Effects of electrical stimulation and choline availability on the release and contents of acetylcholine and choline in superfused slices from rat striatum

Maire, J.C.; Wurtman, R.J.

Journal de Physiologie 80(3): 189-195

1985


ISSN/ISBN: 0021-7948
PMID: 3003350
Document Number: 246914
1.degree. The presence of 5 or 20 .mu.M choline in the eserinized medium superfusing striatal slices enhanced the spontaneous release of acetylcholine (ACh) at both concentrations and, at 20 .mu.M, the release of transmitter evoked by electrical field stimulation. Neither the electrical stimulation nor the addition of choline altered choline acetyltransferase activity. These results show that ACh release is dependent on the availability of extracellular choline. 2.degree. The rate of choline efflux was 7 times higher than the rate of ACh release, was not affected by stimulation, and was increased by 40% when hemicholinium-3 (HC-3), an inhibitor of choline uptake, was present. 3.degree. The muscarinic antagonist atropine (1 .mu.M) increased the evoked release of ACh into both the choline-free medium and that containing 20 .mu.M choline. An adenosine receptor antagonist, 1,3-diethyl-8-phenyl xanthine (10 .mu.M), failed to affect ACh release or the enhancement of release produced by atropine. In medium containing HC-3, stimulation of the slices elicited ACh release for the first 20 min of the 30 min stimulation period (15 Hz); thereafter, although stimulation was continued, the rate of release decreased to that associated with spontaneous release. 4.degree. Tissue ACh contents were not modified by the addition of choline or atropine to the medium, but were depressed by HC-3. Neither atropine nor HC-3 altered tissue choline content. The total amount of ACh + choline released during an experiment was 5-15 times higher than the decrease in tissue levels of these two compounds during the same period of time. This suggests that a pool of bound choline (perhaps the choline-containing membrane phospholipids) provides a source of free choline. Since ACh release and its tissue levels are depressed in the presence of HC-3, it appears that most of the choline orginating from this pool of bound choline is not readily available for ACh synthesis, but must first be liberated into, and then taken up from, the extracellular space.

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