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Development of Novel Small-Molecule Targeting SCN1A-Associated Severe Myoclonic Epilepsy of Infancy

Authors
 Kim, Dong Gun  ;  Hwang, Kyu-Seok  ;  Ahn, Se Hwan  ;  Kim, Seong Soon  ;  Son, Yuji  ;  Park, Sung Bum  ;  Jung, Won Hoon  ;  Shin, Dae-Seop  ;  Cho, Sung Hee  ;  Choi, Byeong Wook  ;  Kim, Pyeongkeun  ;  Heo, Yerim  ;  Kim, Minhee  ;  Yang, Jung Yoon  ;  Lee, Kyeong-Ryoon  ;  Lee, Hyang-Ae  ;  Kim, Jihun  ;  Kang, Hoon-Chul  ;  Kim, Ki Young  ;  Bae, Myung Ae  ;  Ahn, Jin Hee 
Citation
 JOURNAL OF MEDICINAL CHEMISTRY, Vol.69(3) : 3362-3377, 2026-02 
Journal Title
JOURNAL OF MEDICINAL CHEMISTRY
ISSN
 0022-2623 
Issue Date
2026-02
MeSH
Animals ; Anticonvulsants* / chemical synthesis ; Anticonvulsants* / chemistry ; Anticonvulsants* / pharmacokinetics ; Anticonvulsants* / pharmacology ; Anticonvulsants* / therapeutic use ; Disease Models, Animal ; Epilepsies, Myoclonic* / drug therapy ; Epilepsies, Myoclonic* / genetics ; Epilepsies, Myoclonic* / metabolism ; Humans ; Mice ; Mice, Knockout ; NAV1.1 Voltage-Gated Sodium Channel* / genetics ; NAV1.1 Voltage-Gated Sodium Channel* / metabolism ; Oxadiazoles* / chemistry ; Oxadiazoles* / pharmacology ; Oxadiazoles* / therapeutic use ; Small Molecule Libraries* / chemistry ; Small Molecule Libraries* / pharmacology ; Small Molecule Libraries* / therapeutic use ; Structure-Activity Relationship ; Zebrafish
Abstract
Severe myoclonic epilepsy of infancy (SMEI, Dravet syndrome), which is mainly caused by the SCN1A mutation, is a severe epileptic encephalopathy that manifests in infancy and leads to intractable seizures and developmental impairment. To discover new therapeutic chemotypes, we established a Nav1.1 (scn1lab) KO zebrafish model for chemical screening and identified novel 1,3,4-oxadiazol-2(3H)-one derivatives. Among them, compound 20e showed the most potent antiseizure efficacy in zebrafish behavioral assays and significantly reduced locomotion-related seizure parameters compared with repositioned drugs. In SCN1A +/- mice, 20e reduced seizure severity, delayed onset, and suppressed hyperactivity. Notably, 20e normalized pathological spike and burst activity in SMEI patient-derived iPSC neurons. Mechanistically, 20e appears to elevate 5-HT levels via TPH2 upregulation. It demonstrated reasonable BBB penetration, favorable oral PK, and good safety without notable hERG inhibition, cytotoxicity, mutagenicity, or acute toxicity. Taken together, compound 20e shows promise as a therapeutic agent for SMEI.
Files in This Item:
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DOI
10.1021/acs.jmedchem.5c03293
Appears in Collections:
1. College of Medicine (의과대학) > Dept. of Pediatrics (소아과학교실) > 1. Journal Papers
Yonsei Authors
Kang, Hoon Chul(강훈철) ORCID logo https://orcid.org/0000-0002-3659-8847
URI
https://ir.ymlib.yonsei.ac.kr/handle/22282913/211133
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