Genetic loss of the voltage-gated sodium channel Nav1.7 (Na(v)1.7(-/-)) results in lifelong insensitivity to pain inmice and humans. One underlying cause is an increase in the production of endogenous opioids in sensory neurons. We analyzed whether Na(v)1.7 deficiency altered nociceptive heterotrimeric guanine nucleotide-binding protein-coupled receptor (GPCR) signaling, such as initiated by GPCRs that respond to serotonin (pronociceptive) or opioids (antinociceptive), in sensory neurons. We found that the nociceptive neurons of Na(v)1.7 knockout (Na(v)1.7(-/-)) mice, but not those of Na(v)1.8 knockout (Na(v)1.8(-/-)) mice, exhibited decreased pronociceptive serotonergic signaling through the 5-HT4 receptors, which are G alpha(s)-coupled GP...
Abstract Changes in sodium channel activity and neuronal hyperexcitability contribute to neuropathic...
Human genetic studies show that the voltage gated sodium channel 1.7 (Nav1.7) is a key molecular det...
Clinical genetic studies have shown that loss of Nav1.7 function leads to the complete loss of acute...
Loss-of-function mutations in the SCN9A gene encoding voltage-gated sodium channel Nav1.7 cause cong...
International audienceLoss-of-function mutations in the SCN9A gene encoding voltage-gated sodium cha...
Background: Functional deletion of the Scn9a (sodium voltage-gated channel alpha subunit 9) gene enc...
Nav1.7, a peripheral neuron voltage-gated sodium channel, is essential for pain and olfaction in mic...
SummaryNav1.7, a peripheral neuron voltage-gated sodium channel, is essential for pain and olfaction...
Two voltage gated sodium channel alpha-subunits, Nav1.7 and Nav1.8, are expressed at high levels in ...
Two voltage gated sodium channels, Nav1.8 and Nav1.9, are exclusively expressed in primary sensory n...
Loss-of-function mutations in NaV1.7 cause congenital insensitivity to pain (CIP); this voltage-gate...
Sodium channels are crucial to the ability of sensory neurones to fire action potentials. Modulation...
Opiates are powerful drugs to treat severe pain, and act via mu opioid receptors distributed through...
Voltage-gated sodium channels play a fundamental role in determining neuronal excitability. Specific...
Loss-of-function mutations in NaV1.7 cause congenital insensitivity to pain (CIP); this voltage-gate...
Abstract Changes in sodium channel activity and neuronal hyperexcitability contribute to neuropathic...
Human genetic studies show that the voltage gated sodium channel 1.7 (Nav1.7) is a key molecular det...
Clinical genetic studies have shown that loss of Nav1.7 function leads to the complete loss of acute...
Loss-of-function mutations in the SCN9A gene encoding voltage-gated sodium channel Nav1.7 cause cong...
International audienceLoss-of-function mutations in the SCN9A gene encoding voltage-gated sodium cha...
Background: Functional deletion of the Scn9a (sodium voltage-gated channel alpha subunit 9) gene enc...
Nav1.7, a peripheral neuron voltage-gated sodium channel, is essential for pain and olfaction in mic...
SummaryNav1.7, a peripheral neuron voltage-gated sodium channel, is essential for pain and olfaction...
Two voltage gated sodium channel alpha-subunits, Nav1.7 and Nav1.8, are expressed at high levels in ...
Two voltage gated sodium channels, Nav1.8 and Nav1.9, are exclusively expressed in primary sensory n...
Loss-of-function mutations in NaV1.7 cause congenital insensitivity to pain (CIP); this voltage-gate...
Sodium channels are crucial to the ability of sensory neurones to fire action potentials. Modulation...
Opiates are powerful drugs to treat severe pain, and act via mu opioid receptors distributed through...
Voltage-gated sodium channels play a fundamental role in determining neuronal excitability. Specific...
Loss-of-function mutations in NaV1.7 cause congenital insensitivity to pain (CIP); this voltage-gate...
Abstract Changes in sodium channel activity and neuronal hyperexcitability contribute to neuropathic...
Human genetic studies show that the voltage gated sodium channel 1.7 (Nav1.7) is a key molecular det...
Clinical genetic studies have shown that loss of Nav1.7 function leads to the complete loss of acute...