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PMID: 4958617 Published · ppublish English Journal Article

Pharmacology of cortical inhibition.

The Journal of physiology ·Vol. 184 ·No. 1 ·1966-05-00 ·Pages 78-105

Krnjević K, Randić M, Straughan DW

Abstract

1. We have studied the effects of various pharmacological agents on the cortical inhibitory process described in the previous two papers (Krnjević, Randić & Straughan, 1966a, b); the drugs were mostly administered directly by iontophoresis from micropipettes and by systemic injection (I.V.).2. Strychnine given by iontophoresis or by the application of a strong solution to the cortical surface potentiated excitatory effects, but very large iontophoretic doses also depressed neuronal firing. Subconvulsive and even convulsive systemic doses had little or no effect at the cortical level. There was no evidence, with any method of application, that strychnine directly interferes with the inhibitory process.3. Tetanus toxin, obtained from two different sources and injected into the cortex 12-48 hr previously, also failed to block cortical inhibition selectively. As with strychnine, there was some evidence of increased responses to excitatory inputs.4. Other convulsant drugs which failed to block cortical inhibition included picrotoxin, pentamethylene tetrazole, thiosemicarbazide, longchain omega-amino acids and morphine.5. The inhibition was not obviously affected by cholinomimetic agents or by antagonists of ACh.6. alpha- and beta-antagonists of adrenergic transmission were also ineffective.7. Cortical inhibition was fully developed in the presence of several general anaesthetics, including ether, Dial, pentobarbitone, Mg and chloralose. A temporary reduction in inhibition which is sometimes observed after systemic doses of pentobarbitone, is probably secondary to a fall in blood pressure.8. Several central excitants such as amphetamine, caffeine and lobeline also failed to show any specific antagonistic action on cortical inhibition.9. In view of the possibility that GABA is the chemical agent mediating cortical inhibition, an attempt was made to find a selective antagonist of its depressant action on cortical neurones. None of the agents listed above, nor any other of the substances tested, were able to block this action.10. It was concluded that cortical inhibition differs from spinal inhibition in its pharmacological properties; and that our observations are consistent with the possibility that GABA is the cortical inhibitory transmitter.

MeSH Terms
Alkaloids/pharmacology Amino Acids/pharmacology Aminobutyrates/pharmacology Amphetamine/pharmacology Anesthetics/pharmacology Animals Atropine/pharmacology Cats Cortical Spreading Depression/drug effects Haplorhini Iontophoresis Morphine/pharmacology Parasympathomimetics/pharmacology Pentylenetetrazole/pharmacology Picrotoxin/pharmacology Rabbits Strychnine/pharmacology Tetanus Toxin/pharmacology Thiosemicarbazones/pharmacology Tubocurarine/pharmacology
Chemicals
Alkaloids Amino Acids Aminobutyrates Anesthetics Parasympathomimetics Tetanus Toxin Thiosemicarbazones Picrotoxin Morphine Atropine Amphetamine Strychnine Tubocurarine Pentylenetetrazole
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Krnjević K
Randić M
Straughan D W
References (51)
51 references, click to expand
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Article Info
Journal
The Journal of physiology
Abbr.
J Physiol
ISSN
0022-3751
Published
1966-05-00
Pages
78-105
Language
English
Region
England
NLM ID
0266262
PMCID
PMC1357548
Subset
IM
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