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Meningeal Mast Cells Contribute to ATP-Induced Nociceptive Firing in Trigeminal Nerve Terminals: Direct and Indirect Purinergic Mechanisms Triggering Migraine Pain

Peripheral mechanisms of primary headaches such as a migraine remain unclear. Meningeal afferents surrounded by multiple mast cells have been suggested as a major source of migraine pain. Extracellular ATP released during migraine attacks is a likely candidate for activating meningeal afferents via...

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Autores principales: Koroleva, Ksenia, Gafurov, Oleg, Guselnikova, Valeriia, Nurkhametova, Dilyara, Giniatullina, Raisa, Sitdikova, Guzel, Mattila, Olli S., Lindsberg, Perttu J., Malm, Tarja Maarit, Giniatullin, Rashid
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6524559/
https://www.ncbi.nlm.nih.gov/pubmed/31133812
http://dx.doi.org/10.3389/fncel.2019.00195
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author Koroleva, Ksenia
Gafurov, Oleg
Guselnikova, Valeriia
Nurkhametova, Dilyara
Giniatullina, Raisa
Sitdikova, Guzel
Mattila, Olli S.
Lindsberg, Perttu J.
Malm, Tarja Maarit
Giniatullin, Rashid
author_facet Koroleva, Ksenia
Gafurov, Oleg
Guselnikova, Valeriia
Nurkhametova, Dilyara
Giniatullina, Raisa
Sitdikova, Guzel
Mattila, Olli S.
Lindsberg, Perttu J.
Malm, Tarja Maarit
Giniatullin, Rashid
author_sort Koroleva, Ksenia
collection PubMed
description Peripheral mechanisms of primary headaches such as a migraine remain unclear. Meningeal afferents surrounded by multiple mast cells have been suggested as a major source of migraine pain. Extracellular ATP released during migraine attacks is a likely candidate for activating meningeal afferents via neuronal P2X receptors. Recently, we showed that ATP also increased degranulation of resident meningeal mast cells (Nurkhametova et al., 2019). However, the contribution of ATP-induced mast cell degranulation in aggravating the migraine pain remains unknown. Here we explored the role of meningeal mast cells in the pro-nociceptive effects of extracellular ATP. The impact of mast cells on ATP mediated activation of peripheral branches of trigeminal nerves was measured electrophysiologically in the dura mater of adult wild type (WT) or mast cell deficient mice. We found that a spontaneous spiking activity in the meningeal afferents, at baseline level, did not differ in two groups. However, in WT mice, meningeal application of ATP dramatically (24.6-fold) increased nociceptive firing, peaking at frequencies around 10 Hz. In contrast, in mast cell deficient animals, ATP-induced excitation was significantly weaker (3.5-fold). Application of serotonin to meninges in WT induced strong spiking. Moreover, in WT mice, the 5-HT3 antagonist MDL-7222 inhibited not only serotonin but also the ATP induced nociceptive firing. Our data suggest that extracellular ATP activates nociceptive firing in meningeal trigeminal afferents via amplified degranulation of resident mast cells in addition to direct excitatory action on the nerve terminals. This highlights the importance of mast cell degranulation via extracellular ATP, in aggravating the migraine pain.
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spelling pubmed-65245592019-05-27 Meningeal Mast Cells Contribute to ATP-Induced Nociceptive Firing in Trigeminal Nerve Terminals: Direct and Indirect Purinergic Mechanisms Triggering Migraine Pain Koroleva, Ksenia Gafurov, Oleg Guselnikova, Valeriia Nurkhametova, Dilyara Giniatullina, Raisa Sitdikova, Guzel Mattila, Olli S. Lindsberg, Perttu J. Malm, Tarja Maarit Giniatullin, Rashid Front Cell Neurosci Neuroscience Peripheral mechanisms of primary headaches such as a migraine remain unclear. Meningeal afferents surrounded by multiple mast cells have been suggested as a major source of migraine pain. Extracellular ATP released during migraine attacks is a likely candidate for activating meningeal afferents via neuronal P2X receptors. Recently, we showed that ATP also increased degranulation of resident meningeal mast cells (Nurkhametova et al., 2019). However, the contribution of ATP-induced mast cell degranulation in aggravating the migraine pain remains unknown. Here we explored the role of meningeal mast cells in the pro-nociceptive effects of extracellular ATP. The impact of mast cells on ATP mediated activation of peripheral branches of trigeminal nerves was measured electrophysiologically in the dura mater of adult wild type (WT) or mast cell deficient mice. We found that a spontaneous spiking activity in the meningeal afferents, at baseline level, did not differ in two groups. However, in WT mice, meningeal application of ATP dramatically (24.6-fold) increased nociceptive firing, peaking at frequencies around 10 Hz. In contrast, in mast cell deficient animals, ATP-induced excitation was significantly weaker (3.5-fold). Application of serotonin to meninges in WT induced strong spiking. Moreover, in WT mice, the 5-HT3 antagonist MDL-7222 inhibited not only serotonin but also the ATP induced nociceptive firing. Our data suggest that extracellular ATP activates nociceptive firing in meningeal trigeminal afferents via amplified degranulation of resident mast cells in addition to direct excitatory action on the nerve terminals. This highlights the importance of mast cell degranulation via extracellular ATP, in aggravating the migraine pain. Frontiers Media S.A. 2019-05-10 /pmc/articles/PMC6524559/ /pubmed/31133812 http://dx.doi.org/10.3389/fncel.2019.00195 Text en Copyright © 2019 Koroleva, Gafurov, Guselnikova, Nurkhametova, Giniatullina, Sitdikova, Mattila, Lindsberg, Malm and Giniatullin. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Neuroscience
Koroleva, Ksenia
Gafurov, Oleg
Guselnikova, Valeriia
Nurkhametova, Dilyara
Giniatullina, Raisa
Sitdikova, Guzel
Mattila, Olli S.
Lindsberg, Perttu J.
Malm, Tarja Maarit
Giniatullin, Rashid
Meningeal Mast Cells Contribute to ATP-Induced Nociceptive Firing in Trigeminal Nerve Terminals: Direct and Indirect Purinergic Mechanisms Triggering Migraine Pain
title Meningeal Mast Cells Contribute to ATP-Induced Nociceptive Firing in Trigeminal Nerve Terminals: Direct and Indirect Purinergic Mechanisms Triggering Migraine Pain
title_full Meningeal Mast Cells Contribute to ATP-Induced Nociceptive Firing in Trigeminal Nerve Terminals: Direct and Indirect Purinergic Mechanisms Triggering Migraine Pain
title_fullStr Meningeal Mast Cells Contribute to ATP-Induced Nociceptive Firing in Trigeminal Nerve Terminals: Direct and Indirect Purinergic Mechanisms Triggering Migraine Pain
title_full_unstemmed Meningeal Mast Cells Contribute to ATP-Induced Nociceptive Firing in Trigeminal Nerve Terminals: Direct and Indirect Purinergic Mechanisms Triggering Migraine Pain
title_short Meningeal Mast Cells Contribute to ATP-Induced Nociceptive Firing in Trigeminal Nerve Terminals: Direct and Indirect Purinergic Mechanisms Triggering Migraine Pain
title_sort meningeal mast cells contribute to atp-induced nociceptive firing in trigeminal nerve terminals: direct and indirect purinergic mechanisms triggering migraine pain
topic Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6524559/
https://www.ncbi.nlm.nih.gov/pubmed/31133812
http://dx.doi.org/10.3389/fncel.2019.00195
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