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In vitro and in vivo pharmacological characterization of a neuropeptide S tetrabranched derivative

The peptide welding technology (PWT) is a novel chemical strategy that allows the synthesis of multibranched peptides with high yield, purity, and reproducibility. With this approach, a tetrabranched derivative of neuropeptide S (NPS) has been synthesized and pharmacologically characterized. The in...

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Autores principales: Ruzza, Chiara, Rizzi, Anna, Malfacini, Davide, Pulga, Alice, Pacifico, Salvatore, Salvadori, Severo, Trapella, Claudio, Reinscheid, Rainer K, Calo, Girolamo, Guerrini, Remo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BlackWell Publishing Ltd 2015
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4317238/
https://www.ncbi.nlm.nih.gov/pubmed/25692025
http://dx.doi.org/10.1002/prp2.108
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author Ruzza, Chiara
Rizzi, Anna
Malfacini, Davide
Pulga, Alice
Pacifico, Salvatore
Salvadori, Severo
Trapella, Claudio
Reinscheid, Rainer K
Calo, Girolamo
Guerrini, Remo
author_facet Ruzza, Chiara
Rizzi, Anna
Malfacini, Davide
Pulga, Alice
Pacifico, Salvatore
Salvadori, Severo
Trapella, Claudio
Reinscheid, Rainer K
Calo, Girolamo
Guerrini, Remo
author_sort Ruzza, Chiara
collection PubMed
description The peptide welding technology (PWT) is a novel chemical strategy that allows the synthesis of multibranched peptides with high yield, purity, and reproducibility. With this approach, a tetrabranched derivative of neuropeptide S (NPS) has been synthesized and pharmacologically characterized. The in vitro activity of PWT1-NPS has been studied in a calcium mobilization assay. In vivo, PWT1-NPS has been investigated in the locomotor activity (LA) and recovery of the righting reflex (RR) tests. In calcium mobilization studies, PWT1-NPS behaved as full agonist at the mouse NPS receptor (NPSR) being threefold more potent than NPS. The selective NPSR antagonists [(t)Bu-D-Gly(5)]NPS and SHA 68 displayed similar potency values against NPS and PWT1-NPS. In vivo, both NPS (1–100 pmol, i.c.v.) and PWT1-NPS (0.1–100 pmol, i.c.v.) stimulated mouse LA, with PWT1-NPS showing higher potency than NPS. In the RR assay, NPS (100 pmol, i.c.v.) was able to reduce the percentage of mice losing the RR after diazepam administration and their sleep time 5 min after the i.c.v. injection, but it was totally inactive 2 h after the injection. On the contrary, PWT1-NPS (30 pmol, i.c.v.), injected 2 h before diazepam, displayed wake-promoting effects. This PWT1-NPS stimulant effect was no longer evident in mice lacking the NPSR receptor. The PWT1 technology can be successfully applied to the NPS sequence. PWT1-NPS displayed in vitro a pharmacological profile similar to NPS. In vivo PWT1-NPS mimicked NPS effects showing higher potency and long-lasting action.
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spelling pubmed-43172382015-02-17 In vitro and in vivo pharmacological characterization of a neuropeptide S tetrabranched derivative Ruzza, Chiara Rizzi, Anna Malfacini, Davide Pulga, Alice Pacifico, Salvatore Salvadori, Severo Trapella, Claudio Reinscheid, Rainer K Calo, Girolamo Guerrini, Remo Pharmacol Res Perspect Original Articles The peptide welding technology (PWT) is a novel chemical strategy that allows the synthesis of multibranched peptides with high yield, purity, and reproducibility. With this approach, a tetrabranched derivative of neuropeptide S (NPS) has been synthesized and pharmacologically characterized. The in vitro activity of PWT1-NPS has been studied in a calcium mobilization assay. In vivo, PWT1-NPS has been investigated in the locomotor activity (LA) and recovery of the righting reflex (RR) tests. In calcium mobilization studies, PWT1-NPS behaved as full agonist at the mouse NPS receptor (NPSR) being threefold more potent than NPS. The selective NPSR antagonists [(t)Bu-D-Gly(5)]NPS and SHA 68 displayed similar potency values against NPS and PWT1-NPS. In vivo, both NPS (1–100 pmol, i.c.v.) and PWT1-NPS (0.1–100 pmol, i.c.v.) stimulated mouse LA, with PWT1-NPS showing higher potency than NPS. In the RR assay, NPS (100 pmol, i.c.v.) was able to reduce the percentage of mice losing the RR after diazepam administration and their sleep time 5 min after the i.c.v. injection, but it was totally inactive 2 h after the injection. On the contrary, PWT1-NPS (30 pmol, i.c.v.), injected 2 h before diazepam, displayed wake-promoting effects. This PWT1-NPS stimulant effect was no longer evident in mice lacking the NPSR receptor. The PWT1 technology can be successfully applied to the NPS sequence. PWT1-NPS displayed in vitro a pharmacological profile similar to NPS. In vivo PWT1-NPS mimicked NPS effects showing higher potency and long-lasting action. BlackWell Publishing Ltd 2015-02 2015-01-05 /pmc/articles/PMC4317238/ /pubmed/25692025 http://dx.doi.org/10.1002/prp2.108 Text en © 2015 The Authors. Pharmacology Research & Perspectives published by John Wiley & Sons Ltd, British Pharmacological Society and American Society for Pharmacology and Experimental Therapeutics. http://creativecommons.org/licenses/by/3.0/ This is an open access article under the terms of the Creative Commons Attribution-NonCommercial-NoDerivs License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non-commercial and no modifications or adaptations are made.
spellingShingle Original Articles
Ruzza, Chiara
Rizzi, Anna
Malfacini, Davide
Pulga, Alice
Pacifico, Salvatore
Salvadori, Severo
Trapella, Claudio
Reinscheid, Rainer K
Calo, Girolamo
Guerrini, Remo
In vitro and in vivo pharmacological characterization of a neuropeptide S tetrabranched derivative
title In vitro and in vivo pharmacological characterization of a neuropeptide S tetrabranched derivative
title_full In vitro and in vivo pharmacological characterization of a neuropeptide S tetrabranched derivative
title_fullStr In vitro and in vivo pharmacological characterization of a neuropeptide S tetrabranched derivative
title_full_unstemmed In vitro and in vivo pharmacological characterization of a neuropeptide S tetrabranched derivative
title_short In vitro and in vivo pharmacological characterization of a neuropeptide S tetrabranched derivative
title_sort in vitro and in vivo pharmacological characterization of a neuropeptide s tetrabranched derivative
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4317238/
https://www.ncbi.nlm.nih.gov/pubmed/25692025
http://dx.doi.org/10.1002/prp2.108
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