International audienceOver the two last decades, venom toxins have been explored as alternatives to opioids to treat chronic debilitating pain. At present, approximately 20 potential analgesic toxins, mainly from spider venoms, are known to inhibit with high affinity the Na V 1.7 subtype of voltage-gated sodium (Na V) channels, the most promising genetically validated antinociceptive target identified so far. The present study aimed to consolidate the development of phlotoxin 1 (PhlTx1), a 34-amino acid and 3-disulfide bridge peptide of a Phlogiellus genus spider, as an antinociceptive agent by improving its affinity and selectivity for the human (h) Na V 1.7 subtype. The synthetic homologue of PhlTx1 was generated and equilibrated between ...
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...
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 ...
Phlotoxin-1 (PhlTx1) is a peptide previously identified in tarantula venom (Phlogius species) that b...
International audienceOver the two last decades, venom toxins have been explored as alternatives to ...
Phlotoxin-1 (PhlTx1) is a peptide previously identified in tarantula venom (Phlogius species) that b...
Phlotoxin-1 (PhlTx1) is a peptide previously identified in tarantula venom (Phlogius species) that b...
Spider venoms are a rich source of ion channel modulators with therapeutic potential. Given the anal...
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...
Phlotoxin-1 (PhlTx1) is a peptide previously identified in tarantula venom (Phlogius species) that b...
Human genetic studies have implicated the voltage-gated sodium channel Na(V)1.7 as a therapeutic tar...
Phlotoxin-1 (PhlTx1) is a peptide previously identified in tarantula venom (Phlogius species) that b...
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...
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 ...
Phlotoxin-1 (PhlTx1) is a peptide previously identified in tarantula venom (Phlogius species) that b...
International audienceOver the two last decades, venom toxins have been explored as alternatives to ...
Phlotoxin-1 (PhlTx1) is a peptide previously identified in tarantula venom (Phlogius species) that b...
Phlotoxin-1 (PhlTx1) is a peptide previously identified in tarantula venom (Phlogius species) that b...
Spider venoms are a rich source of ion channel modulators with therapeutic potential. Given the anal...
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...
Phlotoxin-1 (PhlTx1) is a peptide previously identified in tarantula venom (Phlogius species) that b...
Human genetic studies have implicated the voltage-gated sodium channel Na(V)1.7 as a therapeutic tar...
Phlotoxin-1 (PhlTx1) is a peptide previously identified in tarantula venom (Phlogius species) that b...
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...
Voltage-gated sodium (NaV) channels are responsible for propagating action potentials in excitable c...