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Oncostatin M induces heat hypersensitivity by gp130-dependent sensitization of TRPV1 in sensory neurons

Oncostatin M (OSM) is a member of the interleukin-6 cytokine family and regulates eg. gene activation, cell survival, proliferation and differentiation. OSM binds to a receptor complex consisting of the ubiquitously expressed signal transducer gp130 and the ligand binding OSM receptor subunit, which...

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Autores principales: Langeslag, Michiel, Constantin, Cristina E, Andratsch, Manfred, Quarta, Serena, Mair, Norbert, Kress, Michaela
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3275481/
https://www.ncbi.nlm.nih.gov/pubmed/22196363
http://dx.doi.org/10.1186/1744-8069-7-102
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author Langeslag, Michiel
Constantin, Cristina E
Andratsch, Manfred
Quarta, Serena
Mair, Norbert
Kress, Michaela
author_facet Langeslag, Michiel
Constantin, Cristina E
Andratsch, Manfred
Quarta, Serena
Mair, Norbert
Kress, Michaela
author_sort Langeslag, Michiel
collection PubMed
description Oncostatin M (OSM) is a member of the interleukin-6 cytokine family and regulates eg. gene activation, cell survival, proliferation and differentiation. OSM binds to a receptor complex consisting of the ubiquitously expressed signal transducer gp130 and the ligand binding OSM receptor subunit, which is expressed on a specific subset of primary afferent neurons. In the present study, the effect of OSM on heat nociception was investigated in nociceptor-specific gp130 knock-out (SNS-gp130(-/-)) and gp130 floxed (gp130(fl/fl)) mice. Subcutaneous injection of pathophysiologically relevant concentrations of OSM into the hind-paw of C57BL6J wild type mice significantly reduced paw withdrawal latencies to heat stimulation. In contrast to gp130(fl/fl )mice, OSM did not induce heat hypersensitivity in vivo in SNS-gp130(-/- )mice. OSM applied at the receptive fields of sensory neurons in in vitro skin-nerve preparations showed that OSM significantly increased the discharge rate during a standard ramp-shaped heat stimulus. The capsaicin- and heat-sensitive ion channel TRPV1, expressed on a subpopulation of nociceptive neurons, has been shown to play an important role in inflammation-induced heat hypersensitivity. Stimulation of cultured dorsal root ganglion neurons with OSM resulted in potentiation of capsaicin induced ionic currents. In line with these recordings, mice with a null mutation of the TRPV1 gene did not show any signs of OSM-induced heat hypersensitivity in vivo. The present data suggest that OSM induces thermal hypersensitivity by directly sensitizing nociceptors via OSMR-gp130 receptor mediated potentiation of TRPV1.
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spelling pubmed-32754812012-02-09 Oncostatin M induces heat hypersensitivity by gp130-dependent sensitization of TRPV1 in sensory neurons Langeslag, Michiel Constantin, Cristina E Andratsch, Manfred Quarta, Serena Mair, Norbert Kress, Michaela Mol Pain Research Oncostatin M (OSM) is a member of the interleukin-6 cytokine family and regulates eg. gene activation, cell survival, proliferation and differentiation. OSM binds to a receptor complex consisting of the ubiquitously expressed signal transducer gp130 and the ligand binding OSM receptor subunit, which is expressed on a specific subset of primary afferent neurons. In the present study, the effect of OSM on heat nociception was investigated in nociceptor-specific gp130 knock-out (SNS-gp130(-/-)) and gp130 floxed (gp130(fl/fl)) mice. Subcutaneous injection of pathophysiologically relevant concentrations of OSM into the hind-paw of C57BL6J wild type mice significantly reduced paw withdrawal latencies to heat stimulation. In contrast to gp130(fl/fl )mice, OSM did not induce heat hypersensitivity in vivo in SNS-gp130(-/- )mice. OSM applied at the receptive fields of sensory neurons in in vitro skin-nerve preparations showed that OSM significantly increased the discharge rate during a standard ramp-shaped heat stimulus. The capsaicin- and heat-sensitive ion channel TRPV1, expressed on a subpopulation of nociceptive neurons, has been shown to play an important role in inflammation-induced heat hypersensitivity. Stimulation of cultured dorsal root ganglion neurons with OSM resulted in potentiation of capsaicin induced ionic currents. In line with these recordings, mice with a null mutation of the TRPV1 gene did not show any signs of OSM-induced heat hypersensitivity in vivo. The present data suggest that OSM induces thermal hypersensitivity by directly sensitizing nociceptors via OSMR-gp130 receptor mediated potentiation of TRPV1. BioMed Central 2011-12-23 /pmc/articles/PMC3275481/ /pubmed/22196363 http://dx.doi.org/10.1186/1744-8069-7-102 Text en Copyright ©2011 Langeslag et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Langeslag, Michiel
Constantin, Cristina E
Andratsch, Manfred
Quarta, Serena
Mair, Norbert
Kress, Michaela
Oncostatin M induces heat hypersensitivity by gp130-dependent sensitization of TRPV1 in sensory neurons
title Oncostatin M induces heat hypersensitivity by gp130-dependent sensitization of TRPV1 in sensory neurons
title_full Oncostatin M induces heat hypersensitivity by gp130-dependent sensitization of TRPV1 in sensory neurons
title_fullStr Oncostatin M induces heat hypersensitivity by gp130-dependent sensitization of TRPV1 in sensory neurons
title_full_unstemmed Oncostatin M induces heat hypersensitivity by gp130-dependent sensitization of TRPV1 in sensory neurons
title_short Oncostatin M induces heat hypersensitivity by gp130-dependent sensitization of TRPV1 in sensory neurons
title_sort oncostatin m induces heat hypersensitivity by gp130-dependent sensitization of trpv1 in sensory neurons
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3275481/
https://www.ncbi.nlm.nih.gov/pubmed/22196363
http://dx.doi.org/10.1186/1744-8069-7-102
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