Cargando…
A MOR Antagonist with High Potency and Antagonist Efficacy among Diastereomeric C9-Alkyl-Substituted N-Phenethyl-5-(3-hydroxy)phenylmorphans
The 5-(3-hydroxy)phenylmorphan structural class of compounds are unlike the classical morphinans, 4,5-epoxymorphinans, and 6,7-benzomorphans, in that they have an equatorially oriented aromatic ring rather than the axial orientation of that ring found in the classical opioids. This modified and simp...
Autores principales: | , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2023
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10386414/ https://www.ncbi.nlm.nih.gov/pubmed/37513283 http://dx.doi.org/10.3390/molecules28145411 |
_version_ | 1785081658864566272 |
---|---|
author | Chambers, Dana R. Sulima, Agnieszka Luo, Dan Prisinzano, Thomas E. Jacobson, Arthur E. Rice, Kenner C. |
author_facet | Chambers, Dana R. Sulima, Agnieszka Luo, Dan Prisinzano, Thomas E. Jacobson, Arthur E. Rice, Kenner C. |
author_sort | Chambers, Dana R. |
collection | PubMed |
description | The 5-(3-hydroxy)phenylmorphan structural class of compounds are unlike the classical morphinans, 4,5-epoxymorphinans, and 6,7-benzomorphans, in that they have an equatorially oriented aromatic ring rather than the axial orientation of that ring found in the classical opioids. This modified and simplified opioid-like structure has been shown to retain antinociceptive activity, depending on its stereochemistry and substituents, and some of them have been found to be much more potent than morphine. A simple C9-hydroxy-5-(3-hydroxy)phenylmorphan enantiomer was found to be about 500 times more potent than morphine in vivo. We have previously examined C9-alkenyl and hydroxyalkyl substituents in the N-phenethyl-5-(3-hydroxy)phenylmorphan class of compounds. Comparable C9-alkyl (methyl through butyl) substituents, with their sets of diastereomers, have not been explored. All these compounds have now been synthesized to determine the effect chain-length and stereochemistry at the C9 position in the molecule might have on their interaction with opioid receptors. We now report the synthesis and in vitro activity of 16 compounds, the C9-methyl, ethyl, propyl, and butyl diastereomers, using the inhibition of forskolin-induced cAMP accumulation assay. Several potent (sub-nanomolar and nanomolar) MOR compounds were found to be selective agonists with varying efficacy. Of greatest interest, a selective MOR antagonist was discovered; it did not display any DOR or KOR agonist activity in vitro, was three times more potent than naltrexone, and was found to antagonize the EC90 of fentanyl at MOR to a greater extent than naltrexone. |
format | Online Article Text |
id | pubmed-10386414 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2023 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-103864142023-07-30 A MOR Antagonist with High Potency and Antagonist Efficacy among Diastereomeric C9-Alkyl-Substituted N-Phenethyl-5-(3-hydroxy)phenylmorphans Chambers, Dana R. Sulima, Agnieszka Luo, Dan Prisinzano, Thomas E. Jacobson, Arthur E. Rice, Kenner C. Molecules Article The 5-(3-hydroxy)phenylmorphan structural class of compounds are unlike the classical morphinans, 4,5-epoxymorphinans, and 6,7-benzomorphans, in that they have an equatorially oriented aromatic ring rather than the axial orientation of that ring found in the classical opioids. This modified and simplified opioid-like structure has been shown to retain antinociceptive activity, depending on its stereochemistry and substituents, and some of them have been found to be much more potent than morphine. A simple C9-hydroxy-5-(3-hydroxy)phenylmorphan enantiomer was found to be about 500 times more potent than morphine in vivo. We have previously examined C9-alkenyl and hydroxyalkyl substituents in the N-phenethyl-5-(3-hydroxy)phenylmorphan class of compounds. Comparable C9-alkyl (methyl through butyl) substituents, with their sets of diastereomers, have not been explored. All these compounds have now been synthesized to determine the effect chain-length and stereochemistry at the C9 position in the molecule might have on their interaction with opioid receptors. We now report the synthesis and in vitro activity of 16 compounds, the C9-methyl, ethyl, propyl, and butyl diastereomers, using the inhibition of forskolin-induced cAMP accumulation assay. Several potent (sub-nanomolar and nanomolar) MOR compounds were found to be selective agonists with varying efficacy. Of greatest interest, a selective MOR antagonist was discovered; it did not display any DOR or KOR agonist activity in vitro, was three times more potent than naltrexone, and was found to antagonize the EC90 of fentanyl at MOR to a greater extent than naltrexone. MDPI 2023-07-14 /pmc/articles/PMC10386414/ /pubmed/37513283 http://dx.doi.org/10.3390/molecules28145411 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/). |
spellingShingle | Article Chambers, Dana R. Sulima, Agnieszka Luo, Dan Prisinzano, Thomas E. Jacobson, Arthur E. Rice, Kenner C. A MOR Antagonist with High Potency and Antagonist Efficacy among Diastereomeric C9-Alkyl-Substituted N-Phenethyl-5-(3-hydroxy)phenylmorphans |
title | A MOR Antagonist with High Potency and Antagonist Efficacy among Diastereomeric C9-Alkyl-Substituted N-Phenethyl-5-(3-hydroxy)phenylmorphans |
title_full | A MOR Antagonist with High Potency and Antagonist Efficacy among Diastereomeric C9-Alkyl-Substituted N-Phenethyl-5-(3-hydroxy)phenylmorphans |
title_fullStr | A MOR Antagonist with High Potency and Antagonist Efficacy among Diastereomeric C9-Alkyl-Substituted N-Phenethyl-5-(3-hydroxy)phenylmorphans |
title_full_unstemmed | A MOR Antagonist with High Potency and Antagonist Efficacy among Diastereomeric C9-Alkyl-Substituted N-Phenethyl-5-(3-hydroxy)phenylmorphans |
title_short | A MOR Antagonist with High Potency and Antagonist Efficacy among Diastereomeric C9-Alkyl-Substituted N-Phenethyl-5-(3-hydroxy)phenylmorphans |
title_sort | mor antagonist with high potency and antagonist efficacy among diastereomeric c9-alkyl-substituted n-phenethyl-5-(3-hydroxy)phenylmorphans |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10386414/ https://www.ncbi.nlm.nih.gov/pubmed/37513283 http://dx.doi.org/10.3390/molecules28145411 |
work_keys_str_mv | AT chambersdanar amorantagonistwithhighpotencyandantagonistefficacyamongdiastereomericc9alkylsubstitutednphenethyl53hydroxyphenylmorphans AT sulimaagnieszka amorantagonistwithhighpotencyandantagonistefficacyamongdiastereomericc9alkylsubstitutednphenethyl53hydroxyphenylmorphans AT luodan amorantagonistwithhighpotencyandantagonistefficacyamongdiastereomericc9alkylsubstitutednphenethyl53hydroxyphenylmorphans AT prisinzanothomase amorantagonistwithhighpotencyandantagonistefficacyamongdiastereomericc9alkylsubstitutednphenethyl53hydroxyphenylmorphans AT jacobsonarthure amorantagonistwithhighpotencyandantagonistefficacyamongdiastereomericc9alkylsubstitutednphenethyl53hydroxyphenylmorphans AT ricekennerc amorantagonistwithhighpotencyandantagonistefficacyamongdiastereomericc9alkylsubstitutednphenethyl53hydroxyphenylmorphans AT chambersdanar morantagonistwithhighpotencyandantagonistefficacyamongdiastereomericc9alkylsubstitutednphenethyl53hydroxyphenylmorphans AT sulimaagnieszka morantagonistwithhighpotencyandantagonistefficacyamongdiastereomericc9alkylsubstitutednphenethyl53hydroxyphenylmorphans AT luodan morantagonistwithhighpotencyandantagonistefficacyamongdiastereomericc9alkylsubstitutednphenethyl53hydroxyphenylmorphans AT prisinzanothomase morantagonistwithhighpotencyandantagonistefficacyamongdiastereomericc9alkylsubstitutednphenethyl53hydroxyphenylmorphans AT jacobsonarthure morantagonistwithhighpotencyandantagonistefficacyamongdiastereomericc9alkylsubstitutednphenethyl53hydroxyphenylmorphans AT ricekennerc morantagonistwithhighpotencyandantagonistefficacyamongdiastereomericc9alkylsubstitutednphenethyl53hydroxyphenylmorphans |