Key result
A novel double mutation in SCN5A (V232I and L1308F) sensitized cardiac sodium channels to lidocaine, causing 73.0% use-dependent inhibition compared to 18.2% in wild-type channels.
Why the study?
Does lidocaine exert a differential effect on I(Na) in V232I+L1308F mutant cardiac sodium channels compared to wild-type?
Case Report (n=1)
Does lidocaine exert a differential effect on I(Na) in V232I+L1308F mutant cardiac sodium channels compared to wild-type?
Absolute Event Rate: 73% vs 18.23%
The V232I and L1308F double mutation in SCN5A sensitizes the cardiac sodium channel to lidocaine, causing potent use-dependent block and unmasking a Brugada syndrome phenotype.
Alerts clinicians to potential lidocaine sensitivity in rare SCN5A variants; leaves open whether this extends to clinical Brugada unmasking.
Brugada syndrome has been linked to mutations in SCN5A. Agents that dissociate slowly from the sodium channel such as flecainide and ajmaline unmask the Brugada syndrome electrocardiogram and precipitate ventricular tachycardia/fibrillation. Lidocaine, an agent with rapid dissociation kinetics, has previously been shown to exert no effect in patients with Brugada syndrome. We characterized a novel double mutation of SCN5A (V232I in DI-S4+L1308F in DIII-S4) identified in a rare case of lidocaine (1 mg/kg)-induced Brugada syndrome. We studied lidocaine blockade of I(Na) generated by wild-type and V232I+L1308F mutant cardiac sodium channels expressed in mammalian TSA201 cells using patch clamp techniques. Despite no significant difference in steady-state gating parameters between V232I+L1308F and wild-type sodium currents at baseline, use-dependent inhibition of I(Na) by lidocaine was more pronounced in V232I+L1308F versus wild-type (73.0+/-0.1% versus 18.23+/-0.04% at 10 micromol/L measured at 10 Hz, respectively). A dose of 10 micromol/L lidocaine also caused a more negative shift of steady-state inactivation in V232I+L1308F versus wild-type (-14.1+/-0.3 mV and -4.8+/-0.3 mV, respectively). The individual mutations produced a much less accentuated effect. We report the first case of lidocaine-induced Brugada electrocardiogram phenotype. The double mutation in SCN5A, V232I, and L1308F alters the affinity of the cardiac sodium channel for lidocaine such that the drug assumes Class IC characteristics with potent use-dependent block of the sodium channel. Our results demonstrate an additive effect of the 2 missense mutations to sensitize the sodium channel to lidocaine. These findings suggest caution when treating patients carrying such genetic variations with Class I antiarrhythmic drugs.
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Barajas-Martínez et al. (2008) conducted a case report in Brugada syndrome (n=1). Lidocaine vs. Wild-type sodium channels was evaluated on Use-dependent inhibition of I(Na) by lidocaine at 10 micromol/L measured at 10 Hz. A novel double mutation in SCN5A (V232I and L1308F) sensitized cardiac sodium channels to lidocaine, causing 73.0% use-dependent inhibition compared to 18.2% in wild-type channels.
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