The unambiguous demonstration of opioid receptor types, and their endogenous ligands, the endorphins, together with a diverse range of synthetic ligands, has created exciting opportunities for research highly relevant to drug abuse. One major objective of this project is to continue the process of defining new opioid receptor subtypes. This process is optimally accomplished by synergistic collaborations with medicinal chemists to develop (a) selective high affinity ligands for each subtype (b) irreversible ligands with receptor subtype specificity and (c) enantiomeric pairs of these ligands for detection of receptor mediated effects. Delta receptor antagonists attenuate alcohol consumption, block morphine tolerance and dependence and decrease cocaine-reinforcement. Recent work has further delineated two subtypes of the delta-ncx binding site, and provided new information about subtypes of the delta-cx subtype. The determination of delta receptor subtypes may lead to new medicines for the treatment of alcoholism and drug addiction. Collaborative efforts with Dr. Rice's lab have led to the identification and biological evaluation of highly selective nonpeptide delta agonists. Converging lines of investigation suggest that kappa receptor antagonists may be useful for the treatment of depression, anxiety, psychosis and craving. Studies reported last year demonstrated up to four subtypes of kappa opioid receptors in rat, guinea pig and human brain, suggesting that it may be possible to develop kappa agonists devoid of psychotomimetic side effects. More recent studies using the novel radioligand [125I]IOXY have resolved additional kappa receptor subtypes. Our lab developed radioiodinated agonist ([125I]IOXY-AGO) and antagonist ([125I]IOXY) ligands to facilitate the characterization of cloned mu receptors. These studies showed that the rat and human mu receptors have similar ligand-selectivity patterns and that agonists and antagonists appear to bind to different domains of the mu receptor. The notion that dysfunction of the CNS opioid receptor/endorphin system underlies certain mental illnesses, and contributes to drug abuse, remains a viable, but unproved, hypotheses.

Agency
National Institute of Health (NIH)
Institute
National Institute on Drug Abuse (NIDA)
Type
Intramural Research (Z01)
Project #
1Z01DA000121-05
Application #
5201654
Study Section
Project Start
Project End
Budget Start
Budget End
Support Year
5
Fiscal Year
1995
Total Cost
Indirect Cost
Name
National Institute on Drug Abuse
Department
Type
DUNS #
City
State
Country
United States
Zip Code
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Hiebel, Anne-Cecile; Lee, Yong Sok; Bilsky, Edward et al. (2007) Probes for narcotic receptor mediated phenomena. 34. Synthesis and structure-activity relationships of a potent mu-agonist delta-antagonist and an exceedingly potent antinociceptive in the enantiomeric C9-substituted 5-(3-hydroxyphenyl)-N-phenylethylmorph J Med Chem 50:3765-76
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