Literature DB >> 10945843

Methocinnamox is a potent, long-lasting, and selective antagonist of morphine-mediated antinociception in the mouse: comparison with clocinnamox, beta-funaltrexamine, and beta-chlornaltrexamine.

J H Broadbear1, T L Sumpter, T F Burke, S M Husbands, J W Lewis, J H Woods, J R Traynor.   

Abstract

The irreversible mu-opioid antagonists beta-funaltrexamine (beta-FNA) and beta-chlornaltrexamine (beta-CNA) are important pharmacological tools but have a kappa-agonist activity and, in the latter case, low selectivity. This work examines whether clocinnamox (C-CAM) and the newer analog, methocinnamox (M-CAM), represent improved long-lasting antagonists for examining mu-opioid-mediated effects in vivo. beta-FNA, beta-CNA, C-CAM, and M-CAM were compared after systemic administration in mice and in vitro. beta-FNA and beta-CNA were effective agonists in the writhing assay, reversible by the kappa-antagonist norbinaltorphimine. Neither C-CAM nor M-CAM had agonist activity in vivo. M-CAM was devoid of agonist action at cloned opioid receptors. All four compounds depressed the dose-effect curve for the mu-agonist morphine in the warm-water tail-withdrawal test 1 h after administration; at 48 h, recovery was evident. In the writhing assay, the dose-effect curve for morphine was shifted in a parallel fashion in the order M-CAM >> C-CAM > beta-CNA > or = beta-FNA. In comparison with their ability to shift the dose-effect curve for bremazocine (kappa) and BW373U86 (delta), beta-CNA was the least mu-selective, followed by C-CAM < beta-FNA < M-CAM. M-CAM (1.8 mg/kg) produced a 74-fold increase in the ED(50) of morphine while showing no effect on bremazocine or BW373U86 dose-response curves. In binding assays, C-CAM and M-CAM were 8-fold selective for mu- over kappa-receptors, whereas beta-FNA and beta-CNA were mu/delta-, but not mu/kappa, selective. However, ex vivo binding assays confirmed the mu-receptor selectivity of M-CAM. M-CAM is thus a potent, long-lasting, and specific antagonist at mu-receptors in vivo that lacks confounding agonist actions.

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Year:  2000        PMID: 10945843

Source DB:  PubMed          Journal:  J Pharmacol Exp Ther        ISSN: 0022-3565            Impact factor:   4.030


  27 in total

1.  Design, synthesis, and biological evaluation of 14-heteroaromatic-substituted naltrexone derivatives: pharmacological profile switch from mu opioid receptor selectivity to mu/kappa opioid receptor dual selectivity.

Authors:  Yunyun Yuan; Saheem A Zaidi; Orgil Elbegdorj; Lindsey C K Aschenbach; Guo Li; David L Stevens; Krista L Scoggins; William L Dewey; Dana E Selley; Yan Zhang
Journal:  J Med Chem       Date:  2013-11-07       Impact factor: 7.446

2.  14beta-Arylpropiolylamino-17-cyclopropylmethyl-7,8-dihydronormorphinones and related opioids. Further examples of pseudoirreversible mu opioid receptor antagonists.

Authors:  Nick P R Nieland; David Rennison; Jillian H Broadbear; Lauren Purington; James H Woods; John R Traynor; John W Lewis; Stephen M Husbands
Journal:  J Med Chem       Date:  2009-11-12       Impact factor: 7.446

3.  Combined administration of buprenorphine and naltrexone produces antidepressant-like effects in mice.

Authors:  Abdulrahman Almatroudi; Stephen M Husbands; Christopher P Bailey; Sarah J Bailey
Journal:  J Psychopharmacol       Date:  2015-06-04       Impact factor: 4.153

4.  Structural determinants of opioid activity in derivatives of 14-aminomorphinones: effect of substitution in the aromatic ring of cinnamoylaminomorphinones and codeinones.

Authors:  Nick P R Nieland; Humphrey A Moynihan; Simon Carrington; Jillian Broadbear; James H Woods; John R Traynor; Stephen M Husbands; John W Lewis
Journal:  J Med Chem       Date:  2006-08-24       Impact factor: 7.446

5.  Antidepressant-like effects of BU10119, a novel buprenorphine analogue with mixed κ/μ receptor antagonist properties, in mice.

Authors:  Abdulrahman Almatroudi; Mehrnoosh Ostovar; Christopher P Bailey; Stephen M Husbands; Sarah J Bailey
Journal:  Br J Pharmacol       Date:  2017-11-06       Impact factor: 8.739

6.  National Institutes of Health (NIH) Executive Meeting Summary: Developing Medical Countermeasures to Rescue Opioid-Induced Respiratory Depression (a Trans-Agency Scientific Meeting)-August 6/7, 2019.

Authors:  David T Yeung; Kristopher J Bough; Jill R Harper; Gennady E Platoff
Journal:  J Med Toxicol       Date:  2019-12-18

7.  Reversal and Prevention of the Respiratory-Depressant Effects of Heroin by the Novel μ-Opioid Receptor Antagonist Methocinnamox in Rhesus Monkeys.

Authors:  Lisa R Gerak; David R Maguire; James H Woods; Stephen M Husbands; Alex Disney; Charles P France
Journal:  J Pharmacol Exp Ther       Date:  2018-11-21       Impact factor: 4.030

8.  Design, Synthesis, and Biological Evaluation of the Third Generation 17-Cyclopropylmethyl-3,14β-dihydroxy-4,5α-epoxy-6β-[(4'-pyridyl)carboxamido]morphinan (NAP) Derivatives as μ/κ Opioid Receptor Dual Selective Ligands.

Authors:  Yi Zheng; Samuel Obeng; Huiqun Wang; Abdulmajeed M Jali; Bharath Peddibhotla; Dwight A Williams; Chuanchun Zou; David L Stevens; William L Dewey; Hamid I Akbarali; Dana E Selley; Yan Zhang
Journal:  J Med Chem       Date:  2019-01-11       Impact factor: 7.446

Review 9.  Abuse liability, behavioral pharmacology, and physical-dependence potential of opioids in humans and laboratory animals: lessons from tramadol.

Authors:  David H Epstein; Kenzie L Preston; Donald R Jasinski
Journal:  Biol Psychol       Date:  2006-02-23       Impact factor: 3.251

10.  Enkephalin elevations contribute to neuronal and behavioral impairments in a transgenic mouse model of Alzheimer's disease.

Authors:  William J Meilandt; Gui-Qiu Yu; Jeannie Chin; Erik D Roberson; Jorge J Palop; Tiffany Wu; Kimberly Scearce-Levie; Lennart Mucke
Journal:  J Neurosci       Date:  2008-05-07       Impact factor: 6.167

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