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Interaction of avermectins with [3H]β-carboline-3-carboxylate ethyl ester and [3H]Diazepam binding sites in rat brain cortical membranes

European Journal of PharmacologyPublished 1 February 1982
Michael Williams, Edwin A. Risley
Citations21
SJR quartileQ1
SJR score1.20
SNIP0.98

TL;DR

The data suggest a differential interaction by the avermectins on benzodiazepine and beta-CCE binding sites in rat cortical membranes and indicate that these macrolide anthelmintics may be a useful tool for characterizing benzdiazepine/anxiolytic receptor subtypes.

Abstract

The binding of [3H] beta-carboline-3-carboxylate ethyl ester ([3H] beta-CCE), a ligand for the benzodiazepine receptor in the mammalian CNS, to rat cortical membranes, is enhanced by avermectin B1a and its therapeutic formulation, Ivermectin. In contrast to the effects of the avermectins on [3H]diazepam binding, which involve changes in both receptor affinity and number, increases in beta-CCE binding, which are much less than those observed for the benzodiazepine ligand, involve only alterations in receptor number. This Bmax increase is bicuculline insensitive whereas Ivermectin effects on benzodiazepine binding are partially antagonized by GABA antagonist. The data suggest a differential interaction by the avermectins on benzodiazepine and beta-CCE binding sites in rat cortical membranes and indicate that these macrolide anthelmintics may be a useful tool for characterizing benzodiazepine/anxiolytic receptor subtypes.

Keywords

Agricultural and Biological SciencesBiochemistry, Genetics and Molecular Biology