Search results for "Dicyclomine"

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Facilitatory and inhibitory muscarine receptors on the rat phrenic nerve: effects of pirenzepine and dicyclomine

1988

Neuronal transmitter stores of the rat phrenic nerve were labelled by an incubation with [3H]choline. Release of [3H]acetylcholine was elicited either by a short (100 pulses, 5 Hz) or by a long (1500 pulses, 5 or 25 Hz) period of electrical nerve stimulation. Pirenzepine and dicyclomine enhanced transmitter release evoked by the short stimulation period. Both antagonists reduced transmitter release evoked by the long stimulation period. Pirenzepine reduced transmitter release at low concentrations (1 nmol/l) whereas a higher concentration was necessary for the enhancing effect; the opposite pattern was found for dicyclomine. A low concentration of oxotremorine (10 nmol/l) enhanced and a hig…

medicine.medical_specialtyCyclohexanecarboxylic AcidsNeuromuscular JunctionDicyclomineStimulationIn Vitro TechniquesSynaptic TransmissionDicyclominechemistry.chemical_compoundInternal medicineMuscarinic acetylcholine receptormedicineAnimalsEvoked PotentialsPharmacologyMuscarineChemistryRats Inbred StrainsMuscarinic acetylcholine receptor M2PirenzepineGeneral MedicineMuscarinic acetylcholine receptor M1Receptors MuscarinicPirenzepineAcetylcholineRatsPhrenic NerveEndocrinologyAcetylcholinemedicine.drugNaunyn-Schmiedeberg's Archives of Pharmacology
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Control of Acetylcholine Release and of Intestinal Motility by Subtypes of Muscarine Receptors

1988

Two types of neuronal muscarine receptors have been investigated in the myenteric plexus preparation of the guinea-pig small intestine: 1. Presynaptic receptors activation of which inhibits the depolarization-evoked release of acetylcholine. Pirenzepine and dicyclomine have low affinities to the release-inhibitory receptors (pA2 values 6.9 and 7.6) which suggests that the presynaptic receptors (similar to the smooth muscle receptors) belong to the M2 subtype. The inhibition of the electrically-evoked acetylcholine release by muscarine (0.01 - 1 μmol/1) was not affected by forskolin (1μmol/l). This indicates that cyclic AMP is not crucially involved in the muscarinic inhibition of acetylchol…

medicine.medical_specialtyMuscarineChemistryMuscarinic acetylcholine receptor M1BicucullineDicyclominePirenzepinechemistry.chemical_compoundEndocrinologyInternal medicineMuscarinic acetylcholine receptormedicineReceptorAcetylcholinemedicine.drug
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