Pathophysiology of Migraine: A Disorder of Sensory Processing
Патофизиология мигрени: расстройство сенсорной обработки
2017-02-08
SCID: 54.1/7hbm2v73
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brainstem and diencephalic systemscalcitonin gene-related peptide (CGRP)migraine pathophysiologysensory processingtrigeminal durovascular pathway
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Abstract (AI)
Plaguing humans for more than two millennia, manifest on every continent studied, and with more than one billion patients having an attack in any year, migraine stands as the sixth most common cause of disability on the planet. The pathophysiology of migraine has emerged from a historical consideration of the “humors” through mid-20th century distraction of the now defunct Vascular Theory to a clear place as a neurological disorder. It could be said there are three questions: why, how, and when? Why: migraine is largely accepted to be an inherited tendency for the brain to lose control of its inputs. How: the now classical trigeminal durovascular afferent pathway has been explored in laboratory and clinic; interrogated with immunohistochemistry to functional brain imaging to offer a roadmap of the attack. When: migraine attacks emerge due to a disorder of brain sensory processing that itself likely cycles, influenced by genetics and the environment. In the first, premonitory, phase that precedes headache, brain stem and diencephalic systems modulating afferent signals, light-photophobia or sound-phonophobia, begin to dysfunction and eventually to evolve to the pain phase and with time the resolution or postdromal phase. Understanding the biology of migraine through careful bench-based research has led to major classes of therapeutics being identified: triptans, serotonin 5-HT 1B/1D receptor agonists; gepants, calcitonin gene-related peptide (CGRP) receptor antagonists; ditans, 5-HT 1F receptor agonists, CGRP mechanisms monoclonal antibodies; and glurants, mGlu 5 modulators; with the promise of more to come. Investment in understanding migraine has been very successful and leaves us at a new dawn, able to transform its impact on a global scale, as well as understand fundamental aspects of human biology.
Key Findings
1
Migraine attacks arise from cyclical dysfunction in brain sensory processing, influenced by genetic and environmental factors.
2
Migraine is characterized as a neurological disorder involving an inherited tendency for the brain to lose control of sensory inputs.
3
Premonitory dysfunction in brainstem and diencephalic systems regulating sensory signals such as light and sound can progress to headache and postdrome phases.
4
Research into migraine biology has produced multiple therapeutic classes, including triptans, gepants, ditans, CGRP monoclonal antibodies, and mGlu5 modulators.
5
The trigeminal durovascular afferent pathway provides a mechanistic roadmap of migraine attacks, supported by laboratory and clinical studies.
Research Object
Migraine (the neurological disorder of recurrent migraine attacks)
Research Subject
The pathophysiology of migraine, specifically the inherited and cyclic dysfunction of brain sensory processing and trigeminovascular afferent signaling across the phases of a migraine attack
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2017-02-08
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