Loss of function in the Scn1a gene leads to a severe epileptic encephalopathy called Dravet syndrome (DS). Reduced excitability in cortical inhibitory neurons is thought to be the major cause of DS seizures. Here, in contrast, we show enhanced excitability in thalamic inhibitory neurons that promotes the non-convulsive seizures that are a prominent yet poorly understood feature of DS. In a mouse model of DS with a loss of function in Scn1a, reticular thalamic cells exhibited abnormally long bursts of firing caused by the downregulation of calcium-activated potassium SK channels. Our study supports a mechanism in which loss of SK activity causes the reticular thalamic neurons to become hyperexcitable and promote non-convulsive seizures in DS. We propose that reduced excitability of inhibitory neurons is not global in DS and that non-GABAergic mechanisms such as SK channels may be important targets for treatment.
Augmented Reticular Thalamic Bursting and Seizures in Scn1a-Dravet Syndrome.
Scn1a-Dravet综合征中丘脑网状核爆发增强和癫痫发作
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作者:Ritter-Makinson Stefanie, Clemente-Perez Alexandra, Higashikubo Bryan, Cho Frances S, Holden Stephanie S, Bennett Eric, Chkhaidze Ana, Eelkman Rooda Oscar H J, Cornet Marie-Coralie, Hoebeek Freek E, Yamakawa Kazuhiro, Cilio Maria Roberta, Delord Bruno, Paz Jeanne T
| 期刊: | Cell Reports | 影响因子: | 6.900 |
| 时间: | 2019 | 起止号: | 2019 Jan 2; 26(1):54-64 |
| doi: | 10.1016/j.celrep.2018.12.018 | 研究方向: | 神经科学 |
| 疾病类型: | 癫痫 | ||
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