ArticleActa pharmacologica Sinica2026
Lvguidingan inhibits Nav1.2 and epilepsy-associated SCN2A gain-of-function variants.
Article in Acta pharmacologica Sinica, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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Abstract
Voltage-gated sodium (Nav) channel Nav1.2, encoded by SCN2A, is a major determinant of neuronal excitability and an important contributor to epilepsy-associated hyperexcitability. However, small-molecule inhibitors with well-defined Nav1.2 pharmacology remain limited. Here, using an automated electrophysiological screening platform, we identified Lvguidingan (LV), an antiepileptic candidate that has entered phase II clinical evaluation in China, as a hit inhibitor of Nav1.2 and systematically characterized its pharmacological properties. Manual patch-clamp recordings showed that LV inhibited Nav1.2 and displayed differential inhibitory effects across other tested sodium channel subtypes. LV exhibited clear state- and use-dependent inhibition of Nav1.2 and shifted channel gating toward less available states. Molecular modeling and mutational analysis further identified key binding determinants underlying LV-mediated Nav1.2 inhibition. At the neuronal level, LV suppressed the firing of hippocampal neurons and reduced action potential amplitude. Importantly, LV also inhibited two epilepsy-associated SCN2A gain-of-function variants. Together, these results identify LV as a Nav1.2 inhibitor with defined biophysical and structural features and inhibitory activity against disease-associated SCN2A variants, providing new insight into the Nav1.2-related mechanism underlying the antiepileptic activity of LV.
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