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Bifunctional peptide-based opioid agonist/nociceptin antagonist ligand for dual treatment of nociceptive and neuropathic pain
Drugs able to treat both nociceptive and neuropathic pain effectively without major side effects are lacking. We developed a bifunctional peptide-based hybrid (KGNOP1) that structurally combines a mu-opioid receptor agonist (KGOP1) with antinociceptive activity and a weak nociceptin receptor antagon...
Autores principales: | , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Wolters Kluwer
2016
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5302413/ https://www.ncbi.nlm.nih.gov/pubmed/28135212 http://dx.doi.org/10.1097/j.pain.0000000000000790 |
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author | Lagard, Camille Chevillard, Lucie Guillemyn, Karel Risède, Patricia Laplanche, Jean-Louis Spetea, Mariana Ballet, Steven Mégarbane, Bruno |
author_facet | Lagard, Camille Chevillard, Lucie Guillemyn, Karel Risède, Patricia Laplanche, Jean-Louis Spetea, Mariana Ballet, Steven Mégarbane, Bruno |
author_sort | Lagard, Camille |
collection | PubMed |
description | Drugs able to treat both nociceptive and neuropathic pain effectively without major side effects are lacking. We developed a bifunctional peptide-based hybrid (KGNOP1) that structurally combines a mu-opioid receptor agonist (KGOP1) with antinociceptive activity and a weak nociceptin receptor antagonist (KGNOP3) with anti-neuropathic pain activity. We investigated KGNOP1-related behavioral effects after intravenous administration in rats by assessing thermal nociception, cold hyperalgesia in a model of neuropathic pain induced by chronic constriction injury of the sciatic nerve, and plethysmography parameters including inspiratory time (T(I)) and minute ventilation (V(M)) in comparison to the well-known opioid analgesics, tramadol and morphine. Time-course and dose-dependent effects were investigated for all behavioral parameters to determine the effective doses 50% (ED(50)). Pain-related effects on cold hyperalgesia were markedly increased by KGNOP1 as compared to KGNOP3 and tramadol (ED(50): 0.0004, 0.32, and 12.1 μmol/kg, respectively), whereas effects on thermal nociception were significantly higher with KGNOP1 as compared to morphine (ED(50): 0.41 and 14.7 μmol/kg, respectively). KGNOP1 and KGOP1 produced a larger increase in T(I) and deleterious decrease in V(M) in comparison to morphine and tramadol (ED(50)(T(I)): 0.63, 0.52, 12.2, and 50.9 μmol/kg; ED(50)(V(M)): 0.57, 0.66, 10.6, and 50.0 μmol/kg, respectively). Interestingly, the calculated ratios of anti-neuropathic pain/antinociceptive to respiratory effects revealed that KGNOP1 was safer than tramadol (ED(50) ratio: 5.44 × 10(−3) vs 0.24) and morphine (ED(50) ratio: 0.72 vs 1.39). We conclude that KGNOP1 is able to treat both experimental neuropathic and nociceptive pain, more efficiently and safely than tramadol and morphine, respectively, and thus should be a candidate for future clinical developments. |
format | Online Article Text |
id | pubmed-5302413 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2016 |
publisher | Wolters Kluwer |
record_format | MEDLINE/PubMed |
spelling | pubmed-53024132017-02-21 Bifunctional peptide-based opioid agonist/nociceptin antagonist ligand for dual treatment of nociceptive and neuropathic pain Lagard, Camille Chevillard, Lucie Guillemyn, Karel Risède, Patricia Laplanche, Jean-Louis Spetea, Mariana Ballet, Steven Mégarbane, Bruno Pain Research Paper Drugs able to treat both nociceptive and neuropathic pain effectively without major side effects are lacking. We developed a bifunctional peptide-based hybrid (KGNOP1) that structurally combines a mu-opioid receptor agonist (KGOP1) with antinociceptive activity and a weak nociceptin receptor antagonist (KGNOP3) with anti-neuropathic pain activity. We investigated KGNOP1-related behavioral effects after intravenous administration in rats by assessing thermal nociception, cold hyperalgesia in a model of neuropathic pain induced by chronic constriction injury of the sciatic nerve, and plethysmography parameters including inspiratory time (T(I)) and minute ventilation (V(M)) in comparison to the well-known opioid analgesics, tramadol and morphine. Time-course and dose-dependent effects were investigated for all behavioral parameters to determine the effective doses 50% (ED(50)). Pain-related effects on cold hyperalgesia were markedly increased by KGNOP1 as compared to KGNOP3 and tramadol (ED(50): 0.0004, 0.32, and 12.1 μmol/kg, respectively), whereas effects on thermal nociception were significantly higher with KGNOP1 as compared to morphine (ED(50): 0.41 and 14.7 μmol/kg, respectively). KGNOP1 and KGOP1 produced a larger increase in T(I) and deleterious decrease in V(M) in comparison to morphine and tramadol (ED(50)(T(I)): 0.63, 0.52, 12.2, and 50.9 μmol/kg; ED(50)(V(M)): 0.57, 0.66, 10.6, and 50.0 μmol/kg, respectively). Interestingly, the calculated ratios of anti-neuropathic pain/antinociceptive to respiratory effects revealed that KGNOP1 was safer than tramadol (ED(50) ratio: 5.44 × 10(−3) vs 0.24) and morphine (ED(50) ratio: 0.72 vs 1.39). We conclude that KGNOP1 is able to treat both experimental neuropathic and nociceptive pain, more efficiently and safely than tramadol and morphine, respectively, and thus should be a candidate for future clinical developments. Wolters Kluwer 2016-12-08 2017-03 /pmc/articles/PMC5302413/ /pubmed/28135212 http://dx.doi.org/10.1097/j.pain.0000000000000790 Text en Copyright © 2016 The Author(s). Published by Wolters Kluwer Health, Inc. on behalf of the International Association for the Study of Pain This is an open access article distributed under the Creative Commons Attribution License 4.0 (CCBY), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. |
spellingShingle | Research Paper Lagard, Camille Chevillard, Lucie Guillemyn, Karel Risède, Patricia Laplanche, Jean-Louis Spetea, Mariana Ballet, Steven Mégarbane, Bruno Bifunctional peptide-based opioid agonist/nociceptin antagonist ligand for dual treatment of nociceptive and neuropathic pain |
title | Bifunctional peptide-based opioid agonist/nociceptin antagonist ligand for dual treatment of nociceptive and neuropathic pain |
title_full | Bifunctional peptide-based opioid agonist/nociceptin antagonist ligand for dual treatment of nociceptive and neuropathic pain |
title_fullStr | Bifunctional peptide-based opioid agonist/nociceptin antagonist ligand for dual treatment of nociceptive and neuropathic pain |
title_full_unstemmed | Bifunctional peptide-based opioid agonist/nociceptin antagonist ligand for dual treatment of nociceptive and neuropathic pain |
title_short | Bifunctional peptide-based opioid agonist/nociceptin antagonist ligand for dual treatment of nociceptive and neuropathic pain |
title_sort | bifunctional peptide-based opioid agonist/nociceptin antagonist ligand for dual treatment of nociceptive and neuropathic pain |
topic | Research Paper |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5302413/ https://www.ncbi.nlm.nih.gov/pubmed/28135212 http://dx.doi.org/10.1097/j.pain.0000000000000790 |
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