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State-dependent block of wild-type and inactivation-deficient Na+ channels by flecainide
- Source :
- The Journal of General Physiology
- Publication Year :
- 2003
-
Abstract
- The antiarrhythmic agent flecainide appears beneficial for painful congenital myotonia and LQT-3/DeltaKPQ syndrome. Both diseases manifest small but persistent late Na+ currents in skeletal or cardiac myocytes. Flecainide may therefore block late Na+ currents for its efficacy. To investigate this possibility, we characterized state-dependent block of flecainide in wild-type and inactivation-deficient rNav1.4 muscle Na+ channels (L435W/L437C/A438W) expressed with beta1 subunits in Hek293t cells. The flecainide-resting block at -140 mV was weak for wild-type Na+ channels, with an estimated 50% inhibitory concentration (IC50) of 365 micro M when the cell was not stimulated for 1,000 s. At 100 micro M flecainide, brief monitoring pulses of +30 mV applied at frequencies as low as 1 per 60 s, however, produced an approximately 70% use-dependent block of peak Na+ currents. Recovery from this use-dependent block followed an exponential function, with a time constant over 225 s at -140 mV. Inactivated wild-type Na+ channels interacted with flecainide also slowly at -50 mV, with a time constant of 7.9 s. In contrast, flecainide blocked the open state of inactivation-deficient Na+ channels potently as revealed by its rapid time-dependent block of late Na+ currents. The IC50 for flecainide open-channel block at +30 mV was 0.61 micro M, right within the therapeutic plasma concentration range; on-rate and off-rate constants were 14.9 micro M-1s-1 and 12.2 s-1, respectively. Upon repolarization to -140 mV, flecainide block of inactivation-deficient Na+ channels recovered, with a time constant of 11.2 s, which was approximately 20-fold faster than that of wild-type counterparts. We conclude that flecainide directly blocks persistent late Na+ currents with a high affinity. The fast-inactivation gate, probably via its S6 docking site, may further stabilize the flecainide-receptor complex in wild-type Na+ channels.
- Subjects :
- Physiology
medicine.medical_treatment
Muscle Proteins
Pharmacology
Antiarrhythmic agent
Inhibitory postsynaptic potential
Sodium Channels
Article
Cell Line
03 medical and health sciences
0302 clinical medicine
Sodium channel blocker
medicine
Repolarization
Myocyte
Humans
state-dependent block
fast inactivation gate
Flecainide
030304 developmental biology
0303 health sciences
Dose-Response Relationship, Drug
Chemistry
Sodium channel
persistent sodium currents
Electric Stimulation
3. Good health
Electrophysiology
Mutation
Anti-Arrhythmia Agents
Ion Channel Gating
030217 neurology & neurosurgery
medicine.drug
Sodium Channel Blockers
sodium channel
Subjects
Details
- ISSN :
- 00221295
- Volume :
- 122
- Issue :
- 3
- Database :
- OpenAIRE
- Journal :
- The Journal of general physiology
- Accession number :
- edsair.doi.dedup.....627e630c13c12e47402e9edcdcfe3a19