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Discovery of Prostamide F(2α) and Its Role in Inflammatory Pain and Dorsal Horn Nociceptive Neuron Hyperexcitability

It was suggested that endocannabinoids are metabolized by cyclooxygenase (COX)-2 in the spinal cord of rats with kaolin/λ-carrageenan-induced knee inflammation, and that this mechanism contributes to the analgesic effects of COX-2 inhibitors in this experimental model. We report the development of a...

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Autores principales: Gatta, Luisa, Piscitelli, Fabiana, Giordano, Catia, Boccella, Serena, Lichtman, Aron, Maione, Sabatino, Di Marzo, Vincenzo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3283613/
https://www.ncbi.nlm.nih.gov/pubmed/22363560
http://dx.doi.org/10.1371/journal.pone.0031111
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author Gatta, Luisa
Piscitelli, Fabiana
Giordano, Catia
Boccella, Serena
Lichtman, Aron
Maione, Sabatino
Di Marzo, Vincenzo
author_facet Gatta, Luisa
Piscitelli, Fabiana
Giordano, Catia
Boccella, Serena
Lichtman, Aron
Maione, Sabatino
Di Marzo, Vincenzo
author_sort Gatta, Luisa
collection PubMed
description It was suggested that endocannabinoids are metabolized by cyclooxygenase (COX)-2 in the spinal cord of rats with kaolin/λ-carrageenan-induced knee inflammation, and that this mechanism contributes to the analgesic effects of COX-2 inhibitors in this experimental model. We report the development of a specific method for the identification of endocannabinoid COX-2 metabolites, its application to measure the levels of these compounds in tissues, and the finding of prostamide F(2α) (PMF(2α)) in mice with knee inflammation. Whereas the levels of spinal endocannabinoids were not significantly altered by kaolin/λ-carrageenan-induced knee inflammation, those of the COX-2 metabolite of AEA, PMF(2α), were strongly elevated. The formation of PMF(2α) was reduced by indomethacin (a non-selective COX inhibitor), NS-398 (a selective COX-2 inhibitor) and SC-560 (a selective COX-1 inhibitor). In healthy mice, spinal application of PMF(2α) increased the firing of nociceptive (NS) neurons, and correspondingly reduced the threshold of paw withdrawal latency (PWL). These effects were attenuated by the PMF(2α) receptor antagonist AGN211336, but not by the FP receptor antagonist AL8810. Also prostaglandin F(2α) increased NS neuron firing and reduced the threshold of PWL in healthy mice, and these effects were antagonized by AL8810, and not by AGN211336. In mice with kaolin/λ-carrageenan-induced knee inflammation, AGN211336, but not AL8810, reduced the inflammation-induced NS neuron firing and reduction of PWL. These findings suggest that inflammation-induced, and prostanoid-mediated, enhancement of dorsal horn NS neuron firing stimulates the production of spinal PMF(2α), which in turn contributes to further NS neuron firing and pain transmission by activating specific receptors.
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spelling pubmed-32836132012-02-23 Discovery of Prostamide F(2α) and Its Role in Inflammatory Pain and Dorsal Horn Nociceptive Neuron Hyperexcitability Gatta, Luisa Piscitelli, Fabiana Giordano, Catia Boccella, Serena Lichtman, Aron Maione, Sabatino Di Marzo, Vincenzo PLoS One Research Article It was suggested that endocannabinoids are metabolized by cyclooxygenase (COX)-2 in the spinal cord of rats with kaolin/λ-carrageenan-induced knee inflammation, and that this mechanism contributes to the analgesic effects of COX-2 inhibitors in this experimental model. We report the development of a specific method for the identification of endocannabinoid COX-2 metabolites, its application to measure the levels of these compounds in tissues, and the finding of prostamide F(2α) (PMF(2α)) in mice with knee inflammation. Whereas the levels of spinal endocannabinoids were not significantly altered by kaolin/λ-carrageenan-induced knee inflammation, those of the COX-2 metabolite of AEA, PMF(2α), were strongly elevated. The formation of PMF(2α) was reduced by indomethacin (a non-selective COX inhibitor), NS-398 (a selective COX-2 inhibitor) and SC-560 (a selective COX-1 inhibitor). In healthy mice, spinal application of PMF(2α) increased the firing of nociceptive (NS) neurons, and correspondingly reduced the threshold of paw withdrawal latency (PWL). These effects were attenuated by the PMF(2α) receptor antagonist AGN211336, but not by the FP receptor antagonist AL8810. Also prostaglandin F(2α) increased NS neuron firing and reduced the threshold of PWL in healthy mice, and these effects were antagonized by AL8810, and not by AGN211336. In mice with kaolin/λ-carrageenan-induced knee inflammation, AGN211336, but not AL8810, reduced the inflammation-induced NS neuron firing and reduction of PWL. These findings suggest that inflammation-induced, and prostanoid-mediated, enhancement of dorsal horn NS neuron firing stimulates the production of spinal PMF(2α), which in turn contributes to further NS neuron firing and pain transmission by activating specific receptors. Public Library of Science 2012-02-21 /pmc/articles/PMC3283613/ /pubmed/22363560 http://dx.doi.org/10.1371/journal.pone.0031111 Text en Gatta et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Gatta, Luisa
Piscitelli, Fabiana
Giordano, Catia
Boccella, Serena
Lichtman, Aron
Maione, Sabatino
Di Marzo, Vincenzo
Discovery of Prostamide F(2α) and Its Role in Inflammatory Pain and Dorsal Horn Nociceptive Neuron Hyperexcitability
title Discovery of Prostamide F(2α) and Its Role in Inflammatory Pain and Dorsal Horn Nociceptive Neuron Hyperexcitability
title_full Discovery of Prostamide F(2α) and Its Role in Inflammatory Pain and Dorsal Horn Nociceptive Neuron Hyperexcitability
title_fullStr Discovery of Prostamide F(2α) and Its Role in Inflammatory Pain and Dorsal Horn Nociceptive Neuron Hyperexcitability
title_full_unstemmed Discovery of Prostamide F(2α) and Its Role in Inflammatory Pain and Dorsal Horn Nociceptive Neuron Hyperexcitability
title_short Discovery of Prostamide F(2α) and Its Role in Inflammatory Pain and Dorsal Horn Nociceptive Neuron Hyperexcitability
title_sort discovery of prostamide f(2α) and its role in inflammatory pain and dorsal horn nociceptive neuron hyperexcitability
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3283613/
https://www.ncbi.nlm.nih.gov/pubmed/22363560
http://dx.doi.org/10.1371/journal.pone.0031111
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