State-dependent sodium channel blockers are often prescribed to treat cardiac arrhythmias, but many sodium channel blockers are known to have pro-arrhythmic side effects. While the anti and proarrhythmic potential of a sodium channel blocker is thought to depend on the characteristics of its rate-dependent block, the mechanisms linking these two attributes are unclear. Furthermore, how specific properties of rate-dependent block arise from the binding kinetics of a particular drug is poorly understood. Here, we examine the rate-dependent effects of the sodium channel blocker lidocaine by constructing and analyzing a novel drug-channel interaction model. First, we identify the predominant mode of lidocaine binding in a 24 variable Markov mod...
AbstractWhen depolarized from typical resting membrane potentials (Vrest ∼ −90mV), cardiac sodium (N...
Mexiletine and lidocaine are widely used class IB anti-arrhythmic drugs that are considered to act b...
The state-dependent binding of class I antiarrhythmic drugs to a receptor associated with the cardia...
ii A Markov model of the cardiac sodium channel is presented. The model is similar to the sodium cha...
The recovery of the sodium channel from blockade by local anesthetic antiarrhythmic drugs is voltage...
We have identified two kinetically distinct modes of block, by lidocaine, of cardiac sodium channels...
Lidocaine is a drug that blocks the sodium channel in a pH, frequency and concentration dependent ma...
Lidocaine is a class Ib antiarrythmic drug that acts blocking the fast sodium current. In this work,...
Lidocaine block of the cardiac sodium channel is believed to be primarily a function of channel stat...
Lidocaine is a widely used local anesthetic and antiarrhythmic drug that is believed to exert its cl...
1. The interaction of lidocaine-like local anaesthetics with voltage-operated sodium channels is tra...
Lidocaine is a class I antiarrhytmic drug that blocks the sodium channels. This drug is a tertiary a...
The effects of lidocaine on sodium current in cardiac myocytes isolated from cat and guinea pig were...
Mexiletine and lidocaine are widely used class IB anti-arrhythmic drugs that are considered to act b...
We have studied the block by lidocaine and its quaternary derivative, QX-314, of single, batrachotox...
AbstractWhen depolarized from typical resting membrane potentials (Vrest ∼ −90mV), cardiac sodium (N...
Mexiletine and lidocaine are widely used class IB anti-arrhythmic drugs that are considered to act b...
The state-dependent binding of class I antiarrhythmic drugs to a receptor associated with the cardia...
ii A Markov model of the cardiac sodium channel is presented. The model is similar to the sodium cha...
The recovery of the sodium channel from blockade by local anesthetic antiarrhythmic drugs is voltage...
We have identified two kinetically distinct modes of block, by lidocaine, of cardiac sodium channels...
Lidocaine is a drug that blocks the sodium channel in a pH, frequency and concentration dependent ma...
Lidocaine is a class Ib antiarrythmic drug that acts blocking the fast sodium current. In this work,...
Lidocaine block of the cardiac sodium channel is believed to be primarily a function of channel stat...
Lidocaine is a widely used local anesthetic and antiarrhythmic drug that is believed to exert its cl...
1. The interaction of lidocaine-like local anaesthetics with voltage-operated sodium channels is tra...
Lidocaine is a class I antiarrhytmic drug that blocks the sodium channels. This drug is a tertiary a...
The effects of lidocaine on sodium current in cardiac myocytes isolated from cat and guinea pig were...
Mexiletine and lidocaine are widely used class IB anti-arrhythmic drugs that are considered to act b...
We have studied the block by lidocaine and its quaternary derivative, QX-314, of single, batrachotox...
AbstractWhen depolarized from typical resting membrane potentials (Vrest ∼ −90mV), cardiac sodium (N...
Mexiletine and lidocaine are widely used class IB anti-arrhythmic drugs that are considered to act b...
The state-dependent binding of class I antiarrhythmic drugs to a receptor associated with the cardia...