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首页> 外文期刊>The Journal of Physiology >Vagal afferent nerves with nociceptive properties in guinea-pig oesophagus.
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Vagal afferent nerves with nociceptive properties in guinea-pig oesophagus.

机译:豚鼠食道中具有伤害感受特性的迷走神经。

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Some vagal afferent nerves are thought to mediate autonomic responses evoked by noxious oesophageal stimuli and participate in the perception of pain originating in the oesophagus. However, the vagal nociceptive nerve phenotypes implicated in this function have yet to be identified. In this study, nociceptive fibres were defined by the capacity to discriminate noxious mechanical stimuli (wide range of oesophageal distension with pressure up to 100 mmHg) and detect noxious chemical stimuli (the activators of capsaicin receptor TRPV1). Using immunohistochemical techniques with retrogradely labelled oesophagus-specific neurones and performing extracellular recordings from the isolated vagally innervated oesophagus, we show that in the guinea-pig, the vagus nerves supply the oesophagus with a large population of nociceptive-like afferent nerve fibres. Vagal nociceptive-like fibres in the guinea-pig oesophagus are derived from two embryonically distinct sources: neurones situated in the nodose vagal gangliaand neurones situated in the jugular vagal ganglia. Nodose (placode-derived) nociceptive-like fibres are exclusively C-fibres sensitive to a P2X receptors agonist and rarely express the neuropeptide substance P. In contrast, jugular (neural crest-derived) nociceptive-like fibres include both A-fibres and C-fibres, are insensitive to P2X receptors agonist and mostly express substance P. The non-nociceptive vagal tension mechanoreceptors are distinguished from nociceptors by their saturable response to oesophageal distension and by the lack of TRPV1. These tension mechanoreceptors are exclusively A-fibres arising from the nodose ganglion. We conclude that the vagus nerves supply the guinea-pig oesophagus with nociceptors in addition to tension mechanoreceptors. The vagal nociceptive-like fibres in the oesophagus comprise two distinct subtypes dictated by the ganglionic location of their cell bodies.
机译:一些迷走神经传入被认为可以介导有害食道刺激引起的自主反应,并参与对食管疼痛的感知。然而,与这种功能有关的迷走性伤害性神经表型尚未确定。在这项研究中,伤害性纤维的定义是能够区分有害的机械刺激(压力高达100 mmHg的广泛食道扩张)和检测有害的化学刺激(辣椒素受体TRPV1的激活剂)。使用具有逆行标记的食管特异性神经元的免疫组织化学技术,并从孤立的经阴道神经支配的食道进行细胞外记录,我们显示,在豚鼠中,迷走神经为食道提供了大量的类似伤害感受的传入神经纤维。豚鼠食道中的迷走神经样伤害性纤维来源于两个胚胎上不同的来源:位于结节性迷走神经节中的神经元和位于颈迷走神经节中的神经元。结节(源自胶束)的伤害感受性纤维仅是对P2X受体激动剂敏感的C纤维,很少表达神经肽物质P。相反,颈(神经c衍生)的伤害感受性纤维既包含A纤维又包含C -纤维,对P2X受体激动剂不敏感,并且大多数表达P。非伤害性迷走神经张力机械感受器与伤害感受器的区别在于它们对食管扩张的饱和反应和TRPV1的缺乏。这些张力机械感受器仅是由结节神经节产生的A纤维。我们得出的结论是,迷走神经除了张力机械感受器外,还为豚鼠食道提供了伤害感受器。食道中的迷走神经样伤害性纤维包含两种不同的亚型,这些亚型由其细胞体的神经节位置决定。

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