TY - JOUR
T1 - Severe neonatal epileptic encephalopathy and KCNQ2 mutation
T2 - Neuropathological substrate?
AU - Dalen Meurs-van der Schoor, Charlotte
AU - van Weissenbruch, Mirjam
AU - van Kempen, Marjan
AU - Bugiani, Marianna
AU - Aronica, Eleonora
AU - Ronner, Hanneke
AU - Vermeulen, R. Jeroen
PY - 2014/12/1
Y1 - 2014/12/1
N2 - Background: Neonatal convulsions are clinical manifestations in a heterogeneous group of disorders with different etiology and outcome. They are attributed to several genetic causes. Methods: We describe a patient with intractable neonatal seizures who died from respiratory compromise during a status epilepticus. Results: This case report provides electroencephalogram (EEG), MRI, genetic analysis, and neuropathological data. Genetic analysis revealed a de novo heterozygous missense mutation in the KCNQ2 gene, which encodes a subunit of a voltage-gated potassium channel. KCNQ2 gene mutation is associated with intractable neonatal seizures. EEG, MRI, data as well as mutation analysis have been described in other KCNQ2 cases. Post-mortem neuropathological investigation revealed mild malformation of cortical development with increased heterotopic neurons in the deep white matter compared to an age-matched control subject. The new finding of this study is the combination of a KCNQ2 mutation and the cortical abnormalities. Conclusion: KCNQ2 mutations should be considered in neonates with refractory epilepsy of unknown cause. The mild cortical malformation is an important new finding, though it remains unknown whether these cortical abnormalities are due to the KCNQ2 mutation or are secondary to the refractory seizures.
AB - Background: Neonatal convulsions are clinical manifestations in a heterogeneous group of disorders with different etiology and outcome. They are attributed to several genetic causes. Methods: We describe a patient with intractable neonatal seizures who died from respiratory compromise during a status epilepticus. Results: This case report provides electroencephalogram (EEG), MRI, genetic analysis, and neuropathological data. Genetic analysis revealed a de novo heterozygous missense mutation in the KCNQ2 gene, which encodes a subunit of a voltage-gated potassium channel. KCNQ2 gene mutation is associated with intractable neonatal seizures. EEG, MRI, data as well as mutation analysis have been described in other KCNQ2 cases. Post-mortem neuropathological investigation revealed mild malformation of cortical development with increased heterotopic neurons in the deep white matter compared to an age-matched control subject. The new finding of this study is the combination of a KCNQ2 mutation and the cortical abnormalities. Conclusion: KCNQ2 mutations should be considered in neonates with refractory epilepsy of unknown cause. The mild cortical malformation is an important new finding, though it remains unknown whether these cortical abnormalities are due to the KCNQ2 mutation or are secondary to the refractory seizures.
KW - Cortical dysplasia
KW - Ion channel gene defect
KW - KCNQ2 mutation
KW - MRI
KW - Neonatal
KW - Neonatal seizures
UR - http://www.scopus.com/inward/record.url?scp=84952004893&partnerID=8YFLogxK
U2 - 10.3389/fped.2014.00136
DO - 10.3389/fped.2014.00136
M3 - Article
AN - SCOPUS:84952004893
SN - 2296-2360
VL - 2
JO - Frontiers in Pediatrics
JF - Frontiers in Pediatrics
IS - DEC
M1 - 136
ER -