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Bremazocine: A potent, long-acting opiate kappa-agonist

Life SciencesPublished 1 September 1980
D. Römer, Heinz H. Büscher, Ronald C. Hill, Richard A. Maurer, Trevor J. Petcher, Henk B.A. Welle
Citations314
SJR quartileQ1
SJR score1.31
SNIP1.07

TL;DR

It is suggested that morphine and bremazocine interact with different subpopulations of opiate receptors, and the actions of the antagonists naloxone and Mr 2266 suggest a preference for opiate kappa-receptors.

Abstract

The benzomorphan analogue bremazocine is a potent, centrally-acting analgesic with a long duration of action. In animal models it is free of physical and psychological dependence liability, produces no respiratory depression, and has a variety of other properties which justify its classification as a putative opiate kappa-receptor agonist. Binding studies with tritiated (−)-bremazocine on rat brain membrane preparations show that this molecule differs in its binding properties from previously investigated exogenous or endogenous opioids. Studies on isolated guinea-pig ileum and mouse vas deferens indicate a preference for opiate kappa-receptors. In mice (hot plate, tail flick) and rhesus monkeys (shock titration), bremazocine is a potent analgesic with a long duration of action. Here also, the actions of the antagonists naloxone and Mr 2266 suggest a preference for opiate kappa-receptors. Bremazocine differs from morphine in the non-production of mydriasis and the Straub tail phenomenon in mice, in its lack of effects on respiration in rats, in that it is not self-administered by rhesus monkeys, and in that programmed administration in the same species does not lead to a morphine-like withdrawal syndrome upon cessation of drug treatment or upon naloxone challenge. Prolonged treatment of animals with bremazocine leads to tolerance to its analgesic effects; morphine treatment of such tolerant animals causes analgesia. Conversely, treatment of morphine-tolerant animals with bremazocine does not cause analgesia; these findings suggest that morphine and bremazocine interact with different subpopulations of opiate receptors.

Keywords

NeuroscienceBiochemistry, Genetics and Molecular Biology