6533b7d0fe1ef96bd125ad67
RESEARCH PRODUCT
Cholinergic and GABAergic regulation of nitric oxide synthesis in the guinea pig ileum.
Heinz KilbingerKatalina Hebeisssubject
Malemedicine.medical_specialtyBaclofenArgininePhysiologyGuinea PigsScopolamineMyenteric PlexusTubocurarineTetrodotoxinBiologyCholinergic AgonistsIn Vitro TechniquesMecamylamineBicucullineNitric OxideNitroarginineCholinergic Antagonistschemistry.chemical_compoundIleumPhysiology (medical)Internal medicineIsometric ContractionMuscarinic acetylcholine receptorMecamylaminemedicineCitrullineAnimalsEgtazic AcidGABA AgonistsMyenteric plexusgamma-Aminobutyric AcidHepatologyGABAA receptorMuscimolOxotremorineGastroenterologyMuscle SmoothBicucullineElectric StimulationEndocrinologychemistryMuscimolCitrullineFemalemedicine.drugdescription
Nitric oxide (NO) synthesis was examined in intact longitudinal muscle-myenteric plexus preparations of the guinea pig ileum by determining the formation of [3H]citrulline during incubation with [3H]arginine. Spontaneous [3H]citrulline production after 30 min was 80–90 dpm/mg, which constituted ∼1% of the tissue radioactivity. Electrical stimulation (10 Hz) led to a threefold increase in [3H]citrulline formation. Removal of calcium from the medium or addition of N G-nitro-l-arginine strongly inhibited both spontaneous and electrically induced production of [3H]citrulline. TTX reduced the electrically induced but not spontaneous [3H]citrulline formation. The electrically induced formation of [3H]citrulline was diminished by (+)-tubocurarine and mecamylamine and enhanced by scopolamine, which suggests that endogenous ACh inhibits, via muscarinic receptors, and stimulates, via nicotinic receptors, the NO synthesis in the myenteric plexus. The GABAA receptor agonist muscimol and GABA also reduced the electrically evoked formation of [3H]citrulline, whereas baclofen was without effect. Bicuculline antagonized the inhibitory effect of GABA. It is concluded that nitrergic myenteric neurons are equipped with GABAAreceptors, which mediate inhibition of NO synthesis.
year | journal | country | edition | language |
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1999-04-01 | The American journal of physiology |