HOMEPRODUCTSCOMPANYCONTACTFAQResearchDictionaryPharmaSign Up FREE or Login

Dravet syndrome and SCN1A gene mutation related-epilepsies: cognitive impairment and its determinants.

Abstract
Some studies have demonstrated that cognitive decline occurs in Dravet syndrome, starting shortly after the onset of seizures, rapidly progressing and then plateauing within a few years. It is unclear whether children that develop the syndrome had entirely normal cognitive skills before seizure onset, since subtle impairment easily escapes recognition in small infants. It is also difficult to demonstrate whether a recognisable profile of cognitive impairment or a definite behavioural phenotype exists. No clear-cut imaging or neuropathological marker or substrate has been recognised for cognitive impairment in this syndrome. However, there are different potentially causative factors, including the specific effects on the Nav1.1 channels caused by the underlying genic or genomic defect; frequent and prolonged convulsive and non-convulsive seizures or status epilepticus; recurrent subtle ictal phenomena, such as that accompanying pronounced visual sensitivity; the use of antiepileptic drugs with cognitive side effects, especially in heavy multiple-drug therapy; and the restrictions that children with severe epilepsy inevitably undergo.
AuthorsRenzo Guerrini, Melania Falchi
JournalDevelopmental medicine and child neurology (Dev Med Child Neurol) Vol. 53 Suppl 2 Pg. 11-5 (Apr 2011) ISSN: 1469-8749 [Electronic] England
PMID21504426 (Publication Type: Journal Article, Review)
Copyright© 2011 The Author. Developmental Medicine & Child Neurology © 2011 Mac Keith Press.
Chemical References
  • Cadherins
  • NAV1.1 Voltage-Gated Sodium Channel
  • Nerve Tissue Proteins
  • PCDH10 protein, human
  • Protocadherins
  • SCN1A protein, human
  • Sodium Channels
Topics
  • Cadherins (genetics)
  • Child, Preschool
  • Cognition Disorders (complications, diagnosis, physiopathology)
  • Epilepsies, Myoclonic (complications, genetics, physiopathology)
  • Humans
  • Infant
  • NAV1.1 Voltage-Gated Sodium Channel
  • Nerve Tissue Proteins (genetics)
  • Protocadherins
  • Sodium Channels (genetics)
  • Syndrome

Join CureHunter, for free Research Interface BASIC access!

Take advantage of free CureHunter research engine access to explore the best drug and treatment options for any disease. Find out why thousands of doctors, pharma researchers and patient activists around the world use CureHunter every day.
Realize the full power of the drug-disease research graph!


Choose Username:
Email:
Password:
Verify Password:
Enter Code Shown: