Alkyne-Bridged α-Conotoxin Vc1.1 Potently Reverses Mechanical Allodynia in Neuropathic Pain Models.
Alessia BelgiJames V BurnleyChristopher A MacRaildSandeep ChhabraKhaled A ElnahrirySamuel D RobinsonSimon G GoodingHan-Shen TaePeter BartelsMahsa SadeghiFei-Yue ZhaoHaifeng WeiDavid SpanswickDavid J AdamsRaymond S NortonAndrea J RobinsonPublished in: Journal of medicinal chemistry (2021)
Several Conus-derived venom peptides are promising lead compounds for the management of neuropathic pain, with α-conotoxins being of particular interest. Modification of the interlocked disulfide framework of α-conotoxin Vc1.1 has been achieved using on-resin alkyne metathesis. Although introduction of a metabolically stable alkyne motif significantly disrupts backbone topography, the structural modification generates a potent and selective GABAB receptor agonist that inhibits Cav2.2 channels and exhibits dose-dependent reversal of mechanical allodynia in a behavioral rat model of neuropathic pain. The findings herein support the hypothesis that analgesia can be achieved via activation of GABABRs expressed in dorsal root ganglion (DRG) sensory neurons.