SummaryNav1.7, a peripheral neuron voltage-gated sodium channel, is essential for pain and olfaction in mice and humans. We examined the role of Nav1.7 as well as Nav1.3, Nav1.8, and Nav1.9 in different mouse models of chronic pain. Constriction-injury-dependent neuropathic pain is abolished when Nav1.7 is deleted in sensory neurons, unlike nerve-transection-related pain, which requires the deletion of Nav1.7 in sensory and sympathetic neurons for pain relief. Sympathetic sprouting that develops in parallel with nerve-transection pain depends on the presence of Nav1.7 in sympathetic neurons. Mechanical and cold allodynia required distinct sets of neurons and different repertoires of sodium channels depending on the nerve injury model. Surpr...
Human genetic studies show that the voltage gated sodium channel 1.7 (Nav1.7) is a key molecular det...
Two voltage gated sodium channels, Nav1.8 and Nav1.9, are exclusively expressed in primary sensory n...
Human genetic studies show that the voltage gated sodium channel 1.7 (Nav1.7) is a key molecular det...
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...
Nav1.7, a peripheral neuron voltage-gated sodium channel, is essential for pain and olfaction in mic...
Two voltage gated sodium channel alpha-subunits, Nav1.7 and Nav1.8, are expressed at high levels in ...
Human acute and inflammatory pain requires the expression of voltage-gated sodium channel Nav1.7 but...
Loss-of-function mutations in NaV1.7 cause congenital insensitivity to pain (CIP); this voltage-gate...
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...
INTRODUCTION: Chronic pain is a massive clinical problem. We discuss the potential of subtype select...
Human genetic studies show that the voltage gated sodium channel 1.7 (Nav1.7) is a key molecular det...
Changes in sodium channel activity and neuronal hyperexcitability contribute to neuropathic pain, a ...
Human genetic studies show that the voltage gated sodium channel 1.7 (Nav1.7) is a key molecular det...
Human genetic studies show that the voltage gated sodium channel 1.7 (Nav1.7) is a key molecular det...
Two voltage gated sodium channels, Nav1.8 and Nav1.9, are exclusively expressed in primary sensory n...
Human genetic studies show that the voltage gated sodium channel 1.7 (Nav1.7) is a key molecular det...
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...
Nav1.7, a peripheral neuron voltage-gated sodium channel, is essential for pain and olfaction in mic...
Two voltage gated sodium channel alpha-subunits, Nav1.7 and Nav1.8, are expressed at high levels in ...
Human acute and inflammatory pain requires the expression of voltage-gated sodium channel Nav1.7 but...
Loss-of-function mutations in NaV1.7 cause congenital insensitivity to pain (CIP); this voltage-gate...
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...
INTRODUCTION: Chronic pain is a massive clinical problem. We discuss the potential of subtype select...
Human genetic studies show that the voltage gated sodium channel 1.7 (Nav1.7) is a key molecular det...
Changes in sodium channel activity and neuronal hyperexcitability contribute to neuropathic pain, a ...
Human genetic studies show that the voltage gated sodium channel 1.7 (Nav1.7) is a key molecular det...
Human genetic studies show that the voltage gated sodium channel 1.7 (Nav1.7) is a key molecular det...
Two voltage gated sodium channels, Nav1.8 and Nav1.9, are exclusively expressed in primary sensory n...
Human genetic studies show that the voltage gated sodium channel 1.7 (Nav1.7) is a key molecular det...