Familial hemiplegic migraine type 3 (FHM3) is caused by gain-of-function mutations in the SCN1A gene that encodes the α1 subunit of voltage-gated NaV1.1 sodium channels. The high level of expression of NaV1.1 channels in peripheral trigeminal neurons may lead to abnormal nociceptive signaling thus contributing to migraine pain. NaV1.1 dysfunction is relevant also for other neurological disorders, foremost epilepsy and stroke that are comorbid with migraine. Here we used computer modeling to test the functional role of FHM3-mutated NaV1.1 channels in mechanisms of trigeminal pain. The activation of Aδ-fibers was studied for two algogens, ATP and 5-HT, operating through P2X3 and 5-HT3 receptors, respectively, at trigeminal nerve terminals. In...
Studies of genetic forms of epilepsy, chronic pain, and migraine caused by mutations in ion channels...
A knock-in (KI) mouse model of FHM-1 expressing the R192Q missense mutation of the Cacna1a gene codi...
Gain-of-function mutations of Na(V)1.7 have been shown to produce two distinct disorders: Na(V)1.7 m...
Trigeminal sensory neurons of transgenic knock-in (KI) mice expressing the R192Q missense mutation i...
Abstract Idiopathic trigeminal neuralgia (TN) is a debilitating pain disorder characterized by episo...
Voltage-gated sodium channels have been implicated in acute and chronic neuropathic pain. Among subt...
Several episodic neurological diseases, including familial hemiplegic migraine (FHM) and different t...
International audienceLoss of function mutations of SCN1A, the gene coding for the voltage-gated sod...
International audienceFamilial hemiplegic migraine (FHM) is an autosomal dominant inherited subtype ...
Recent scientific discoveries have confirmed a pivotal role for the NaV 1.7 voltage-gated sodium cha...
Thesis (Master's)--University of Washington, 2020Voltage-gated sodium channels (Navs) are responsibl...
Trigeminal neuralgia (TN) is a unique pain disorder characterized by intense paroxysmal facial pain ...
Background: Sodium channel Na(V)1.7 is preferentially expressed within dorsal root ganglia (DRG), tr...
Missense mutation R192Q in the CACNA1A gene causes familial hemiplegic migraine type-1 (FHM1), a mon...
A knock-in (KI) mouse model of FHM-1 expressing the R192Q missense mutation of the Cacna1a gene codi...
Studies of genetic forms of epilepsy, chronic pain, and migraine caused by mutations in ion channels...
A knock-in (KI) mouse model of FHM-1 expressing the R192Q missense mutation of the Cacna1a gene codi...
Gain-of-function mutations of Na(V)1.7 have been shown to produce two distinct disorders: Na(V)1.7 m...
Trigeminal sensory neurons of transgenic knock-in (KI) mice expressing the R192Q missense mutation i...
Abstract Idiopathic trigeminal neuralgia (TN) is a debilitating pain disorder characterized by episo...
Voltage-gated sodium channels have been implicated in acute and chronic neuropathic pain. Among subt...
Several episodic neurological diseases, including familial hemiplegic migraine (FHM) and different t...
International audienceLoss of function mutations of SCN1A, the gene coding for the voltage-gated sod...
International audienceFamilial hemiplegic migraine (FHM) is an autosomal dominant inherited subtype ...
Recent scientific discoveries have confirmed a pivotal role for the NaV 1.7 voltage-gated sodium cha...
Thesis (Master's)--University of Washington, 2020Voltage-gated sodium channels (Navs) are responsibl...
Trigeminal neuralgia (TN) is a unique pain disorder characterized by intense paroxysmal facial pain ...
Background: Sodium channel Na(V)1.7 is preferentially expressed within dorsal root ganglia (DRG), tr...
Missense mutation R192Q in the CACNA1A gene causes familial hemiplegic migraine type-1 (FHM1), a mon...
A knock-in (KI) mouse model of FHM-1 expressing the R192Q missense mutation of the Cacna1a gene codi...
Studies of genetic forms of epilepsy, chronic pain, and migraine caused by mutations in ion channels...
A knock-in (KI) mouse model of FHM-1 expressing the R192Q missense mutation of the Cacna1a gene codi...
Gain-of-function mutations of Na(V)1.7 have been shown to produce two distinct disorders: Na(V)1.7 m...