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Molecular mechanism of use-dependent calcium channel block by  phenylalkylamines: Role of inactivation | PNAS
Molecular mechanism of use-dependent calcium channel block by phenylalkylamines: Role of inactivation | PNAS

Using Lidocaine and Benzocaine to Link Sodium Channel Molecular  Conformations to State-Dependent Antiarrhythmic Drug Affinity | Circulation  Research
Using Lidocaine and Benzocaine to Link Sodium Channel Molecular Conformations to State-Dependent Antiarrhythmic Drug Affinity | Circulation Research

Use-Dependent Block by Lidocaine but Not Amitriptyline Is More Pronounced  in Tetrodotoxin (TTX)-Resistant Nav1.8 Than in TTX-Sensitive Na+ Channels |  Journal of Pharmacology and Experimental Therapeutics
Use-Dependent Block by Lidocaine but Not Amitriptyline Is More Pronounced in Tetrodotoxin (TTX)-Resistant Nav1.8 Than in TTX-Sensitive Na+ Channels | Journal of Pharmacology and Experimental Therapeutics

Pain Management - clinical application - Revise Dental
Pain Management - clinical application - Revise Dental

Ion Channel Blockade: acyclic (Guarded Receptor) and cyclic (Modulated or  Allosteric)
Ion Channel Blockade: acyclic (Guarded Receptor) and cyclic (Modulated or Allosteric)

Frontiers | Propranolol Blocks Cardiac and Neuronal Voltage-Gated Sodium  Channels
Frontiers | Propranolol Blocks Cardiac and Neuronal Voltage-Gated Sodium Channels

State-dependent block of a sodium channel. Schematic diagram based on... |  Download Scientific Diagram
State-dependent block of a sodium channel. Schematic diagram based on... | Download Scientific Diagram

Increased sodium channel use-dependent inhibition by a new potent analogue  of tocainide greatly enhances in vivo antimyotonic activity - ScienceDirect
Increased sodium channel use-dependent inhibition by a new potent analogue of tocainide greatly enhances in vivo antimyotonic activity - ScienceDirect

Use dependent & voltage dependent
Use dependent & voltage dependent

Protonation underlies tonic vs. use-dependent block | PNAS
Protonation underlies tonic vs. use-dependent block | PNAS

a,b Use-dependent block by lidocaine. I Na was measured during trains... |  Download Scientific Diagram
a,b Use-dependent block by lidocaine. I Na was measured during trains... | Download Scientific Diagram

State- and Use-Dependent Block of Muscle Nav1.4 and Neuronal Nav1.7  Voltage-Gated Na+ Channel Isoforms by Ranolazine | Molecular Pharmacology
State- and Use-Dependent Block of Muscle Nav1.4 and Neuronal Nav1.7 Voltage-Gated Na+ Channel Isoforms by Ranolazine | Molecular Pharmacology

Use dependent & voltage dependent
Use dependent & voltage dependent

Mechanisms of atrial-selective block of Na+ channels by ranolazine: I.  Experimental analysis of the use-dependent block | American Journal of  Physiology-Heart and Circulatory Physiology
Mechanisms of atrial-selective block of Na+ channels by ranolazine: I. Experimental analysis of the use-dependent block | American Journal of Physiology-Heart and Circulatory Physiology

Comparison of Gating Properties and Use-Dependent Block of Nav1.5 and  Nav1.7 Channels by Anti-Arrhythmics Mexiletine and Lidocaine | PLOS ONE
Comparison of Gating Properties and Use-Dependent Block of Nav1.5 and Nav1.7 Channels by Anti-Arrhythmics Mexiletine and Lidocaine | PLOS ONE

Differential Effects of R(-)-Mexiletine(-) mexiletine on Cloned Neuronal  and Cardiac Sodium Channel ? Subunits
Differential Effects of R(-)-Mexiletine(-) mexiletine on Cloned Neuronal and Cardiac Sodium Channel ? Subunits

Local Anesthetics | Anesthesia Key
Local Anesthetics | Anesthesia Key

Use-dependent block of TTXr Na / channels by lidocaine. Same type of... |  Download Scientific Diagram
Use-dependent block of TTXr Na / channels by lidocaine. Same type of... | Download Scientific Diagram

Use-Dependent Block by Lidocaine but Not Amitriptyline Is More Pronounced  in Tetrodotoxin (TTX)-Resistant Nav1.8 Than in TTX-Sensitive Na+ Channels |  Journal of Pharmacology and Experimental Therapeutics
Use-Dependent Block by Lidocaine but Not Amitriptyline Is More Pronounced in Tetrodotoxin (TTX)-Resistant Nav1.8 Than in TTX-Sensitive Na+ Channels | Journal of Pharmacology and Experimental Therapeutics

Use dependent & voltage dependent
Use dependent & voltage dependent

Comparison of Gating Properties and Use-Dependent Block of Nav1.5 and  Nav1.7 Channels by Anti-Arrhythmics Mexiletine and Lidocaine | PLOS ONE
Comparison of Gating Properties and Use-Dependent Block of Nav1.5 and Nav1.7 Channels by Anti-Arrhythmics Mexiletine and Lidocaine | PLOS ONE

Clinical Pharmacology of Local Anesthetics - NYSORA | NYSORA
Clinical Pharmacology of Local Anesthetics - NYSORA | NYSORA

Differential Effects of R(-)-Mexiletine(-) mexiletine on Cloned Neuronal  and Cardiac Sodium Channel ? Subunits
Differential Effects of R(-)-Mexiletine(-) mexiletine on Cloned Neuronal and Cardiac Sodium Channel ? Subunits

Rate-dependent effects of lidocaine on cardiac dynamics: Development and  analysis of a low-dimensional drug-channel interaction model | PLOS  Computational Biology
Rate-dependent effects of lidocaine on cardiac dynamics: Development and analysis of a low-dimensional drug-channel interaction model | PLOS Computational Biology