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Characterization of Vixotrigine, a Broad-Spectrum Voltage-Gated Sodium Channel Blocker.
- Source :
-
Molecular pharmacology [Mol Pharmacol] 2021 Jan; Vol. 99 (1), pp. 49-59. - Publication Year :
- 2021
-
Abstract
- Voltage-gated sodium channels (Navs) are promising targets for analgesic and antiepileptic therapies. Although specificity between Nav subtypes may be desirable to target specific neural types, such as nociceptors in pain, many broadly acting Nav inhibitors are clinically beneficial in neuropathic pain and epilepsy. Here, we present the first systematic characterization of vixotrigine, a Nav blocker. Using recombinant systems, we find that vixotrigine potency is enhanced in a voltage- and use-dependent manner, consistent with a state-dependent block of Navs. Furthermore, we find that vixotrigine potently inhibits sodium currents produced by both peripheral and central nervous system Nav subtypes, with use-dependent IC <subscript>50</subscript> values between 1.76 and 5.12 μM. Compared with carbamazepine, vixotrigine shows higher potency and more profound state-dependent inhibition but a similar broad spectrum of action distinct from Nav1.7- and Nav1.8-specific blockers. We find that vixotrigine rapidly inhibits Navs and prolongs recovery from the fast-inactivated state. In native rodent dorsal root ganglion sodium channels, we find that vixotrigine shifts steady-state inactivation curves. Based on these results, we conclude that vixotrigine is a broad-spectrum, state-dependent Nav blocker. SIGNIFICANCE STATEMENT: Vixotrigine blocks both peripheral and central voltage-gated sodium channel subtypes. Neurophysiological approaches in recombinant systems and sensory neurons suggest this block is state-dependent.<br />Competing Interests: C. Hinckley, M. Hajos, and H. Naik are/were employees of and own stock/stock options in Biogen. Y. Kuryshev, A. Sers, A. Barre, and B. Buisson have no conflicts of interest to declare.<br /> (Copyright © 2020 by The Author(s).)
- Subjects :
- Animals
CHO Cells
Cricetinae
Cricetulus
Dose-Response Relationship, Drug
Female
Ganglia, Spinal drug effects
Ganglia, Spinal physiology
HEK293 Cells
Humans
Male
Phenyl Ethers chemistry
Proline chemistry
Proline metabolism
Proline pharmacology
Rats
Rats, Sprague-Dawley
Voltage-Gated Sodium Channel Blockers chemistry
Voltage-Gated Sodium Channels chemistry
Phenyl Ethers metabolism
Phenyl Ethers pharmacology
Proline analogs & derivatives
Voltage-Gated Sodium Channel Blockers metabolism
Voltage-Gated Sodium Channel Blockers pharmacology
Voltage-Gated Sodium Channels physiology
Subjects
Details
- Language :
- English
- ISSN :
- 1521-0111
- Volume :
- 99
- Issue :
- 1
- Database :
- MEDLINE
- Journal :
- Molecular pharmacology
- Publication Type :
- Academic Journal
- Accession number :
- 33298520
- Full Text :
- https://doi.org/10.1124/molpharm.120.000079