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European Journal of Pharmacology | 1992

A highly selective δ1-opioid receptor antagonist: 7-benzylidenenaltrexone

Philip S. Portoghese; M. Sultana; H. Nagase; A. E. Takemori

In guinea pig brain membranes 7-benzylideneraltrexone (BNTX) possesses 100-fold greater affinity (Ki = 0.1 nM) for [3H]DPDPE [3H][D-Pen2,D-Pen5]enkephalin) binding sites (δin1) relative to those of [3H]DSLET ([3H][D-Ser2, Leu5] enkephalin-Thr6) (δ2). The ED50 dose ratio (tail flick) in mice for the antagonism of DPDPE-induced antinociception of BNTX (6.3 pmol i.c.v.) was 7.2, whereas for DSLET, morphine and U69593 it was not significantly different from unity. The fact that there was no correlation of the binding or in vivo data for BNTX with antagonist potency in smooth muscle preparations suggest that the in vitro pharmacologic activity is mediated by δ-opioid subtypes that are different from those in the brain.


Life Sciences | 1992

Agonist and antagonist activities of ligands derived from naltrexone and oxymorphone

A. E. Takemori; M. Sultana; H. Nagase; Philip S. Portoghese

The pharmacological profile of naltrindole (NTI) and three of its analogues, N-methyl-NTI (N-Me-NTI), oxymorphindole (OMI) and naltriben (NTB) were studied in antinociceptive assays. The compounds were found to have agonist activities that appear to be mediated mainly by kappa opioid receptors because norbinaltorphimine (nor-BNI), the selective kappa opioid receptor antagonist inhibited their effects significantly. All of the compounds, behaved as antagonists at doses that were lower than those that produced agonist effects and they possessed a profile that was very selective for inhibiting the antinociceptive activities of delta opioid receptor agonists. Differential antagonism by NTB of the activities of DSLET and DPDPE was demonstrated.


European Journal of Pharmacology | 1988

Naltrindole, a highly selective and potent non-peptide δ opioid receptor antagonist

Philip S. Portoghese; M. Sultana; A. E. Takemori


Journal of Pharmacology and Experimental Therapeutics | 1991

Selective blockage of delta opioid receptors prevents the development of morphine tolerance and dependence in mice.

E E Abdelhamid; M. Sultana; Philip S. Portoghese; A. E. Takemori


Journal of Medicinal Chemistry | 1990

Design of peptidomimetic delta opioid receptor antagonists using the message-address concept.

Philip S. Portoghese; M. Sultana; A. E. Takemori


Journal of Medicinal Chemistry | 1988

Application of the message-address concept in the design of highly potent and selective non-peptide .delta. opioid receptor antagonists

Philip S. Portoghese; M. Sultana; H. Nagase; A. E. Takemori


Journal of Medicinal Chemistry | 1990

Naltrindole-5'-isothiocyanate: a nonequilibrium, highly selective .delta.-opioid receptor antagonist

Philip S. Portoghese; M. Sultana; A. E. Takemori


European Journal of Pharmacology | 1994

Interaction of [d-Pen2, d-Pen5]enkephalin and [d-Ala2, Glu4]deltorphin with δ-opioid receptor subtypes in vivo

Todd W. Vanderah; A. E. Takemori; M. Sultana; Philip S. Portoghese; Henry I. Mosberg; Victor J. Hruby; Ronald C. Haaseth; Terry O. Matsunaga; Frank Porreca


Journal of Medicinal Chemistry | 1994

Synthesis of naltrexone-derived .delta.-opioid antagonists. Role of conformation of the .delta. address moiety

Philip S. Portoghese; M. Sultana; S. T. Moe; A. E. Takemori


Journal of Medicinal Chemistry | 1992

Opioid agonist and antagonist activities of morphindoles related to naltrindole

Philip S. Portoghese; D. L. Larson; M. Sultana; A. E. Takemori

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H. Nagase

University of Minnesota

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D. L. Larson

University of Minnesota

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