Target intelligence / Profile preview

Voltage-gated sodium channel (Nav1) (Nav1)

Target
Nav1
Molecular classification
Ion channel, Voltage-gated ion channel
01

Overview

Voltage-gated sodium channels (Nav1) are essential transmembrane proteins that mediate the rapid influx of sodium ions across the cell membrane, a process fundamental to the initiation and propagation of action potentials in excitable tissues [6, 9]. The Nav1 family comprises nine distinct alpha-subunit isoforms (Nav1.1 through Nav1.9), which are expressed in a tissue-specific manner across the central and peripheral nervous systems, as well as in skeletal and cardiac muscle [7, 13]. These channels play a pivotal role in physiological processes such as sensory perception, motor control, and cardiac rhythmicity [5, 12]. Dysregulation or mutations in the genes encoding these subunits (SCN1A-SCN11A) are associated with a wide spectrum of diseases, known as channelopathies, including various forms of epilepsy, chronic pain syndromes, and life-threatening cardiac arrhythmias [5, 9]. Pharmacologically, Nav1 channels are targeted by a diverse array of drugs, including local anesthetics, antiarrhythmics, and anticonvulsants, which typically function by blocking the ion-conducting pore in a state-dependent manner [7, 8]. Recent evidence also suggests that Nav1 channels are expressed in non-excitable cells, such as cancer cells, where they may contribute to invasive and metastatic behavior [1, 10]. The structural complexity of these channels, involving four homologous domains and auxiliary beta subunits, allows for fine-tuned regulation of electrical signaling [6, 11]. Therapeutic development continues to focus on subtype-selective inhibitors to minimize off-target effects, particularly for the treatment of chronic pain and epilepsy [2, 8].

Other names
VGSCSodium channel alpha subunitNaVVoltage-dependent sodium channel
02

Mechanism of action

Drugs targeting Nav1 channels typically act through state-dependent blockade of the ion-conducting pore [13]. They primarily bind to a conserved receptor site located in the S6 segment of domain IV, which stabilizes the channel in its non-conducting inactivated state, thereby inhibiting the influx of sodium ions and preventing membrane depolarization [7, 9].

03

Biological functions

Action potential initiation [9]Action potential propagation [9]Nerve conduction [1]Muscle contraction [1]Signal transduction [1]
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Disease associations

Epilepsy [5]Chronic pain [2]Cardiac arrhythmia [5]Periodic paralysis [5]Cancer metastasis [1]Neuropathic pain [2]
05

Safety considerations

Cardiac arrhythmias [5]CNS toxicity (e.g., dizziness, ataxia) [5]Narrow therapeutic index [2]Off-target effects on non-target Nav subtypes [8]
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Interacting drugs

Lidocaine

9 more in the full profile.

07

Biomarkers

SCN1A mutation [5]SCN5A mutation [5]SCN9A mutation [5]Sodium current density [10]Nerve conduction velocity [12]

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