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PMID: 3015342 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Differential effect of adenosine on pre- and postsynaptic calcium fluxes.

Brain research ·Vol. 376 ·No. 2 ·1986-06-25 ·Pages 382-6

Schubert P, Heinemann U, Kolb R

Abstract

In rat hippocampal slices, stimulus-evoked field potentials and the concomitant decrease of the extracellular concentration of free Ca ions [Ca2+]o were measured with combined reference/ion-sensitive microelectrodes. By reducing [Ca2+]o from 2.0 mM to 0.2 mM, evoked synaptic transmission was blocked, but orthodromic repetitive stimulation of CA1 afferents still elicited a marked decrease of [Ca2+]o. This Ca2+ signal is attributed predominantly to Ca2+ entry into the activated axon terminals. It was significantly depressed by adenosine. The adenosine agonist, L-phenylisopropyl adenosine (L-PIA) was more effective than D-PIA, indicating that the adenosine depression of presynaptic Ca2+ entry is mediated via the A1 receptor. 4-Aminopyridine (4-AP) enhanced decreases in [Ca2+]o without restoring synaptic transmission. Adenosine depressed also these Ca2+ signals. Adenosine deaminase was even more effective in the presence of 4-AP and enhanced the orthodromic Ca2+-signal by a factor of two. Antidromic stimulation of hippocampal pyramidal cells also evoked reductions in [Ca2+]o. These were less affected by adenosine and the other treatments under the conditions tested.

MeSH Terms
Adenosine/pharmacology Animals Calcium/metabolism Cell Membrane Permeability/drug effects Evoked Potentials/drug effects Hippocampus/metabolism In Vitro Techniques Rats Synaptic Membranes/drug effects Synaptic Transmission/drug effects
Chemicals
Adenosine Calcium
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Schubert P
Heinemann U
Kolb R
Article Info
Journal
Brain research
Abbr.
Brain Res
ISSN
0006-8993
Published
1986-06-25
Pages
382-6
Language
English
Region
Netherlands
NLM ID
0045503
Subset
IM
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