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首页> 外文期刊>Medicinal chemistry research: an international journal for rapid communications on design and mechanisms of action of biologically active agents >Synthesis and biological evaluation of piperazine derivatives as novel isoform selective voltage-gated sodium (Na-v) 1.3 channel modulators
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Synthesis and biological evaluation of piperazine derivatives as novel isoform selective voltage-gated sodium (Na-v) 1.3 channel modulators

机译:哌嗪衍生物作为新型同工型选择性电压门控钠(Na-v)1.3通道调节剂的合成和生物学评估

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摘要

Sponges of the genus Agelas produce compounds that modulate the activity of voltage-gated sodium ion channels and contribute novel scaffolds for the development of compounds with activity against a plethora of biological targets. In particular, clathrodin and dibromosceptrin were reported to decrease the average maximum amplitude of inward sodium currents in isolated chick embryo sympathetic ganglia cells; we envisaged these compounds as a starting point to design novel Na-v channel modulators. This endeavor was part of our long-term goal of designing a comprehensive library of Agelas alkaloid analogs that would cover a broader chemical space and allow us to examine the activity of such compounds on Na-v channels. Our series of compounds was designed by maintaining the terminal structural features found in clathrodin while rigidizing the central part of the molecule and replacing the 3-aminopropene linker with a 4-methylenepiperazine moiety. Synthesised compounds were screened for inhibitory action against the human voltage-gated sodium channel isoforms Na-v 1.3, Na-v 1.4, cardiac Na-v 1.5, and Na-v 1.7 using an automated patch clamp electrophysiology technique. The results demonstrate that we have obtained a series of compounds with a modest but selective inhibitory activity against the Na-v 1.3 channel isoform. The most potent compound showed selective activity against the Na-v 1.3 channel isoform with an IC50 of 19 mu M and is a suitable starting point for further development of selective Na-v 1.3 channel modulators. Such compounds could prove to be beneficial as a pharmacological tool towards the development of novel therapeutically useful compounds in the treatment of pain.
机译:Agelas属的海绵产生的化合物可调节电压门控钠离子通道的活性,并为开发具有对抗大量生物靶标活性的化合物的新型支架做出贡献。特别是,据报道,clathrodin和dibromosceptrin可以降低离体鸡胚交感神经节细胞内钠电流的平均最大振幅。我们设想将这些化合物作为设计新型Na-v通道调节剂的起点。这项工作是我们长期目标的一部分,该长期目标是设计一个全面的Agelas生物碱类似物库,该库将覆盖更广泛的化学空间,并允许我们检查此类化合物在Na-v通道上的活性。我们设计这一系列化合物的方法是,在保持clathrodin的末端结构特征的同时,使分子的中心部分变硬,并用4-亚甲基哌嗪部分取代3-氨基丙烯接头。使用自动膜片钳电生理技术筛选合成的化合物对人电压门控钠通道亚型Na-v 1.3,Na-v 1.4,心脏Na-v 1.5和Na-v 1.7的抑制作用。结果表明,我们获得了一系列对Na-v 1.3通道同工型具有适度但选择性抑制活性的化合物。最有效的化合物显示出对Na-v 1.3通道同种型的选择性活性,IC50为19μM,是进一步开发选择性Na-v 1.3通道调节剂的合适起点。这样的化合物可被证明是开发新的治疗上有用的化合物来治疗疼痛的药理学工具是有益的。

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