCell therapyMiceAdrenergic Agents:CIENCIAS MÉDICAS ::Medicina interna [UNESCO]Internal medicinemedicineAnimalsMyocytes CardiacHeart AtriaProgenitor cellInduced pluripotent stem cellCells CulturedUNESCO::CIENCIAS MÉDICAS ::Medicina internaCardiomyocytesRegeneration (biology)Multipotent Stem CellsIsoproterenolCell Differentiation:CIENCIAS MÉDICAS [UNESCO]Myocardial ContractionPropranololCell biologyClone CellsMice Inbred C57BLEndocrinologyPhenotypeAdipose TissueDifferentiationUNESCO::CIENCIAS MÉDICASRNACarbacholStem cellStromal CellsCardiology and Cardiovascular MedicineMyoblasts Cardiac
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Effects of several muscarinic agonists on cardiac performance and the release of noradrenaline from sympathetic nerves of the perfused rabbit heart

1972

Summary 1 The effects of several muscarinic agonists on atrial tension development, ventricular rate and noradrenaline release from terminal sympathetic fibres evoked by electrical nerve stimulation (SNS) and 1,1-dimethyl-4-phenylpiperazinium (DMPP) were measured in isolated perfused rabbit hearts. 2 Hexamethonium, in a concentration which almost abolished the release of noradrenaline by DMPP, had no effect on the release produced by SNS, confirming that the stimulation was postganglionic. 3 The order of potency for inhibition of atrial tension development was N-methyl-1,2,5,6, tetrahydro-nicotinic acid prop-2-yne ester (MH-1)>oxotremorine > acetylcholine > methacholine > carbachol > furtre…

AtropineMalemedicine.medical_specialtySympathetic Nervous SystemCarbacholAutopharmacologyHexamethonium CompoundsIn Vitro TechniquesPharmacologyNorepinephrinechemistry.chemical_compoundHeart RateInternal medicineMuscarinic acetylcholine receptormedicineOxotremorineAnimalsMethacholine CompoundsPharmacologyChemistryOxotremorinePilocarpineHeartAcetylcholineElectric StimulationPerfusionQuaternary Ammonium CompoundsAtropineEndocrinologyParasympathomimeticsPilocarpineCarbacholFemaleMethacholineHexamethoniumCarbamatesRabbitsDimethylphenylpiperazinium IodideAcetylcholinemedicine.drugBritish Journal of Pharmacology
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Storage and release of false transmitters after infusion of (+)- and (?)-?-methyldopamine

1971

Rabbits were given an infusion of 10 mg/kg (−)- or 30 mg/kg (+)-α-methyldopamine and killed after 135 min. The noradrenaline content of the heart was decreased to 26±5 and 34±2%, respectively, of the control value. After infusion of the (+)-isomer the missing noradrenaline was replaced by (−)-α-methylnoradrenaline. Electrical stimulation of the sympathetic nerves or infusion of acetylcholine plus atropine caused an output of noradrenaline and (−)-α-methylnoradrenaline from the isolated heart. The two amines were released in the same proportion as they were stored in the heart and the total output of both amines equalled the output of noradrenaline from control hearts. Nerve stimulation caus…

AtropineMalemedicine.medical_specialtySympathetic Nervous SystemDopamineMetaboliteAdrenergicBlood PressureStimulationSynaptic TransmissionMethyldopamineMethylaminesNorepinephrinechemistry.chemical_compoundIsomerismInternal medicinemedicineAnimalsPharmacologyCardiac cycleMyocardiumSignificant differenceHeartGeneral MedicineAcetylcholineElectric StimulationAtropineEndocrinologychemistryFemaleRabbitsAcetylcholinemedicine.drugNaunyn-Schmiedebergs Archiv f�r Pharmakologie
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Short- and long-latency muscarinic inhibition of noradrenaline release from rabbit atria induced by vagal stimulation.

1988

1. The influence of the time interval between vagal and sympathetic nerve stimuli on the magnitude of muscarinic inhibition of noradrenaline release was studied in the isolated perfused rabbit atria preparation. The transmitter stores were labelled with [14C]choline and [3H]noradrenaline. 2. The right cardiac postganglionic sympathetic nerves were stimulated at 3 Hz for 3 min three times at intervals of 10 min. The [3H]noradrenaline outflow evoked by the second stimulation equalled the averaged means of the log values of amine outflows evoked by the first and third stimulations. 3. During the second sympathetic stimulation the right vagus nerve was stimulated (3 Hz, 3 min) in such a way tha…

AtropineMalemedicine.medical_specialtySympathetic Nervous SystemTime FactorsPhysiologyAdrenergicTubocurarineStimulationIn Vitro TechniquesInhibitory postsynaptic potentialCholineNorepinephrineInternal medicineMuscarinic acetylcholine receptormedicineAnimalsChemistryMyocardiumVagus NerveReceptors MuscarinicAcetylcholineAtropineEndocrinologyCholinergicSilent periodFemaleRabbitsAcetylcholinemedicine.drugResearch Article
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A muscarinic inhibition of the noradrenaline release evoked by postganglionic sympathetic nerve stimulation

1969

1. The noradrenaline output from isolated rabbit hearts perfused with Tyrode solution was estimated fluorimetrically. The postganglionic sympathetic nerves of the heart were stimulated (10 shocks/sec; 1 msec) for three 1 min periods with intervals of 10 min. 2. The noradrenaline output evoked by 3 consecutive stimulation periods decreased exponentially. 3. Acetylcholine (10−9–10−6 g/ml) administered continuously one min before to one min after the second stimulation caused a dose-dependent reduction of the noradrenaline output evoked by the second stimulation to as low as 19% of the normal value. Acetylcholine in the concentrations applied did not cause a noradrenaline output by itself. 4. …

AtropineMalemedicine.medical_specialtySympathetic Nervous SystemTyramineStimulationHexamethonium CompoundsIn Vitro TechniquesPiperazinesNorepinephrinechemistry.chemical_compoundInternal medicineMuscarinic acetylcholine receptormedicineAnimalsMethacholine CompoundsFluorometryReceptors CholinergicPharmacologyHeartAdrenergic nervous systemGeneral MedicineCoronary VesselsAcetylcholineElectric StimulationReceptors AdrenergicPerfusionQuaternary Ammonium CompoundsAtropineEndocrinologyParasympathomimeticschemistryDepression ChemicalAutonomic Fibers PostganglionicCholinergicFemaleHexamethoniumMethacholineRabbitsAcetylcholinemedicine.drugNaunyn-Schmiedebergs Archiv f�r Pharmakologie
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Primary peristalsis in pigeon cervical oesophagus: two EMG patterns.

1984

Swallowing elicits two propagated EMG peristaltic patterns in pigeon cervical oesophagus: i) "simple" peristaltic pattern and ii) "complex" peristaltic pattern. "Simple" peristaltic pattern is characterized by an intense, long-lasting burst of spikes, high in amplitude with an aboral increasing delay in onset. "Complex" peristaltic pattern presents an early short period of reduction in spontaneous electrical activity, followed by an excitatory period similar to that of "simple" pattern. The early inhibitory component has a very short delay in onset increasing aborally. Atropine abolishes the EMG excitatory component of both patterns, while the inhibitory period persists, showing increased d…

AtropinePhysiologyElectromyographyCholinergic NervesAnatomyBiologyInhibitory postsynaptic potentialBiochemistryElectrophysiologyCervical oesophagusEsophagusMuscarinic acetylcholine receptorExcitatory postsynaptic potentialCholinergicAnimalsPeristalsisColumbidaeGastrointestinal MotilityPeristalsisArchives internationales de physiologie et de biochimie
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Cholinesterase activity and exposure time to acetylcholine as factors influencing the muscarinic inhibition of [3H]-noradrenaline overflow from guine…

1985

Guinea-pig isolated atria were incubated and loaded with [3H]-noradrenaline. The release of 3H and of [3H]-noradrenaline was induced by field stimulation (6-9 trains of 150 pulses at 5 Hz). The stimulation-evoked overflows of 3H and of [3H]-noradrenaline were determined. In the absence of an inhibitor of acetylcholinesterase, acetylcholine (12 min preincubation before nerve stimulation, up to 10 microM) failed to inhibit the evoked [3H]-noradrenaline overflow. In the presence of atropine, an increase by acetylcholine of evoked release was observed in the same atria. In contrast, the selective muscarinic agonist methacholine significantly decreased the evoked overflow. The inhibition was ant…

AtropinePhysostigminemedicine.medical_specialtyTime FactorsPhysostigmineGuinea PigsHexamethonium CompoundsIn Vitro TechniquesHexamethoniumMuscarinic agonistNorepinephrinechemistry.chemical_compoundCocaineInternal medicineMuscarinic acetylcholine receptormedicineAnimalsMethacholine CompoundsDrug InteractionsHeart AtriaPhentolamineMethacholine ChlorideCholinesterasePharmacologybiologyHeartPropranololReceptors MuscarinicAcetylcholineAtropineEndocrinologychemistryAcetylcholinesterasebiology.proteinMethacholineHexamethoniumCorticosteroneAcetylcholineResearch Articlemedicine.drugBritish Journal of Pharmacology
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