Search results for "Purinergic receptor"

showing 4 items of 34 documents

Pharmacological characterization of Uracil nucleotide-sensitive P2Y receptors in mouse ileum

2010

Since uracil nucleotide-preferring receptors, belonging to the P2Y receptor family and responding to either uridine triphosphate (UTP) or uridine diphosphate (UDP), have been proposed to be present at different cellular level in the gut, regulating various functions, we aimed to investigate whether their activation by uracil nucleotides may modulate the contractility of the intestinal muscle. Experiments were carried out in vitro, and the contractility of the longitudinal muscle from mouse ileum was recorded as changes of the isometric tension. UDP or UTP evoked a concentrationdependent, tetrodotoxin insensitive, contractile response. UDP effect was antagonized by suramin and by PPADS, P2 r…

Uracil nucleotidesPurinergic receptors enteric neurotrasmission mouse ileum
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Characterization of adenosine receptors in guinea-pig isolated left atria

1989

1. The effects of purinergic stimulation on action potential, force of contraction, 86Rb efflux and 45Ca uptake were investigated in guinea-pig left atria. 2. Adenosine exerted a negative inotropic effect which was antagonized by adenosine deaminase but enhanced by dipyridamole. 3. The negative inotropic effect of adenosine was mimicked by 5'-(N-ethyl)-carboxamido-adenosine (NECA) and the isomers of N6-(phenyl-isopropyl)-adenosine, R-PIA and S-PIA. NECA and R-PIA were about 100 times more potent than adenosine, whereas R-PIA was about 100 times more potent than S-PIA. 4. The inotropic effects of adenosine (in the presence of dipyridamole), NECA, R-PIA and S-PIA were competitively antagonize…

medicine.medical_specialtyAdenosineContraction (grammar)Guinea PigsPopulationAction PotentialsStimulationAdenosine-5'-(N-ethylcarboxamide)In Vitro TechniquesMembrane PotentialsAdenosine deaminaseTheophyllineInternal medicinemedicineAnimalseducationPharmacologyMembrane potentialeducation.field_of_studybiologyChemistryCalcium RadioisotopesMyocardiumPurinergic receptorReceptors PurinergicHeartDipyridamoleMyocardial ContractionAdenosineAdenosine receptorElectric StimulationEndocrinologyPhenylisopropyladenosinecardiovascular systembiology.proteinRubidium RadioisotopesResearch Articlemedicine.drugBritish Journal of Pharmacology
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Adrenoceptor-mediated effects on calcium channel currents are antagonized by 5?-(N-ethyl)-carboxamido-adenosine in guinea-pig atrial cells

1992

In guinea-pig atrial myocytes, the effects of the adenosine analogue 5′-(N-ethyl)-carboxamido-adenosine (NECA) in the presence of isoprenaline (ISO) on Ca2+ channel activity were analyzed. Single Ca2+ channel currents were recorded from cell-attached patches by application of several hundred 100 ms depolarizing steps. Under control conditions, burstlike activity of channel openings during some depolarizing steps were followed by variably long periods of quiescence (blank sweeps). During superfusion with ISO (100 nmol/l), ensemble-averaged (mean) current was increased by about 150%. The underlying mechanism was found to be a significant increase in the channel availability, defined as the ra…

medicine.medical_specialtyAdenosineGuinea Pigschemistry.chemical_elementStimulationAdenosine-5'-(N-ethylcarboxamide)In Vitro TechniquesCalciumInternal medicineIsoprenalinemedicineAnimalsHeart AtriaPharmacologyChemistryCalcium channelPurinergic receptorIsoproterenolDepolarizationGeneral MedicineAdenosine receptorAdenosineReceptors AdrenergicPerfusionEndocrinologyCalcium Channelsmedicine.drugNaunyn-Schmiedeberg's Archives of Pharmacology
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On the purinergic system in rat duodenum : existence of P1and P2receptors on the smooth muscle

1990

In rat duodenum, in vitro, in the presence of atropine and guanethidine, ATP administration caused a tetrodotoxin-insensitive relaxation followed by a rebound contraction. A similar response was obtained also after electrical field stimulation (EFS) of non-adrenergic, non-cholinergic (NANC) nerves. alpha, beta-methylene-TP and theophylline antagonized the response to ATP, but they failed to affect the noradrenaline- and EFS-induced relaxation. These results suggest that P1 and P2 receptors are present in rat duodenum, but their activation is not responsible for the inhibitor effects due to the NANC nerves.

medicine.medical_specialtyContraction (grammar)DuodenumPhysiologyMuscle RelaxationIn Vitro TechniquesBiologydigestive systemBiochemistryAdenosine TriphosphateTheophyllineInternal medicinemedicineAnimalsTheophyllineReceptorGuanethidinePurinergic receptorReceptors PurinergicMuscle SmoothElectric StimulationRatsAtropineElectrophysiologymedicine.anatomical_structureEndocrinologyDuodenummedicine.drugArchives Internationales de Physiologie et de Biochimie
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