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Voltage-gated calcium channel and voltage-gated potassium channel (cardiac) (VGCC (for voltage-gated calcium channel), VGKC (for voltage-gated potassium channel))

Target
VGCC (for voltage-gated calcium channel), VGKC (for voltage-gated potassium channel)
Molecular classification
Ion channel, Voltage-gated ion channel, Calcium channel (for VGCCs), Potassium channel (for VGKCs)
01

Overview

Voltage-gated calcium and potassium channels are ion channels located in the cardiac cell membrane, which are critically involved in generating and shaping the cardiac action potential. Voltage-gated calcium channels (VGCCs), especially L-type (CaV1.2, CaV1.3) and T-type (CaV3.1), conduct Ca²⁺ into cardiac myocytes during depolarization, triggering excitation–contraction coupling and contributing to pacemaker activity and atrioventricular (AV) conduction[1][2][3][4][5]. Voltage-gated potassium channels (VGKCs) mediate K⁺ efflux, which is responsible for the repolarization phase of the cardiac action potential, restoring the resting membrane potential and determining action potential duration[6]. Dysfunctions of these channels, due to genetic mutations, acquired disease, or drug interactions, underlie many cardiac arrhythmias and conduction disorders. Both channel classes are established drug targets for antiarrhythmic and antihypertensive therapies.

Other names
Voltage-dependent calcium channelVoltage-gated K channelL-type calcium channel (CaV1.2, CaV1.3)T-type calcium channel (CaV3.1)KCNQ1hERG (for some VGKCs)CaVKV
02

Mechanism of action

Inhibition of Ca²⁺ influx to reduce cardiac contractility and conduction (for Ca channel blockers) - Inhibition of K⁺ efflux to prolong repolarization and action potential duration (for K channel blockers) - Suppression of abnormal automaticity or afterdepolarizations

03

Biological functions

Cardiac action potential generation and propagationExcitation–contraction couplingRegulation of heart rate (pacemaker activity)Regulation of myocardial conduction and repolarizationCalcium and potassium ion transmembrane transport
04

Disease associations

Cardiac arrhythmiaCongenital bradycardiaAtrioventricular (AV) blockAtrial fibrillation and flutterSudden cardiac deathCardiomyopathyLong QT syndromeShort QT syndrome
05

Safety considerations

Proarrhythmic risk (especially Torsades de Pointes for K⁺ channel blockers)Bradycardia or heart block (from excessive VGCC inhibition)Hypotension, negative inotropic effects, syncope
06

Interacting drugs

Calcium channel blockers (e.g. verapamil, diltiazem, amlodipine)

3 more in the full profile.

07

Biomarkers

QT interval on ECG (for drug/channel effect and risk of arrhythmias)Genetic mutations (e.g. CACNA1C for CaV1.2, KCNQ1 for KV7.1, KCNH2 for hERG)

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