Search results for "Adenosine receptor antagonist"

showing 4 items of 4 documents

Endogenous adenosine inhibits hippocampal CA1 neurones: further evidence from extra- and intracellular recording.

1988

Extracellular and intracellular recordings from CA1 pyramidal neurones of rats in vitro were used to study the effects of endogenous and exogenously applied adenosine. The adenosine receptor antagonist, caffeine, enhanced the intracellular recorded e.p.s.p.-i.p.s.p. sequence evoked by stimulation of the stratum radiatum which is antagonized by exogenous adenosine. The late, potassium dependent i.p.s.p. was not antagonized. The adenosine uptake inhibitor, nitrobenzylthioinosine (NBTI), mimicked the effects of exogenously applied adenosine. The effects of NBTI and of exogenously applied adenosine were antagonized by caffeine in the same manner. Exposure to adenosine deaminase enhanced the evo…

Malemedicine.medical_specialtyAdenosineAdenosine DeaminasePharmacologyIn Vitro TechniquesAdenosine receptor antagonistHippocampusAdenosine A1 receptorchemistry.chemical_compoundAdenosine deaminaseThioinosineInternal medicineCaffeinemedicineAnimalsEvoked PotentialsPharmacologyNeuronsbiologyChemistryRats Inbred StrainsGeneral MedicinePurinergic signallingAdenosineAdenosine receptorRatsElectrophysiologyEndocrinologybiology.proteinCaffeineIntracellularmedicine.drugNaunyn-Schmiedeberg's archives of pharmacology
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Guanosine negatively modulates the gastric motor function in mouse

2013

The aim of the present study was to evaluate if guanine-based purines may affect the gastric motor function in mouse. Thus, the influence of guanosine on the gastric emptying rate in vivo was determined and its effects on spontaneous gastric mechanical activity, detected as changes of the intraluminal pressure, were analyzed in vitro before and after different treatments. Gastric gavage of guanosine (1.75-10 mg/kg) delayed the gastric emptying. Guanosine (30 μM-1 mM) induced a concentration-dependent relaxation of isolated stomach, which was not affected by the inhibition of the purine nucleoside phosphorylase enzyme by 4'-deaza-1'-aza-2'-deoxy-1'-(9-methylene)-immucillin-H. The inhibitory …

Malemedicine.medical_specialtyPurine nucleoside phosphorylaseGuanosineAdenosine receptor antagonistSettore BIO/09 - FisiologiaAdenylyl cyclaseMiceCellular and Molecular Neurosciencechemistry.chemical_compoundInternal medicineCyclic AMPmedicineAnimalsCyclic adenosine monophosphateMolecular BiologyDose-Response Relationship DrugGuanosineGastric emptyingChemistryStomachMuscle SmoothCell BiologyAdaptation PhysiologicalAdenosine receptorMice Inbred C57BLguanosine stomach relaxationEndocrinologyGastric EmptyingOriginal ArticleGastrointestinal MotilitySoluble guanylyl cyclasePurinergic Signalling
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Methazolamide Plus Aminophylline Abrogates Hypoxia-Mediated Endurance Exercise Impairment.

2015

In hypoxia, endurance exercise performance is diminished; pharmacotherapy may abrogate this performance deficit. Based on positive outcomes in preclinical trials, we hypothesized that oral administration of methazolamide, a carbonic anhydrase inhibitor, aminophylline, a nonselective adenosine receptor antagonist and phosphodiesterase inhibitor, and/or methazolamide combined with aminophylline would attenuate hypoxia-mediated decrements in endurance exercise performance in humans. Fifteen healthy males (26 ± 5 years, body-mass index: 24.9 ± 1.6 kg/m(2); mean ± SD) were randomly assigned to one of four treatments: placebo (n = 9), methazolamide (250 mg; n = 10), aminophylline (400 mg; n = 9),…

AdultMalePhysiologymedicine.drug_classMethazolamideAdenosine receptor antagonistPlaceboYoung AdultEndurance trainingmedicineHumansCarbonic anhydrase inhibitorPhosphodiesterase inhibitorMethazolamideHypoxiaExercisebusiness.industryAltitudePublic Health Environmental and Occupational HealthGeneral MedicineHypoxia (medical)AminophyllineHealthy VolunteersAnesthesiaExercise TestPhysical EnduranceAminophyllineDrug Therapy Combinationmedicine.symptombusinessmedicine.drugHigh altitude medicinebiology
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Adenosine and memory storage

1999

Rationale: Caffeine is a non-selective A1/A2 adenosine receptor antagonist which is known to improve cognitive performance in humans. This effect of caffeine has been attributed to its antagonism of adenosine receptors. Objective: The present study was devised to identify the role of A1 and A2A adenosine receptors in the facilitation of memory consolidation in mice performing a passive avoidance task. Methods: Adult albino Swiss male mice were used. The mice were trained in a step-through inhibitory avoidance task in which they were punished by a foot-shock (0.4 mA, 5 Hz, for 3 s) delivered through the grid floor. Caffeine (0.1, 0.3, 1.0 and 3.0 mg/kg), SCH 58261 (0.1, 0.3, 1.0 and 3.0 mg/k…

Pharmacologybusiness.industryAntagonistPharmacologyAdenosine receptor antagonistAdenosine receptorAdenosineSCH-58261chemistry.chemical_compoundchemistryAnesthesiaMedicineMemory consolidationReceptorCaffeinebusinessmedicine.drugPsychopharmacology
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