omega -Conotoxins selective for N-type calcium channels are useful in the management of severe pain. In an attempt to expand the therapeutic potential of this class, four new omega -conotoxins (CVIA-D) have been discovered in the venom of the piscivorous cone snail, Conus catus, using assay-guided fractionation and gene cloning. Compared with other omega -conotoxins, CVID has a novel loop 4 sequence and the highest selectivity for N-type over P/Q-type calcium channels in radioligand binding assays. CVIA-D also inhibited contractions of electrically stimulated rat vas deferens. In electrophysiological studies, omega -conotoxins CVID and MVIIA had similar potencies to inhibit current through central (alpha (1B-d)) and peripheral (alpha (1B-b)...
Cone snails (Conidae) are marine predators with some extraordinary features. Their venom contains a ...
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...
omega-Conotoxins selective for N-type calcium channels are useful in the management of severe pain. ...
v-Conotoxins selective for N-type calcium channels are useful in the management of severe pain. In a...
A new specific voltage-sensitive calcium channel (VSCC) blocker has been isolated from the venom of ...
The omega-conotoxins from fish-hunting cone snails are potent inhibitors of voltage-gated calcium ch...
N-type Ca2+ channel-selective omega-conotoxins have emerged as potential new drugs for the treatment...
Neuronal (N)-type Ca(2+) channel-selective omega-conotoxins have emerged as potential new drugs for ...
Omega-conotoxins are routinely used as selective inhibitors of different classes of voltage-gated ca...
omega-Conotoxins are routinely used as selective inhibitors of different classes of voltage-gated ca...
Highly selective N-type voltage-gated calcium (Ca-V) channel inhibitors from cone snail venom (the o...
Demonstration of a novel calcium channel antagonist, (omega)-conotoxin CVID, which selectively inhib...
The omega-conotoxins from fish-hunting cone snails are potent inhibitors of voltage-gated calcium ch...
Voltage-gated calcium (CaV) channels are widely expressed and are essential for the completion of mu...
Cone snails (Conidae) are marine predators with some extraordinary features. Their venom contains a ...
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...
omega-Conotoxins selective for N-type calcium channels are useful in the management of severe pain. ...
v-Conotoxins selective for N-type calcium channels are useful in the management of severe pain. In a...
A new specific voltage-sensitive calcium channel (VSCC) blocker has been isolated from the venom of ...
The omega-conotoxins from fish-hunting cone snails are potent inhibitors of voltage-gated calcium ch...
N-type Ca2+ channel-selective omega-conotoxins have emerged as potential new drugs for the treatment...
Neuronal (N)-type Ca(2+) channel-selective omega-conotoxins have emerged as potential new drugs for ...
Omega-conotoxins are routinely used as selective inhibitors of different classes of voltage-gated ca...
omega-Conotoxins are routinely used as selective inhibitors of different classes of voltage-gated ca...
Highly selective N-type voltage-gated calcium (Ca-V) channel inhibitors from cone snail venom (the o...
Demonstration of a novel calcium channel antagonist, (omega)-conotoxin CVID, which selectively inhib...
The omega-conotoxins from fish-hunting cone snails are potent inhibitors of voltage-gated calcium ch...
Voltage-gated calcium (CaV) channels are widely expressed and are essential for the completion of mu...
Cone snails (Conidae) are marine predators with some extraordinary features. Their venom contains a ...
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...