Interaction of Benzodiazepines with Central Nervous Glycine Receptors: Possible Mechanism of Action
- 1 June 1974
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 71 (6) , 2246-2250
- https://doi.org/10.1073/pnas.71.6.2246
Abstract
Interaction of 21 benzodiazepines with the glycine receptor in the brainstem and spinal cord of rat have been evaluated in terms of their displacement of [ 3 H]strychinine binding. The rank order of potency of the 21 drugs in displacing specific [ 3 H]strychinine binding correlates (p < 0.005) with their rank order of potency in a vareity of pharmacological and behavioral tests in humans and animals that predict clinical efficacy. There is a 50-fold variation in potency of the series of benzodiazepines with mean effective dose (ED 50 ) values ranging from 19μM to > 1000 μM. Diazepam (Valium®) and chlordiazepoxide (Librium®) have ED 50 's of 26 μM and 200 μM, respectively, whereas the ED 50 for glycine is 25 μM. The inhibitory effects of 10 of the agents in two other central nervous system membrane receptor assays, for the opiate receptor and the muscarinic cholinergic receptor, do not correlate with any of the in vivo pharmacologic and behavioral tests. The benzodiazepines may exert their antianxiety, anticonvulsant and muscle-relaxant effects by mimicking the effects of the neurotransmitter glycine at its central nervous system receptor sites.Keywords
This publication has 21 references indexed in Scilit:
- Opiate Agonists and Antagonists Discriminated by Receptor Binding in BrainScience, 1973
- Opiate Receptor: Demonstration in Nervous TissueScience, 1973
- Light and electron microscopic autoradiography on spinal cord slices after incubation with labeled glycineBrain Research, 1971
- Central muscle relaxant effects of diazepamNeuropharmacology, 1970
- The action of glycine on cortical neuronesExperimental Brain Research, 1969
- A comparison of the concentration of glycine, a transmitter suspect, in different areas of the brain and spinal cord in seven different vertebratesComparative Biochemistry and Physiology, 1969
- The nitrogen content of the water soluble proteins of three species of the free-living amoebaeLife Sciences, 1968
- CHANGES IN AMINO ACID CONCENTRATIONS ASSOCIATED WITH LOSS OF SPINAL INTERNEURONS *Journal of Neurochemistry, 1967
- DISTRIBUTION OF SOME SYNAPTIC TRANSMITTER SUSPECTS IN CAT SPINAL CORD: GLUTAMIC ACID, ASPARTIC ACID, γ‐AMINOBUTYRIC ACID, GLYCINE, AND GLUTAMINE *Journal of Neurochemistry, 1967
- Pharmacology of Benzodiazepines: Laboratory and Clinical CorrelationsPublished by Elsevier ,1967