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A Role for K2P Channels in the Operation of Somatosensory Nociceptors

机译:K2P通道在体感伤害感受器操作中的作用

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摘要

The ability to sense mechanical, thermal, and chemical stimuli is critical to normal physiology and the perception of pain. Contact with noxious stimuli triggers a complex series of events that initiate innate protective mechanisms designed to minimize or avoid injury. Extreme temperatures, mechanical stress, and chemical irritants are detected by specific ion channels and receptors clustered on the terminals of nociceptive sensory nerve fibers and transduced into electrical information. Propagation of these signals, from distant sites in the body to the spinal cord and the higher processing centers of the brain, is also orchestrated by distinct groups of ion channels. Since their identification in 1995, evidence has emerged to support roles for K2P channels at each step along this pathway, as receptors for physiological and noxious stimuli, and as determinants of nociceptor excitability and conductivity. In addition, the many subtypes of K2P channels expressed in somatosensory neurons are also implicated in mediating the effects of volatile, general anesthetics on the central and peripheral nervous systems. Here, I offer a critical review of the existing data supporting these attributes of K2P channel function and discuss how diverse regulatory mechanisms that control the activity of K2P channels act to govern the operation of nociceptors.
机译:感知机械,热和化学刺激的能力对于正常生理和疼痛感知至关重要。与有害刺激物接触会触发一系列复杂的事件,这些事件引发旨在减少或避免伤害的先天保护机制。极端温度,机械应力和化学刺激物通过聚集在伤害性感觉神经纤维末端的特定离子通道和受体进行检测,并转换为电信息。这些信号从人体的远处传播到脊髓以及大脑的更高处理中心的传播,也通过不同的离子通道组来协调。自1995年确定以来,已有证据支持K2P通道在该途径的每一步中的作用,它们是生理和有害刺激的受体,以及伤害感受器兴奋性和传导性的决定因素。此外,在体感神经元中表达的K2P通道的许多亚型也与介导挥发性,全身麻醉药对中枢神经系统和周围神经系统的作用有关。在这里,我对支持K2P通道功能这些属性的现有数据进行了严格的回顾,并讨论了控制K2P通道活动的各种调节机制如何控制伤害感受器的运作。

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