New use for an old drug: quinidine in KCNT1-related epilepsy therapy.

Ru Liu, Lei Sun, Yunfu Wang, Qun Wang, Jianping Wu

Journal: Neurological sciences : official journal of the Italian Neurological Society and of the Italian Society of Clinical Neurophysiology 2023;44(4):1201-1206

PMID: 36437393

Abstract

KCNT1 has been known to encode a subunit of the tetrameric sodium activated potassium channel (K1.1). Pathogenic variants of KCNT1, especially gain-of-function (GOF) variants, are associated with multiple epileptic disorders which are often refractory to conventional anti-seizure medications and summarized as KCNT1-related epilepsy. Although the detailed pathogenic mechanisms of KCNT1-related epilepsy remain unknown, increasing studies attempt to find effective medications for those patients by utilizing quinidine to inhibit hyperexcitable K1.1. However, it has been shown that controversial outcomes among studies and partial success in some individuals may be due to multiple factors, such as poor blood-brain barrier (BBB) penetration, mutation-dependent manner, phenotype-genotype associations, and rational therapeutic schedule. In recent years, with higher resolution of K1.1 structure in different activation states and advanced synthetic techniques, it improves the process performance of therapy targeting at K1.1 channel to achieve more effective outcomes. Here, we systematically reviewed the study history of quinidine on KCNT1-related epilepsy and its corresponding therapeutic effects. Then, we analyzed and summarized the possible causes behind the different outcomes of the application of quinidine. Finally, we outlooked the recent advances in precision medicine treatment for KCNT1-related epilepsy.

© 2022. Fondazione Società Italiana di Neurologia.

Address: Hubei Key Laboratory of Nanomedicine for Neurodegenerative Diseases, School of Chemistry, Chemical Engineering and Life Sciences, Wuhan University of Technology, 122 Loushi Rd, Wuhan, 430070, China.; Beijing Tiantan Hospital, Capital Medical University, Beijing, 100070, China.; Advanced Innovation Center for Human Brain Protection, Capital Medical University, Beijing, 100070, China.; China National Clinical Research Center for Neurological Diseases, Beijing, 100070, China.; Department of Neurology, Henan Provincial People's Hospital, Zhengzhou University People's Hospital, Henan University People's Hospital, Zhengzhou, 450008, Henan, China.; Hubei Key Laboratory of Embryonic Stem Cell Research, Hubei University of Medicine, Shiyan, 442000, China.; Hubei Key Laboratory of Nanomedicine for Neurodegenerative Diseases, School of Chemistry, Chemical Engineering and Life Sciences, Wuhan University of Technology, 122 Loushi Rd, Wuhan, 430070, China. [email protected].; Beijing Tiantan Hospital, Capital Medical University, Beijing, 100070, China. [email protected].; Advanced Innovation Center for Human Brain Protection, Capital Medical University, Beijing, 100070, China. [email protected].; China National Clinical Research Center for Neurological Diseases, Beijing, 100070, China. [email protected].

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