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PMID: 11752125 Published · ppublish English Comparative Study Journal Article Research Support, U.S. Gov't, P.H.S.

Morphine tolerance in spinal cord is due to interaction between mu- and delta-receptors.

The Journal of pharmacology and experimental therapeutics ·Vol. 300 ·No. 1 ·2002-01-00 ·Pages 265-72

Riba P, Ben Y, Smith AP, Furst S, Lee NM

Abstract

When the opioid agonist morphine is given chronically and systemically to mice by pellet implantation for 3 days, the animals develop substantial tolerance to the antinociceptive effect of a test dose of morphine given systemically. When the test dose is administered to the spinal cord, however, very little tolerance is observed. We tested six strains of mice differing in the degree to which they develop systemic tolerance to morphine and found that none of them developed significant tolerance to spinal morphine. However, most of these strains did develop substantial spinal tolerance to antinociception induced by the selective mu-agonist [D-Ala(2),N-Me-Phe(4),Gly(5)-ol]-enkephalin (DAMGO) and by the selective delta-agonist [D-Pen(2),D-Pen(5)]-enkephalin (DPDPE). Moreover, in naïve animals, the antinociceptive effect of both DAMGO and DPDPE was blocked by D-Phe-Cys-Tyr-D-Trp-Arg-Thr-Pen-Thr-NH(2), a selective mu-antagonist, indicating that both agonists mediate antinociception in the spinal cord through mu-receptors. In addition to directly mediating antinociception, however, DPDPE potentiated the antinociceptive activity of DAMGO in the spinal cord of naïve animals, and this antinociception was blocked by the delta-antagonist H-TyrTicPsi[CH(2)NH]Phe-Thr-OH (TIPPpsi), indicating mediation through delta-receptors. In contrast, in tolerant animals, TIPPpsi enhanced the antinociception of DAMGO. These results thus demonstrate not only that mu- and delta-opioid receptors interact in naïve animals, but that the nature of this interaction changes during tolerance, from a potentiation to an inhibition. The lack of tolerance to spinal morphine may result from the ability of morphine to act as a partial antagonist at delta-receptors.

MeSH Terms
Analgesics, Opioid/pharmacology Animals Drug Tolerance Enkephalin, Ala(2)-MePhe(4)-Gly(5)-/antagonists & inhibitors,pharmacology Enkephalin, D-Penicillamine (2,5)-/antagonists & inhibitors,pharmacology Female Injections, Spinal Injections, Subcutaneous Male Mice Mice, Inbred Strains Morphine/pharmacology Pain Measurement/drug effects Peptides/pharmacology Receptors, Opioid, delta/antagonists & inhibitors,drug effects Receptors, Opioid, mu/antagonists & inhibitors,drug effects Species Specificity
Chemicals
Analgesics, Opioid Peptides Receptors, Opioid, delta Receptors, Opioid, mu Enkephalin, Ala(2)-MePhe(4)-Gly(5)- connective tissue-activating peptide Morphine Enkephalin, D-Penicillamine (2,5)-
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Riba Pal
Geraldine Brush Cancer Research Institute, California Pacific Medical Center Research Institute, San Francisco, California 94115, USA.
Ben Yong
Smith Andrew P
Furst Susanna
Lee Nancy M
Article Info
Journal
The Journal of pharmacology and experimental therapeutics
Abbr.
J Pharmacol Exp Ther
ISSN
0022-3565
Published
2002-01-00
Pages
265-72
Language
English
Region
United States
NLM ID
0376362
Subset
IM
Grants
NIDA NIH HHS · DA02643 · United States
NIDA NIH HHS · DA10 · United States
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