The N-type voltage-gated Ca2+ channel CaV2.2 is one of the important targets for pain management. ω-Conotoxins isolated from venoms of cone snails, which specifically inhibit CaV2.2, are promising scaffolds for novel analgesics. The inhibitory action o
Approximately 1.5 billion people in the world suffer from chronic pain, persistent pain that carries...
Highly selective N-type voltage-gated calcium (Ca-V) channel inhibitors from cone snail venom (the o...
<div>Over the last decade, there has been extensive research into the identification of drug leads t...
Highly selective Cav2.2 voltage-gated calcium channel (VGCC) inhibitors have emerged as a new class ...
AbstractN-type (Cav2.2) voltage-gated calcium channels (VGCC) transduce electrical activity into oth...
N-type (Cav2.2) voltage-gated calcium channels (VGCC) transduce electrical activity into other cellu...
N-type (Cav2.2) voltage-gated calcium channels (VGCC) transduce electrical activity into other cellu...
N-type (Ca2.2) voltage-gated calcium channels (VGCC) transduce electrical activity into other cellul...
Conotoxins (conopeptides) are small disulfide bonded peptides from the venom of marine cone snails. ...
Chronic pain affects approximately 20% of people worldwide and places a large economic and social bu...
Conotoxins (conopeptides) are small disulfide bonded peptides from the venom of marine cone snails. ...
v-Conotoxins selective for N-type calcium channels are useful in the management of severe pain. In a...
Conotoxins (conopeptides) are small disulfide bonded peptides from the venom of marine cone snails. ...
Venoms contain a complex mixture of mostly small peptides that are released from animals to facilita...
ω-Conotoxins inhibit N-type voltage-gated calcium (CaV2.2) channels and exhibit efficacy in attenuat...
Approximately 1.5 billion people in the world suffer from chronic pain, persistent pain that carries...
Highly selective N-type voltage-gated calcium (Ca-V) channel inhibitors from cone snail venom (the o...
<div>Over the last decade, there has been extensive research into the identification of drug leads t...
Highly selective Cav2.2 voltage-gated calcium channel (VGCC) inhibitors have emerged as a new class ...
AbstractN-type (Cav2.2) voltage-gated calcium channels (VGCC) transduce electrical activity into oth...
N-type (Cav2.2) voltage-gated calcium channels (VGCC) transduce electrical activity into other cellu...
N-type (Cav2.2) voltage-gated calcium channels (VGCC) transduce electrical activity into other cellu...
N-type (Ca2.2) voltage-gated calcium channels (VGCC) transduce electrical activity into other cellul...
Conotoxins (conopeptides) are small disulfide bonded peptides from the venom of marine cone snails. ...
Chronic pain affects approximately 20% of people worldwide and places a large economic and social bu...
Conotoxins (conopeptides) are small disulfide bonded peptides from the venom of marine cone snails. ...
v-Conotoxins selective for N-type calcium channels are useful in the management of severe pain. In a...
Conotoxins (conopeptides) are small disulfide bonded peptides from the venom of marine cone snails. ...
Venoms contain a complex mixture of mostly small peptides that are released from animals to facilita...
ω-Conotoxins inhibit N-type voltage-gated calcium (CaV2.2) channels and exhibit efficacy in attenuat...
Approximately 1.5 billion people in the world suffer from chronic pain, persistent pain that carries...
Highly selective N-type voltage-gated calcium (Ca-V) channel inhibitors from cone snail venom (the o...
<div>Over the last decade, there has been extensive research into the identification of drug leads t...