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  • A human Dravet syndrome model from patient induced pluripotent stem cells.

A human Dravet syndrome model from patient induced pluripotent stem cells.

Molecular brain (2013-05-04)
Norimichi Higurashi, Taku Uchida, Christoph Lossin, Yoshio Misumi, Yohei Okada, Wado Akamatsu, Yoichi Imaizumi, Bo Zhang, Kazuki Nabeshima, Masayuki X Mori, Shutaro Katsurabayashi, Yukiyoshi Shirasaka, Hideyuki Okano, Shinichi Hirose
摘要

Dravet syndrome is a devastating infantile-onset epilepsy syndrome with cognitive deficits and autistic traits caused by genetic alterations in SCN1A gene encoding the α-subunit of the voltage-gated sodium channel Na(v)1.1. Disease modeling using patient-derived induced pluripotent stem cells (iPSCs) can be a powerful tool to reproduce this syndrome's human pathology. However, no such effort has been reported to date. We here report a cellular model for DS that utilizes patient-derived iPSCs. We generated iPSCs from a Dravet syndrome patient with a c.4933C>T substitution in SCN1A, which is predicted to result in truncation in the fourth homologous domain of the protein (p.R1645*). Neurons derived from these iPSCs were primarily GABAergic (>50%), although glutamatergic neurons were observed as a minor population (<1%). Current-clamp analyses revealed significant impairment in action potential generation when strong depolarizing currents were injected. Our results indicate a functional decline in Dravet neurons, especially in the GABAergic subtype, which supports previous findings in murine disease models, where loss-of-function in GABAergic inhibition appears to be a main driver in epileptogenesis. Our data indicate that patient-derived iPSCs may serve as a new and powerful research platform for genetic disorders, including the epilepsies.

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Sigma-Aldrich
抗GABA抗体 兔抗, affinity isolated antibody, buffered aqueous solution
Sigma-Aldrich
抗GAD67抗体,克隆1G10.2, clone 1G10.2, Chemicon®, from mouse
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单克隆抗 β-微管蛋白 III 小鼠抗, clone SDL.3D10, ascites fluid
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抗小清蛋白抗体, ascites fluid, clone PARV-19, Chemicon®
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Pan单克隆抗 钠通道 小鼠抗, ~1 mg/mL, clone K58/35, purified immunoglobulin
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抗-TRA-1-81抗体,克隆TRA-1-81, clone TRA-1-81, Chemicon®, from mouse
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Anti-SRF [Serum Response Factor] Antibody, clone 1E1, clone 1E1, from mouse