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Nitroglycerine triggers triptan-responsive cranial allodynia and trigeminal neuronal hypersensitivity

Cranial allodynia associated with spontaneous migraine is reported as either responsive to triptan treatment or to be predictive of lack of triptan efficacy. These conflicting results suggest that a single mechanism mediating the underlying neurophysiology of migraine symptoms is unlikely. The lack...

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Autores principales: Akerman, Simon, Karsan, Nazia, Bose, Pyari, Hoffmann, Jan R, Holland, Philip R, Romero-Reyes, Marcela, Goadsby, Peter J
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6308314/
https://www.ncbi.nlm.nih.gov/pubmed/30596910
http://dx.doi.org/10.1093/brain/awy313
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author Akerman, Simon
Karsan, Nazia
Bose, Pyari
Hoffmann, Jan R
Holland, Philip R
Romero-Reyes, Marcela
Goadsby, Peter J
author_facet Akerman, Simon
Karsan, Nazia
Bose, Pyari
Hoffmann, Jan R
Holland, Philip R
Romero-Reyes, Marcela
Goadsby, Peter J
author_sort Akerman, Simon
collection PubMed
description Cranial allodynia associated with spontaneous migraine is reported as either responsive to triptan treatment or to be predictive of lack of triptan efficacy. These conflicting results suggest that a single mechanism mediating the underlying neurophysiology of migraine symptoms is unlikely. The lack of a translational approach to study cranial allodynia reported in migraine patients is a limitation in dissecting potential mechanisms. Our objective was to study triptan-responsive cranial allodynia in migraine patients, and to develop an approach to studying its neural basis in the laboratory. Using nitroglycerine to trigger migraine attacks, we investigated whether cranial allodynia could be triggered experimentally, observing its response to treatment. Preclinically, we examined the cephalic response properties of central trigeminocervical neurons using extracellular recording techniques, determining changes to ongoing firing and somatosensory cranial-evoked sensitivity, in response to nitroglycerine followed by triptan treatment. Cranial allodynia was triggered alongside migraine-like headache in nearly half of subjects. Those who reported cranial allodynia accompanying their spontaneous migraine attacks were significantly more likely to have symptoms triggered than those that did not. Patients responded to treatment with aspirin or sumatriptan. Preclinically, nitroglycerine caused an increase in ongoing firing and hypersensitivity to intracranial-dural and extracranial-cutaneous (noxious and innocuous) somatosensory stimulation, reflecting signatures of central sensitization potentially mediating throbbing headache and cranial allodynia. These responses were aborted by a triptan. These data suggest that nitroglycerine can be used as an effective and reliable method to trigger cranial allodynia in subjects during evoked migraine, and the symptom is responsive to abortive triptan treatments. Preclinically, nitroglycerine activates the underlying neural mechanism of cephalic migraine symptoms, central sensitization, also predicting the clinical outcome to triptans. This supports a biological rationale that several mechanisms can mediate the underlying neurophysiology of migraine symptoms, with nitrergic-induced changes reflecting one that is relevant to spontaneous migraine in many migraineurs, whose symptoms of cranial allodynia are responsive to triptan treatment. This approach translates directly to responses in animals and is therefore a relevant platform to study migraine pathophysiology, and for use in migraine drug discovery.
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spelling pubmed-63083142019-01-07 Nitroglycerine triggers triptan-responsive cranial allodynia and trigeminal neuronal hypersensitivity Akerman, Simon Karsan, Nazia Bose, Pyari Hoffmann, Jan R Holland, Philip R Romero-Reyes, Marcela Goadsby, Peter J Brain Original Articles Cranial allodynia associated with spontaneous migraine is reported as either responsive to triptan treatment or to be predictive of lack of triptan efficacy. These conflicting results suggest that a single mechanism mediating the underlying neurophysiology of migraine symptoms is unlikely. The lack of a translational approach to study cranial allodynia reported in migraine patients is a limitation in dissecting potential mechanisms. Our objective was to study triptan-responsive cranial allodynia in migraine patients, and to develop an approach to studying its neural basis in the laboratory. Using nitroglycerine to trigger migraine attacks, we investigated whether cranial allodynia could be triggered experimentally, observing its response to treatment. Preclinically, we examined the cephalic response properties of central trigeminocervical neurons using extracellular recording techniques, determining changes to ongoing firing and somatosensory cranial-evoked sensitivity, in response to nitroglycerine followed by triptan treatment. Cranial allodynia was triggered alongside migraine-like headache in nearly half of subjects. Those who reported cranial allodynia accompanying their spontaneous migraine attacks were significantly more likely to have symptoms triggered than those that did not. Patients responded to treatment with aspirin or sumatriptan. Preclinically, nitroglycerine caused an increase in ongoing firing and hypersensitivity to intracranial-dural and extracranial-cutaneous (noxious and innocuous) somatosensory stimulation, reflecting signatures of central sensitization potentially mediating throbbing headache and cranial allodynia. These responses were aborted by a triptan. These data suggest that nitroglycerine can be used as an effective and reliable method to trigger cranial allodynia in subjects during evoked migraine, and the symptom is responsive to abortive triptan treatments. Preclinically, nitroglycerine activates the underlying neural mechanism of cephalic migraine symptoms, central sensitization, also predicting the clinical outcome to triptans. This supports a biological rationale that several mechanisms can mediate the underlying neurophysiology of migraine symptoms, with nitrergic-induced changes reflecting one that is relevant to spontaneous migraine in many migraineurs, whose symptoms of cranial allodynia are responsive to triptan treatment. This approach translates directly to responses in animals and is therefore a relevant platform to study migraine pathophysiology, and for use in migraine drug discovery. Oxford University Press 2019-01 2018-12-27 /pmc/articles/PMC6308314/ /pubmed/30596910 http://dx.doi.org/10.1093/brain/awy313 Text en © The Author(s) (2018). Published by Oxford University Press on behalf of the Guarantors of Brain. http://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Akerman, Simon
Karsan, Nazia
Bose, Pyari
Hoffmann, Jan R
Holland, Philip R
Romero-Reyes, Marcela
Goadsby, Peter J
Nitroglycerine triggers triptan-responsive cranial allodynia and trigeminal neuronal hypersensitivity
title Nitroglycerine triggers triptan-responsive cranial allodynia and trigeminal neuronal hypersensitivity
title_full Nitroglycerine triggers triptan-responsive cranial allodynia and trigeminal neuronal hypersensitivity
title_fullStr Nitroglycerine triggers triptan-responsive cranial allodynia and trigeminal neuronal hypersensitivity
title_full_unstemmed Nitroglycerine triggers triptan-responsive cranial allodynia and trigeminal neuronal hypersensitivity
title_short Nitroglycerine triggers triptan-responsive cranial allodynia and trigeminal neuronal hypersensitivity
title_sort nitroglycerine triggers triptan-responsive cranial allodynia and trigeminal neuronal hypersensitivity
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6308314/
https://www.ncbi.nlm.nih.gov/pubmed/30596910
http://dx.doi.org/10.1093/brain/awy313
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