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Effects of casoxin 4 on morphine inhibition of small animal intestinal contractility and gut transit in the mouse

BACKGROUND AND AIMS: Chronic opioid analgesia has the debilitating side-effect of constipation in human patients. The major aims of this study were to: 1) characterize the opioid-specific antagonism of morphine-induced inhibition of electrically driven contraction of the small intestine of mice, rat...

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Autores principales: Patten, Glen S, Head, Richard J, Abeywardena, Mahinda Y
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Dove Medical Press 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3108675/
https://www.ncbi.nlm.nih.gov/pubmed/21694869
http://dx.doi.org/10.2147/CEG.S16161
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author Patten, Glen S
Head, Richard J
Abeywardena, Mahinda Y
author_facet Patten, Glen S
Head, Richard J
Abeywardena, Mahinda Y
author_sort Patten, Glen S
collection PubMed
description BACKGROUND AND AIMS: Chronic opioid analgesia has the debilitating side-effect of constipation in human patients. The major aims of this study were to: 1) characterize the opioid-specific antagonism of morphine-induced inhibition of electrically driven contraction of the small intestine of mice, rats, and guinea pigs; and 2) test if the oral delivery of small milk-derived opioid antagonist peptides could block morphine-induced inhibition of intestinal transit in mice. METHODS: Mouse, rat, and guinea pig intact ileal sections were electrically stimulated to contract and inhibited with morphine in vitro. Morphine inhibition was then blocked by opioid subtype antagonists in the mouse and guinea pig. Using a polymeric dye, Poly R-478, the opioid antagonists casoxin 4 and lactoferroxin A were tested orally for blocking activity of morphine inhibition of gut transit in vivo by single or double gavage techniques. RESULTS: The guinea pig tissue was more sensitive to morphine inhibition compared with the mouse or the rat (IC(50) [half maximal inhibitory concentration] values as nmol/L ± SEM were 34 ± 3, 230 ± 13, and 310 ± 14 respectively) (P < 0.01). The inhibitory influence of opioid agonists (IC(50)) in electrically driven ileal mouse preparations were DADLE ([D-Ala(2), D-Leu(5)]-enkephalin) ≥ met-enkephalin ≥ dynorphin A ≥ DAMGO ([D-Ala(2), N-Me-Phe(4), Glyol(5)]-enkephalin) > morphine > morphiceptin as nmol/L 13.9, 17.3, 19.5, 23.3, 230, and 403 respectively. The mouse demonstrated predominantly κ- and δ-opioid receptor activity with a smaller μ-opioid receptor component. Both mouse and guinea pig tissue were sensitive to casoxin 4 antagonism of morphine inhibition of contraction. In contrast to naloxone, relatively high oral doses of the μ-opioid receptor antagonists, casoxin 4 and lactoferroxin A, applied before and after morphine injection were unable to antagonize morphine inhibition of gut transit. CONCLUSIONS: Casoxin 4 reverses morphine-induced inhibition of contraction in mice and guinea pigs in vitro but fails to influence morphine inhibition of mouse small intestinal transit by the oral route.
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spelling pubmed-31086752011-06-21 Effects of casoxin 4 on morphine inhibition of small animal intestinal contractility and gut transit in the mouse Patten, Glen S Head, Richard J Abeywardena, Mahinda Y Clin Exp Gastroenterol Original Research BACKGROUND AND AIMS: Chronic opioid analgesia has the debilitating side-effect of constipation in human patients. The major aims of this study were to: 1) characterize the opioid-specific antagonism of morphine-induced inhibition of electrically driven contraction of the small intestine of mice, rats, and guinea pigs; and 2) test if the oral delivery of small milk-derived opioid antagonist peptides could block morphine-induced inhibition of intestinal transit in mice. METHODS: Mouse, rat, and guinea pig intact ileal sections were electrically stimulated to contract and inhibited with morphine in vitro. Morphine inhibition was then blocked by opioid subtype antagonists in the mouse and guinea pig. Using a polymeric dye, Poly R-478, the opioid antagonists casoxin 4 and lactoferroxin A were tested orally for blocking activity of morphine inhibition of gut transit in vivo by single or double gavage techniques. RESULTS: The guinea pig tissue was more sensitive to morphine inhibition compared with the mouse or the rat (IC(50) [half maximal inhibitory concentration] values as nmol/L ± SEM were 34 ± 3, 230 ± 13, and 310 ± 14 respectively) (P < 0.01). The inhibitory influence of opioid agonists (IC(50)) in electrically driven ileal mouse preparations were DADLE ([D-Ala(2), D-Leu(5)]-enkephalin) ≥ met-enkephalin ≥ dynorphin A ≥ DAMGO ([D-Ala(2), N-Me-Phe(4), Glyol(5)]-enkephalin) > morphine > morphiceptin as nmol/L 13.9, 17.3, 19.5, 23.3, 230, and 403 respectively. The mouse demonstrated predominantly κ- and δ-opioid receptor activity with a smaller μ-opioid receptor component. Both mouse and guinea pig tissue were sensitive to casoxin 4 antagonism of morphine inhibition of contraction. In contrast to naloxone, relatively high oral doses of the μ-opioid receptor antagonists, casoxin 4 and lactoferroxin A, applied before and after morphine injection were unable to antagonize morphine inhibition of gut transit. CONCLUSIONS: Casoxin 4 reverses morphine-induced inhibition of contraction in mice and guinea pigs in vitro but fails to influence morphine inhibition of mouse small intestinal transit by the oral route. Dove Medical Press 2011-02-10 /pmc/articles/PMC3108675/ /pubmed/21694869 http://dx.doi.org/10.2147/CEG.S16161 Text en © 2011 Patten et al, publisher and licensee Dove Medical Press Ltd. This is an Open Access article which permits unrestricted noncommercial use, provided the original work is properly cited.
spellingShingle Original Research
Patten, Glen S
Head, Richard J
Abeywardena, Mahinda Y
Effects of casoxin 4 on morphine inhibition of small animal intestinal contractility and gut transit in the mouse
title Effects of casoxin 4 on morphine inhibition of small animal intestinal contractility and gut transit in the mouse
title_full Effects of casoxin 4 on morphine inhibition of small animal intestinal contractility and gut transit in the mouse
title_fullStr Effects of casoxin 4 on morphine inhibition of small animal intestinal contractility and gut transit in the mouse
title_full_unstemmed Effects of casoxin 4 on morphine inhibition of small animal intestinal contractility and gut transit in the mouse
title_short Effects of casoxin 4 on morphine inhibition of small animal intestinal contractility and gut transit in the mouse
title_sort effects of casoxin 4 on morphine inhibition of small animal intestinal contractility and gut transit in the mouse
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3108675/
https://www.ncbi.nlm.nih.gov/pubmed/21694869
http://dx.doi.org/10.2147/CEG.S16161
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