氟吡丁的药理学和临床应用:当前和未来的选择

K. Lawson
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引用次数: 7

摘要

氟吡丁是一类三氨基吡啶中的第一个代表性药物,其具有抑制神经元和非神经元细胞过度兴奋性的药理学特性。因此,该药物已被用作一种中枢镇痛药,用于一系列急性和持续疼痛的患者,没有阿片类和非甾体抗炎药特有的不良反应,并且耐受性良好。所展示的药理学特征涉及对几个细胞靶点的作用,包括Kv7通道、G蛋白调节的内向整流K通道和γ-氨基丁酸A型受体,但也有证据表明氟吡丁的作用涉及其他尚未确定的作用机制。氟吡丁在与这些靶点的位置相关的一系列细胞和组织中表现出作用。除了镇痛外,氟吡丁还显示出与用作抗惊厥剂、神经保护剂、骨骼肌和平滑肌松弛剂、治疗听觉和视觉障碍以及治疗记忆和认知障碍一致的药理学特性。氟吡丁为治疗一系列涉及细胞高兴奋性的临床疾病提供了新的机制方法的重要信息和线索。对参与氟吡丁作用的药理学靶标(例如Kv7亚型)表现出特异性的分子的鉴定将为临床应用提供进一步的见解。氟吡丁的广谱药理学或靶向特异性作用是否有利于获益,尤其是在复杂的临床条件下,还需要进一步研究。这篇综述将考虑对氟吡丁的药理学特征和相关临床应用的最新进展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Pharmacology and clinical applications of flupirtine: Current and future options
Flupirtine is the first representative in a class of triaminopyridines that exhibits pharmacological properties leading to the suppression of over-excitability of neuronal and non-neuronal cells. Consequently, this drug has been used as a centrally acting analgesic in patients with a range of acute and persistent pain conditions without the adverse effects characteristic of opioids and non-steroidal anti-inflammatory drug and is well tolerated. The pharmacological profile exhibited involves actions on several cellular targets, including Kv7 channels, G-protein-regulated inwardly rectifying K channels and γ-aminobutyric acid type A receptors, but also there is evidence of additional as yet unidentified mechanisms of action involved in the effects of flupirtine. Flupirtine has exhibited effects in a range of cells and tissues related to the locations of these targets. In additional to analgesia, flupirtine has demonstrated pharmacological properties consistent with use as an anticonvulsant, a neuroprotectant, skeletal and smooth muscle relaxant, in treatment of auditory and visual disorders, and treatment of memory and cognitive impairment. Flupirtine is providing important information and clues regarding novel mechanistic approaches to the treatment of a range of clinical conditions involving hyper-excitability of cells. Identification of molecules exhibiting specificity for the pharmacological targets (e.g., Kv7 isoforms) involved in the actions of flupirtine will provide further insight into clinical applications. Whether the broad-spectrum pharmacology of flupirtine or target-specific actions is preferential to gain benefit, especially in complex clinical conditions, requires further investigation. This review will consider recent advancement in understanding of the pharmacological profile and related clinical applications of flupirtine.
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