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Voltage gated sodium channels as drug discovery targets

机译:电压门控钠通道作为药物发现的目标

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摘要

Voltage-gated sodium (Na-V) channels are a family of transmembrane ion channel proteins. They function by forming a gated, water-filled pore to help establish and control cell membrane potential via control of the flow of ions between the intracellular and the extracellular environments. Blockade of Na(V)s has been successfully accomplished in the clinic to enable control of pathological firing patterns that occur in a diverse range of conditions such as chronic pain, epilepsy, and cardiac arrhythmias. First generation sodium channel modulator drugs, despite low inherent subtype selectivity, preferentially act on over-excited cells which reduces undesirable side effects in the clinic. However, the limited therapeutic indices observed with the first generation demanded a new generation of sodium channel inhibitors. The structure, function and the state of the art in sodium channel modulator drug discovery are discussed in this chapter.
机译:电压门控钠(Na-V)通道是跨膜离子通道蛋白家族。它们通过形成门控的,充满水的孔来起作用,以通过控制细胞内和细胞外环境之间的离子流来帮助建立和控制细胞膜电位。 Na(V)的阻滞已在临床上成功完成,从而能够控制在多种情况下(例如慢性疼痛,癫痫和心律不齐)发生的病理性放电模式。尽管固有​​的亚型选择性低,但第一代钠通道调节剂药物仍优先作用于过度兴奋的细胞,从而减少了临床中不良的副作用。但是,第一代观察到的治疗指标有限,因此需要新一代的钠通道抑制剂。本章讨论了钠通道调节剂药物发现的结构,功能和最新技术。

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