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Depolarizing Effectors of Bradykinin Signaling in Nociceptor Excitation in Pain Perception

机译:疼痛感知中伤害感受器激发中缓激肽信号的去极化效应

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摘要

Inflammation is one of the main causes of pathologic pain. Knowledge of the molecular links between inflammatory signals and pain-mediating neuronal signals is essential for understanding the mechanisms behind pain exacerbation. Some inflammatory mediators directly modulate the excitability of pain-mediating neurons by contacting the receptor molecules expressed in those neurons. For decades, many discoveries have accumulated regarding intraneuronal signals from receptor activation through electrical depolarization for bradykinin, a major inflammatory mediator that is able to both excite and sensitize pain-mediating nociceptor neurons. Here, we focus on the final effectors of depolarization, the neuronal ion channels, whose functionalities are specifically affected by bradykinin stimulation. Particular G-protein coupled signaling cascades specialized for each specific depolarizer ion channels are summarized. Some of these ion channels not only serve as downstream effectors but also play critical roles in relaying specific pain modalities such as thermal or mechanical pain. Accordingly, specific pain phenotypes altered by bradykinin stimulation are also discussed. Some members of the effector ion channels are both activated and sensitized by bradykinin-induced neuronal signaling, while others only sensitized or inhibited, which are also introduced. The present overview of the effect of bradykinin on nociceptor neuronal excitability at the molecular level may contribute to better understanding of an important aspect of inflammatory pain and help future design of further research on the components involved and pain modulating strategies.
机译:炎症是病理性疼痛的主要原因之一。了解炎症信号和介导疼痛的神经元信号之间的分子联系对于了解疼痛加剧的机制至关重要。一些炎症介质通过与在神经元中表达的受体分子接触来直接调节痛觉神经元的兴奋性。数十年来,关于缓激肽的激活通过电去极化的受体激活引起的神经内神经信号已经积累了许多发现,缓激肽是一种主要的炎症介质,能够激发和敏化痛觉伤害性伤害感受器神经元。在这里,我们专注于去极化的最终效应器,即神经元离子通道,其功能受缓激肽刺激的影响特别大。总结了专门用于每个特定去极化剂离子通道的特定G蛋白偶联信号级联。这些离子通道中的一些不仅充当下游效应器,而且在传递特定的疼痛模式(例如热痛或机械痛)中也起着关键作用。因此,还讨论了通过缓激肽刺激改变的特定疼痛表型。效应子离子通道的一些成员被缓激肽诱导的神经元信号激活和敏化,而另一些仅被敏化或抑制,也被引入。目前缓激肽在分子水平上对伤害感受器神经元兴奋性的影响的概述可能有助于更好地理解炎症性疼痛的重要方面,并有助于进一步设计涉及的成分和疼痛调节策略的进一步研究。

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