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GTP-induced tetrodotoxin-resistant Na+ current regulates excitability in mouse and rat small diameter sensory neurones

机译:GTP诱导的河豚毒素抗性Na +电流调节小鼠和大鼠小直径感觉神经元的兴奋性

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摘要

Peripheral pain thresholds are regulated by the actions of inflammatory mediators. Some act through G-protein-coupled receptors on voltage-gated sodium channels. We have found that a low-threshold, persistent tetrodotoxin-resistant Na+ current, attributed to NaV1.9, is upregulated by GTP and its non-hydrolysable analogue GTP-γ-S, but not by GDP. Inclusion of GTP-γ-S (500 μm) in the internal solution led to an increase in maximal current amplitude of > 300 % within 5 min. In current clamp, upregulation of persistent current was associated with a more negative threshold for action potential induction (by 15–16 mV) assessed from a holding potential of −90 mV. This was not seen in neurones without the low-threshold current or with internal GDP (P < 0.001). In addition, persistent current upregulation depolarized neurones. At −60 mV, internal GTP-γ-S led to the generation of spontaneous activity in initially silent neurones only when persistent current was upregulated. These findings suggest that regulation of the persistent current has important consequences for nociceptor excitability.
机译:周围疼痛阈值由炎症介质的作用调节。一些通过在电压门控钠通道上的G蛋白偶联受体起作用。我们发现,归因于NaV1.9的低阈值持久性河豚毒素抗性Na + 电流受GTP及其不可水解的类似物GTP-γ-S上调,但不受GDP上调。内部溶液中包含GTP-γ-S(500μm)导致在5分钟内最大电流幅度增加> 300%。在电流钳制中,持续电流的上调与从-90 mV的保持电势评估的动作电势感应的更负阈值(15-16 mV)相关。在没有低阈值电流或内部GDP的神经元中没有看到这种情况(P <0.001)。另外,持续的电流上调使神经元去极化。在-60 mV时,仅当持续电流上调时,内部GTP-γ-S才在最初的沉默神经元中导致自发活动的产生。这些发现表明持续电流的调节对伤害感受器的兴奋性具有重要的影响。

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