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Regulation of Histamine Release and Synthesis in the Brain by Muscarinic Receptors
Authors:Christiane Gulat-Marnay  rée Lafitte  Jean-Michel Arrang  Jean-Charles Schwartz
Institution:Laboratoire de Physiologie, Faculté de Pharmacie, (U. 109) de l'INSERM, Centre Paul Broca, Paris, France.
Abstract:The cholinergic modulation of histamine release and synthesis was studied in rat brain slices or synaptosomes labeled with L-3H]histidine. Carbachol in increasing concentrations progressively reduced the K+-induced 3H]histamine release from cortical slices. Pirenzepine, a preferential M1-receptor antagonist, reversed the carbachol effect in an apparently competitive manner and with Ki values of 1-6 X 10(-8) M. 11-(2-(Diethylamino)methyl]-1-piperidinyl)acetyl]-5,11-dihydro-6H- pyrido2,3-b]1,4]benzodiazepine-6-one (AF-DX 116), considered a preferential M2-receptor antagonist, reversed the carbachol effect with a mean Ki of approximately 2 X 10(-7) M. Oxotremorine behaved as a partial agonist in the modulation of histamine release. Neostigmine, an acetylcholinesterase inhibitor, inhibited the K+-induced release of 3H]histamine from cortical slices, and the effect was largely reversed by pirenzepine, an observation suggesting a modulation by endogenous acetylcholine. The effects of carbachol and pirenzepine were observed with slices of other brain regions known to contain histaminergic nerve terminals or perikarya, as well as with cortical synaptosomes. The two drugs also modified, in opposite directions, 3H]histamine formation in depolarized cortical slices. In vivo oxotremorine inhibited 3H]histamine formation in cerebral cortex, and this effect was reversed by scopolamine. When administered alone, scopolamine failed to enhance significantly the 3H- labeled amine formation, a finding suggesting that muscarinic receptors are not activated by endogenous acetylcholine released under basal conditions. It is concluded that muscarinic heteroreceptors, directly located on histaminergic nerve terminals, control release and synthesis of histamine in the brain. These receptors apparently belong to the broad M1-receptor category and may correspond to a receptor subclass displaying a rather high affinity for AF-DX 116.
Keywords:Histamine release  Histamine synthesis  M1 muscarinic heteroreceptors  Rat brain cortex
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