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The therapeutic potential of neuronal Kv7 (KCNQ) channel modulators: An update

机译:神经元KV7(KCNQ)通道调制器的治疗潜力:更新

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Background: Neuronal KCNQ channels (Kv7.2-5) represent attractive targets for the development of therapeutics for chronic and neuropathic pain, migraine, epilepsy and other neuronal hyperexcitability disorders, although there has been only modest progress in translating this potential into useful therapeutics. Objective: Compelling evidence of the importance of Kv7 channels as neuronal regulatory elements, readily amenable to pharmacological modulation, has sustained widespread interest in these channels as drug targets. This review will update readers on key aspects of the characterization of these important ion channel targets, and will discuss possible current barriers to their exploitation for CNS therapeutics. Methods: This article is based on a review of recent literature, with a focus on data pertaining to the roles of these channels in neurophysiology. In addition, I review some of the regulatory elements that influence the channels and how these may relate to channel pharmacology, and present a review of recent advances in neuronal Kv7 channel pharmacology. Conclusions: These channels continue to be valid and approachable targets for CNS therapeutics. However, we may need to understand more about the roles of neuronal Kv7 channels during the development of disease states, as well as to pay more attention to a detailed analysis of the molecular pharmacology of the different channel subfamily members and the modes of interaction of individual modulators, in order to successfully target these channels for therapeutic development.
机译:背景:神经元KCNQ通道(KV7.2-5)代表了慢性和神经性疼痛,偏头痛,癫痫和其他神经元低位可变性疾病发展的有吸引力的目标,尽管在将这种潜力转化为有用的治疗方面,但是只有适度的进展。目的:令人兴奋的证据表明KV7通道作为神经元调节元件的重要性,容易享受药理学调节,对这些渠道进行了普遍的兴趣作为药物靶标。本综述将在这些重要离子频道目标的表征的关键方面更新读者,并将讨论其对CNS治疗学的利用的可能当前的障碍。方法:本文基于对最近文献的审查,重点关注与这些渠道在神经生理学中有关的数据。此外,我审查了一些影响渠道的监管元素以及如何与信道药理学相关,并介绍了神经元KV7信道药理学的最新进展。结论:这些渠道继续对CNS治疗方法有效和可接近的目标。但是,我们可能需要了解在疾病状态发展期间神经元Kv7频道的作用,以及更多地关注不同通道亚家族成员的分子药理学的详细分析以及个体的相互作用方式调制器,为了成功地瞄准这些渠道进行治疗发展。

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