Vicente-Baz Jorge, Lopez-Garcia Jose A, Rivera-Arconada Ivan
Department of Systems Biology (Physiology), Universidad de Alcala, Alcala de Henares, Madrid, Spain.
Department of Systems Biology (Physiology), Universidad de Alcala, Alcala de Henares, Madrid, Spain.
Neuropharmacology. 2016 Oct;109:131-138. doi: 10.1016/j.neuropharm.2016.05.025. Epub 2016 Jun 2.
The activation of Kv7 channels and the resulting M-current is a powerful mechanism to control neuronal excitability with profound effects in pain pathways. Despite the lack of specific data on the expression and role of these channels in nociceptive processing, much attention has been paid at exploring their potential value as targets for analgesia. Here we have characterized the spinal actions of two novel subunit selective Kv7 activators, ICA-069673 and ML213, and compared their effects to those of retigabine that acts with similar affinity on all neuronal Kv7 channels. Spinal reflexes were recorded in a mouse spinal cord in vitro preparation to allow the testing of the compounds on native spinal pathways at known concentrations. As retigabine, novel compounds depressed spinal segmental transmission with particularly strong effects on wind up, showing an adequate pro-analgesic profile. ML213 presented the highest potency. In contrast to retigabine, the effects of ICA-069673 and ML213 were blocked by XE-991 even at the highest concentrations used, suggesting specific effect on Kv7 channels. In addition, the effects of ICA-069673 on repetitive stimulation are consistent with a mode of action involving state or activity dependent interaction with the channels. Compared to retigabine, novel Kv7 openers maintain strong depressant effects on spinal nociceptive transmission showing an improved specificity on Kv7 channels. The differential effects obtained with these Kv7 openers may indicate the existence of several Kv7 conformations in spinal circuits.
Kv7通道的激活及由此产生的M电流是一种强大的机制,可控制神经元兴奋性,对疼痛通路有深远影响。尽管缺乏关于这些通道在伤害性处理中的表达和作用的具体数据,但人们已对探索它们作为镇痛靶点的潜在价值给予了很多关注。在此,我们已对两种新型亚基选择性Kv7激活剂ICA-069673和ML213的脊髓作用进行了表征,并将它们的作用与瑞替加滨的作用进行了比较,瑞替加滨对所有神经元Kv7通道具有相似的亲和力。在体外制备的小鼠脊髓中记录脊髓反射,以便在已知浓度下测试这些化合物对天然脊髓通路的作用。与瑞替加滨一样,新型化合物抑制脊髓节段性传递,对wind up有特别强的作用,显示出适当的镇痛作用特征。ML213的效力最高。与瑞替加滨不同,即使在使用的最高浓度下,XE-991也能阻断ICA-069673和ML213的作用,表明它们对Kv7通道有特异性作用。此外,ICA-069673对重复刺激的作用与一种作用模式一致,该模式涉及与通道的状态或活性依赖性相互作用。与瑞替加滨相比,新型Kv7开放剂对脊髓伤害性传递保持强烈的抑制作用,对Kv7通道显示出更高的特异性。这些Kv7开放剂获得的不同作用可能表明脊髓回路中存在几种Kv7构象。