首页> 美国卫生研究院文献>The Journal of Neuroscience >TRPA1 Channels Mediate Cold Temperature Sensing in Mammalian Vagal Sensory Neurons: Pharmacological and Genetic Evidence
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TRPA1 Channels Mediate Cold Temperature Sensing in Mammalian Vagal Sensory Neurons: Pharmacological and Genetic Evidence

机译:TRPA1通道介导哺乳动物迷走神经感觉神经元的温度感测:药理和遗传证据。

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摘要

Cold thermoreceptors have been described in different territories of the vagus nerve. Application of cold temperature to these visceral afferents can evoke major protective reflexes and thermoregulatory responses. However, virtually nothing is known about the transduction mechanisms underlying cold sensitivity in vagal afferents. Here, we investigated the effects of cold stimulation on intracellular calcium responses and excitability of cultured vagal sensory neurons in the rat nodose ganglion. A large fraction of vagal neurons were activated by cold, with a mean threshold of ∼24°C. Cooling was accompanied by development of a small inward current and the firing of action potentials. Most cold-sensitive neurons were also activated by heat and capsaicin, suggesting a nociceptive function. The pharmacological response to TRPM8 and TRPA1 agonists and antagonists suggested that, unlike results observed in somatic tissues, TRPA1 is the major mediator of cold-evoked responses in vagal visceral neurons. Thus, most cold-evoked responses were potentiated by cinnamaldehyde, menthol, icilin, and BCTC [4-(3-chloro-pyridin-2-yl)-piperazine-1-carboxylic acid (4-tert-butyl-phenyl)-amide], agonists of TRPA1, and were inhibited by ruthenium red, camphor, and HC03001 [2-(1,3-dimethyl-2,6-dioxo-1,2,3,6-tetrahydro-7H-purin-7-yl)-N-(4-isopropylphenyl)acetamide]. Results in mouse nodose neurons revealed a similar pharmacological profile of cold-evoked responses. Furthermore, experiments in TRPA1 knock-out mice showed a large reduction in the percentage of cold-sensitive neurons compared with wild-type animals. Together, these results support an important role of TRPA1 channels in visceral thermosensation and indicate major differences in the transduction of temperature signals between somatic and visceral sensory neurons.
机译:在迷走神经的不同区域中已经描述了冷的热感受器。对这些内脏传入的物体施加冷温度会引起主要的保护反射和温度调节反应。然而,对于迷走神经传入中的冷敏感性基础的转导机制几乎一无所知。在这里,我们调查了冷刺激对大鼠结节神经节中迷走神经感觉神经元的细胞内钙反应和兴奋性的影响。迷走神经神经元的很大一部分被冷激活,平均阈值为约24°C。冷却伴随着小的内向电流的产生和动作电位的发射。多数对冷敏感的神经元也被热量和辣椒素激活,表明具有伤害性作用。对TRPM8和TRPA1激动剂和拮抗剂的药理反应表明,与在体细胞组织中观察到的结果不同,TRPA1是迷走性内脏神经元冷诱发反应的主要介质。因此,肉桂醛,薄荷醇,icilin和BCTC [4-(3-氯-吡啶-2-基)-哌嗪-1-羧酸(4-叔丁基-苯基)-酰胺增强了大多数冷诱发的反应。 ],是TRPA1的激动剂,并受到钌红,樟脑和HC03001 [2-(1,3-二甲基-2,6-二氧-1,2,3,6-四氢-7H-嘌呤-7-基)-N-(4-异丙基苯基)乙酰胺]。小鼠结节神经元的结果显示了冷诱发反应的相似药理学特征。此外,与野生型动物相比,在TRPA1敲除小鼠中进行的实验表明,冷敏感神经元的百分比大大降低。总之,这些结果支持TRPA1通道在内脏热感觉中的重要作用,并表明体细胞和内脏感觉神经元之间温度信号的传递存在重大差异。

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