Epilepsy is a disease characterized by abnormal brain activity and a predisposition to generate epileptic seizures, leading to neurobiological, cognitive, psychological, social, and economic impacts for the patient. There are several known causes for epilepsy; one of them is the malfunction of ion channels, resulting from mutations. Voltage-gated sodium channels (NaV) play an essential role in the generation and propagation of action potential, and malfunction caused by mutations can induce irregular neuronal activity. That said, several genetic variations in NaV channels have been described and associated with epilepsy. These mutations can affect channel kinetics, modifying channel activation, inactivation, recovery from inactivation, and/...
Inherited and sporadic mutations in genes encoding for brain ion channels, affecting membrane expres...
AbstractVoltage-gated Na+ channels are the workhorses of spike generation and propagation in excitab...
Human hereditary epilepsy has been found related to ion channel mutations in voltage-gated channels ...
Genetic epilepsy occurs as a result of mutations in either a single gene or an interplay of differen...
International audienceVoltage-gated ion channels play a pivotal role in cell signaling. They are res...
© 2013 Dr. Megan Kate OlivaPublications included in thesis:Oliva, M., Berkovic, S. F. & Petrou, S. (...
Studies of genetic forms of epilepsy, chronic pain, and migraine caused by mutations in ion channels...
identified in families with generalized epilepsy with febrile seizures plus (GEFS+). A novel mutatio...
‘Channelopathies’, or mutations in ion channels, are long-established causes of epilepsy. Comprehens...
Variants implicated in childhood epilepsy have been identified in all four voltage-gated sodium chan...
Fulltext embargoed for: 12 months post date of publicationVoltage-gated sodium channels (VGSCs) are ...
Variants implicated in childhood epilepsy have been identified in all four voltage-gated sodium chan...
Voltage-gated sodium channels are pore-forming transmembrane proteins that selectively allow sodium ...
In the past decade, hundreds of mutations have been found in the SCN1A (sodium voltage-gated channel...
OBJECTIVE: Voltage-gated sodium channels (SCNs) share similar amino acid sequence, structure, and fu...
Inherited and sporadic mutations in genes encoding for brain ion channels, affecting membrane expres...
AbstractVoltage-gated Na+ channels are the workhorses of spike generation and propagation in excitab...
Human hereditary epilepsy has been found related to ion channel mutations in voltage-gated channels ...
Genetic epilepsy occurs as a result of mutations in either a single gene or an interplay of differen...
International audienceVoltage-gated ion channels play a pivotal role in cell signaling. They are res...
© 2013 Dr. Megan Kate OlivaPublications included in thesis:Oliva, M., Berkovic, S. F. & Petrou, S. (...
Studies of genetic forms of epilepsy, chronic pain, and migraine caused by mutations in ion channels...
identified in families with generalized epilepsy with febrile seizures plus (GEFS+). A novel mutatio...
‘Channelopathies’, or mutations in ion channels, are long-established causes of epilepsy. Comprehens...
Variants implicated in childhood epilepsy have been identified in all four voltage-gated sodium chan...
Fulltext embargoed for: 12 months post date of publicationVoltage-gated sodium channels (VGSCs) are ...
Variants implicated in childhood epilepsy have been identified in all four voltage-gated sodium chan...
Voltage-gated sodium channels are pore-forming transmembrane proteins that selectively allow sodium ...
In the past decade, hundreds of mutations have been found in the SCN1A (sodium voltage-gated channel...
OBJECTIVE: Voltage-gated sodium channels (SCNs) share similar amino acid sequence, structure, and fu...
Inherited and sporadic mutations in genes encoding for brain ion channels, affecting membrane expres...
AbstractVoltage-gated Na+ channels are the workhorses of spike generation and propagation in excitab...
Human hereditary epilepsy has been found related to ion channel mutations in voltage-gated channels ...