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背根神经节神经元中P2X受体介导的离子电流

P2X receptor-mediated ionic currents in dorsal root ganglion neurons.

作者信息

Burgard E C, Niforatos W, van Biesen T, Lynch K J, Touma E, Metzger R E, Kowaluk E A, Jarvis M F

机构信息

Neurological and Urological Diseases Research, Pharmaceutical Products Division, Abbott Laboratories, Abbott Park, Illinois 60064-3500, USA.

出版信息

J Neurophysiol. 1999 Sep;82(3):1590-8. doi: 10.1152/jn.1999.82.3.1590.

Abstract

Nociceptive neurons in the dorsal root ganglia (DRG) are activated by extracellular ATP, implicating P2X receptors as potential mediators of painful stimuli. However, the P2X receptor subtype(s) underlying this activity remain in question. Using electrophysiological techniques, the effects of P2X receptor agonists and antagonists were examined on acutely dissociated adult rat lumbar DRG neurons. Putative P2X-expressing nociceptors were identified by labeling neurons with the lectin IB4. These neurons could be grouped into three categories based on response kinetics to extracellularly applied ATP. Some DRG responses (slow DRG) were relatively slowly activating, nondesensitizing, and activated by the ATP analogue alpha,beta-meATP. These responses resembled those recorded from 1321N1 cells expressing recombinant heteromultimeric rat P2X2/3 receptors. Other responses (fast DRG) were rapidly activating and desensitized almost completely during agonist application. These responses had properties similar to those recorded from 1321N1 cells expressing recombinant rat P2X3 receptors. A third group (mixed DRG) activated and desensitized rapidly (P2X3-like), but also had a slow, nondesensitizing component that functionally prolonged the current. Like the fast component, the slow component was activated by both ATP and alpha, beta-meATP and was blocked by the P2X antagonist TNP-ATP. But unlike the fast component, the slow component could follow high-frequency activation by agonist, and its amplitude was potentiated under acidic conditions. These characteristics most closely resemble those of rat P2X2/3 receptors. These data suggest that there are at least two populations of P2X receptors present on adult DRG nociceptive neurons, P2X3 and P2X2/3. These receptors are expressed either separately or together on individual neurons and may play a role in the processing of nociceptive information from the periphery to the spinal cord.

摘要

背根神经节(DRG)中的伤害性神经元可被细胞外ATP激活,这表明P2X受体可能是疼痛刺激的潜在介质。然而,这种活性背后的P2X受体亚型仍不清楚。利用电生理技术,研究了P2X受体激动剂和拮抗剂对急性分离的成年大鼠腰段DRG神经元的影响。通过用凝集素IB4标记神经元来鉴定假定表达P2X的伤害性感受器。根据对细胞外施加ATP的反应动力学,这些神经元可分为三类。一些DRG反应(慢DRG)激活相对缓慢、不脱敏,且可被ATP类似物α,β-甲烯ATP激活。这些反应类似于在表达重组异源多聚体大鼠P2X2/3受体的1321N1细胞中记录到的反应。其他反应(快DRG)激活迅速,在激动剂应用过程中几乎完全脱敏。这些反应的特性类似于在表达重组大鼠P2X3受体的1321N1细胞中记录到的特性。第三组(混合DRG)激活和脱敏迅速(类似P2X3),但也有一个缓慢、不脱敏的成分,从功能上延长了电流。与快成分一样,慢成分可被ATP和α,β-甲烯ATP激活,并被P2X拮抗剂TNP-ATP阻断。但与快成分不同的是,慢成分可跟随激动剂的高频激活,且其幅度在酸性条件下增强。这些特性与大鼠P2X2/3受体的特性最为相似。这些数据表明,成年DRG伤害性神经元上至少存在两种P2X受体,即P2X3和P2X2/3。这些受体在单个神经元上单独或共同表达,可能在从外周到脊髓的伤害性信息处理中发挥作用。

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