Central Actions of Benzodiazepines: General Introduction

Author:

Haefely W. E.

Abstract

SummaryAfter a brief review of the characteristic somatic and psychotropic effects of benzodiazepines evidence is presented which supports a specific facilitatory action of these drugs on GABA ergic synapses within the mammalian central nervous system. Benzodiazepines enhance presynaptic inhibition in the spinal cord and dorsal column nuclei as well as postsynaptic inhibition in dorsal column nuclei, hippocampus, hypothalamus, cerebral cortex, cerebellar cortex, which are all examples of recurrent and collateral inhibition mediated by GABA ergic intrinsic neurones. In addition, the compounds also enhance the inhibitory effect of GABA ergic long projection neurones in the substantia nigra and the lateral vestibular nucleus of Deiters. Several problems remain to be solved, such as the exact site at which benzodiazepines initiate their action (pre-synaptically at GABA ergic nerve endings or postsynaptically at the target cells) and the possible existence of endogenous ligands for the benzodiazepine receptor. Some suspected implications which studies on benzodiazepine binding sites could have for a deeper understanding of the mode of action of these drugs are discussed.

Publisher

Royal College of Psychiatrists

Subject

Psychiatry and Mental health

Reference32 articles.

1. Behavioral effects of benzodiazepines: A review

2. The term ‘benzodiazepines' is used for the sake of simplicity; it includes derivatives with a hetero-aromatic 5- or 6-membered ring instead of the condensed benzene, or with 7-membered rings having two nitrogen atoms in other positions than the usual 1, 4 or even containing only one nitrogen. Some of these derivatives produce benzodiazepine-like actions and displace 3H-diazepam from its specific binding sites.

3. New concepts on the mechanism of action of benzodiazepines

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