Human genetic studies have implicated the voltage-gated sodium channel Na(V)1.7 as a therapeutic target for the treatment of pain. A novel peptide, mu-theraphotoxin-Pn3a, isolated from venom of the tarantula Pamphobeteus nigricolor, potently inhibits Na(V)1.7 (IC50 0.9 nM) with at least 40-1000-fold selectivity over all other Na-V subtypes. Despite on-target activity in small-diameter dorsal root ganglia, spinal slices, and in a mouse model of pain induced by Na(V)1.7 activation, Pn3a alone displayed no analgesic activity in formalin-, carrageenan-or FCA-induced pain in rodents when administered systemically. A broad lack of analgesic activity was also found for the selective Na(V)1.7 inhibitors PF-04856264 and phlotoxin 1. However, when ad...
Background and Purpose: Chronic pain is a serious worldwide health issue, with current analgesics ha...
Background and Purpose: Chronic pain is a serious worldwide health issue, with current analgesics ha...
Spider venoms contain a vast array of bioactive peptides targeting ion channels. A large number of p...
Human genetic studies have implicated the voltage-gated sodium channel Na(V)1.7 as a therapeutic tar...
Human genetic studies have implicated the voltage-gated sodium channel Na(V)1.7 as a therapeutic tar...
Human genetic studies have implicated the voltage-gated sodium channel Na(V)1.7 as a therapeutic tar...
Management of chronic pain presents a major challenge, since many currently available treatments lac...
Management of chronic pain presents a major challenge, since many currently available treatments lac...
Pain places a devastating burden on patients and society and current pain therapeutics exhibit limit...
Spider venoms are a rich source of ion channel modulators with therapeutic potential. Given the anal...
Voltage-gated sodium (NaV) channels are responsible for propagating action potentials in excitable c...
International audienceOver the two last decades, venom toxins have been explored as alternatives to ...
Compelling human genetic studies have identified the voltage-gated sodium channel NaV1.7 as a promis...
International audienceOver the two last decades, venom toxins have been explored as alternatives to ...
International audienceAlthough necessary for human survival, pain may sometimes become pathologic if...
Background and Purpose: Chronic pain is a serious worldwide health issue, with current analgesics ha...
Background and Purpose: Chronic pain is a serious worldwide health issue, with current analgesics ha...
Spider venoms contain a vast array of bioactive peptides targeting ion channels. A large number of p...
Human genetic studies have implicated the voltage-gated sodium channel Na(V)1.7 as a therapeutic tar...
Human genetic studies have implicated the voltage-gated sodium channel Na(V)1.7 as a therapeutic tar...
Human genetic studies have implicated the voltage-gated sodium channel Na(V)1.7 as a therapeutic tar...
Management of chronic pain presents a major challenge, since many currently available treatments lac...
Management of chronic pain presents a major challenge, since many currently available treatments lac...
Pain places a devastating burden on patients and society and current pain therapeutics exhibit limit...
Spider venoms are a rich source of ion channel modulators with therapeutic potential. Given the anal...
Voltage-gated sodium (NaV) channels are responsible for propagating action potentials in excitable c...
International audienceOver the two last decades, venom toxins have been explored as alternatives to ...
Compelling human genetic studies have identified the voltage-gated sodium channel NaV1.7 as a promis...
International audienceOver the two last decades, venom toxins have been explored as alternatives to ...
International audienceAlthough necessary for human survival, pain may sometimes become pathologic if...
Background and Purpose: Chronic pain is a serious worldwide health issue, with current analgesics ha...
Background and Purpose: Chronic pain is a serious worldwide health issue, with current analgesics ha...
Spider venoms contain a vast array of bioactive peptides targeting ion channels. A large number of p...