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PMID: 945347 Published · ppublish English Journal Article

The effects of morphine- and nalorphine- like drugs in the nondependent and morphine-dependent chronic spinal dog.

The Journal of pharmacology and experimental therapeutics ·Vol. 197 ·No. 3 ·1976-06-00 ·Pages 517-32

Martin WR, Eades CG, Thompson JA, Huppler RE, Gilbert PE

Abstract

Three different syndromes produced by congeners of morphine have been identified in the nondependent chronic spinal dog. These syndromes have been attributed to interaction of agonists with three distinguishable receptors (mu, kappa and sigma). Morphine is the prototype agonist for the mu receptor, ketocyclazocine for the kappa receptor and SKF-10,047 for the sigma receptor. The morphine syndrome (mu) in the dog is characterized by miosis, bradycardia, hypothermia, a general depression of the nociceptive responses and indifference to environmental stimuli. Ketocyclazocine (kappa) constricts pupils, depresses the flexor reflex and produces sedation but does not markedly alter pulse rate or the skin twitch reflex. SKF-10,047 (sigma), in contrast to morphine and ketocyclazocine, causes mydriasis, tachypnea, tachycardia and mania. The effects of these three drugs can be antagonized by the pure antagonist naltrexone, indicating that they are agonists. Further, chronic administration of morphine, ketocyclazocine and SKF-10,047 induces tolerance to their agonistic effects. Morphine suppresses abstinence in morphine-dependent dogs while ketocyclazocine does not. Ketocyclazocine at best precipitated only a liminal abstinence syndrome in the morphine-dependent dog, indicating that it had little affinity for the morphine receptor. Ketocyclazocine thus appears to be a selective agonist at the kappa receptor. Further, it has been shown that buprenorphine is a partial agonist of the mu type which both suppressed and precipitated abstinence in the morphine-dependent dog while morphine and propoxyphene are stronger agonists. Apomorphine and SKF-10,047 produce similar pharmacologic effects suggesting that sigma activity may involve a dopaminergic mechanism.

MeSH Terms
Animals Apomorphine/pharmacology Cyclazocine/analogs & derivatives,pharmacology Cyclopropanes/pharmacology Dextropropoxyphene/pharmacology Dogs Ethylketocyclazocine/analogs & derivatives Humans Morphinans/pharmacology Morphine/pharmacology Morphine Dependence/physiopathology Nalorphine/pharmacology Naltrexone/pharmacology Phenazocine/analogs & derivatives,pharmacology Spinal Cord/physiology
Chemicals
Cyclopropanes Morphinans Ethylketocyclazocine Naltrexone ketazocine Morphine Phenazocine Cyclazocine Apomorphine Dextropropoxyphene Nalorphine
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Martin W R
Eades C G
Thompson J A
Huppler R E
Gilbert P E
Article Info
Journal
The Journal of pharmacology and experimental therapeutics
Abbr.
J Pharmacol Exp Ther
ISSN
0022-3565
Published
1976-06-00
Pages
517-32
Language
English
Region
United States
NLM ID
0376362
Subset
IM
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