Publication:
5-HT2A receptor activation and nitric oxide synthesis: A possible mechanism determining migraine attacks

dc.contributor.authorSrikiatkhachorn A.
dc.contributor.authorSuwattanasophon C.
dc.contributor.authorRuangpattanatawee U.
dc.contributor.authorPhansuwan-Pujito P.
dc.date.accessioned2021-04-05T04:33:05Z
dc.date.available2021-04-05T04:33:05Z
dc.date.issued2002
dc.date.issuedBE2545
dc.description.abstractObjective. To determine the effect of the 5-HT2A receptor in control of spinal nociception, cerebral circulation, and nitric oxide synthase (nNOS) expression in trigeminovascular neurons. Background. The plasticity of the 5-HT2A receptor is a possible factor determining the course of migraine. Up-regulation of this receptor has been demonstrated to correlate with the increasing frequency of migraine attacks and may underlie the development of chronic daily headache. Methods. Adult male Wistar rats were divided into groups receiving the 5-HT2A agonist, 1,2,5-dimethoxy-4-iodophenyl-2-aminopropane (DOI), nitroglycerin, or normal saline. The tail flick test and chemical nociception-evoked Fos-expression in dorsal horn neurons were used as indicators of nociception. Regional cerebral blood flow was monitored using laser Doppler flowmetry. Expression of Fos and nNOS was studied using immunohistochemical method. Results. Administration of DOI led to the shortening of tail flick latency (1.3 ± 0.2 and 7.2 ± 0.6 seconds for DOI-treated and control groups, respectively). The number of Fos-immunoreactive neurons was also greater in the DOI-treated group compared with the control group. DOI also produced long-lasting cerebral hyperemia (123% of baseline value) associated with the enlargement of perivascular nNOS-immunoreactive nerve fibers and increased nNOS-immunoreactive neurons in trigeminal ganglia and trigeminal nucleus caudalis. These findings resembled those observed in the rats exposed to nitroglycerin. Conclusion. Our results suggest that activation of the 5-HT2A receptor leads to an enhancement of NO production in trigeminovascular pathway. NO may trigger migraine attacks by inducing cerebral vasodilation and sensitizing the perivascular nociceptors and central nociceptive neurons in trigeminovascular system. Up-regulation of this pronociceptive receptor can increase headache attacks and contributes to the development of chronic daily headache.
dc.format.mimetypeapplication/pdf
dc.identifier.citationHeadache. Vol 42, No.7 (2002), p.566-574
dc.identifier.doi10.1046/j.1526-4610.2002.02142.x
dc.identifier.issn178748
dc.identifier.other2-s2.0-0036651874
dc.identifier.urihttps://hdl.handle.net/20.500.14740/6726
dc.rights.holderมหาวิทยาลัยศรีนครินทรวิโรฒ
dc.subject.other1,2,5 dimethoxy 4 iodophenyl 2 aminopropane
dc.subject.otherBiological marker
dc.subject.otherGlyceryl trinitrate
dc.subject.otherNitric oxide
dc.subject.otherNitric oxide synthase
dc.subject.otherProtein fos
dc.subject.otherSerotonin 2A agonist
dc.subject.otherSerotonin 2A receptor
dc.subject.otherSodium chloride
dc.subject.otherUnclassified drug
dc.subject.otherNitric oxide
dc.subject.otherSerotonin receptor
dc.subject.otherAnimal experiment
dc.subject.otherAnimal model
dc.subject.otherAnimal tissue
dc.subject.otherArticle
dc.subject.otherBlood vessel innervation
dc.subject.otherBrain blood flow
dc.subject.otherBrain circulation
dc.subject.otherChronicity
dc.subject.otherControlled study
dc.subject.otherCorrelation analysis
dc.subject.otherDisease course
dc.subject.otherDoppler flowmetry
dc.subject.otherDrug exposure
dc.subject.otherEvoked response
dc.subject.otherHeadache
dc.subject.otherHyperemia
dc.subject.otherImmunohistochemistry
dc.subject.otherImmunoreactivity
dc.subject.otherMale
dc.subject.otherMigraine
dc.subject.otherNerve fiber
dc.subject.otherNeuromodulation
dc.subject.otherNociception
dc.subject.otherNociceptive receptor
dc.subject.otherNonhuman
dc.subject.otherPain assessment
dc.subject.otherPriority journal
dc.subject.otherProtein determination
dc.subject.otherProtein expression
dc.subject.otherRat
dc.subject.otherRegulatory mechanism
dc.subject.otherSpinal cord dorsal horn
dc.subject.otherSpinal nerve
dc.subject.otherSynthesis
dc.subject.otherTail flick test
dc.subject.otherTrigeminal nucleus
dc.subject.otherTrigeminus ganglion
dc.subject.otherVasodilatation
dc.subject.otherAnimal
dc.subject.otherBiosynthesis
dc.subject.otherHuman
dc.subject.otherMetabolism
dc.subject.otherMigraine
dc.subject.otherPathophysiology
dc.subject.otherPhysiology
dc.subject.otherRandomization
dc.subject.otherWistar rat
dc.subject.otherAnimals
dc.subject.otherCerebrovascular Circulation
dc.subject.otherHumans
dc.subject.otherMale
dc.subject.otherMigraine Disorders
dc.subject.otherNitric Oxide
dc.subject.otherNociceptors
dc.subject.otherRandom Allocation
dc.subject.otherRats
dc.subject.otherRats, Wistar
dc.subject.otherReceptors, Serotonin
dc.title5-HT2A receptor activation and nitric oxide synthesis: A possible mechanism determining migraine attacks
dc.typeArticle
dspace.entity.typePublication
swu.datasource.scopushttps://www.scopus.com/inward/record.uri?eid=2-s2.0-0036651874&doi=10.1046%2fj.1526-4610.2002.02142.x&partnerID=40&md5=01e218d06a5542e2b5a9f256d0419f3a

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