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Evidence for both adenosine A1 and A2A receptors activating single vagal sensory C-fibres in guinea pig lungs

机译:豚鼠肺中腺苷A1和A2A受体均激活迷走神经感觉C纤维的证据

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摘要

We addressed the hypothesis that single vagal afferent C-fibres can be stimulated via either the adenosine A1 or A2A receptor subtypes. The effect of adenosine on the nerve terminals of vagal sensory nerve subtypes was evaluated in an ex vivo perfused guinea pig lung preparation using extracellular recording techniques. Adenosine (10 μm) consistently evoked action potential discharge in lung C-fibre terminals arising from the nodose ganglia, but failed to evoke action potential discharge in most jugular ganglion C-fibres. Adenosine also failed to activate stretch-sensitive nodose A-fibres in the lungs. The selective A1 antagonist DPCPX (0.1 μm) or the selective A2A antagonist SCH 58261 (0.1 μm) partially inhibited the nodose C-fibre activation by adenosine, and the combination of both antagonists almost completely inhibited the response. The adenosine-induced action potential discharge in nodose C-fibres was mimicked by either the selective A1 agonist CCPA (1 μm) or the selective A2A agonist CGS 21680 (1 μm). Single cell PCR techniques revealed that adenosine A1 and A2A receptor mRNA was expressed in individual nodose neurons retrogradely labelled from the lungs. The gramicidin-perforated patch clamp technique on neurons retrogradely labelled from the lungs was employed to study the functional consequence of adenosine receptor agonists directly on neuronal membrane properties. Both the selective A1 agonist CCPA (1 μm) and the selective A2A agonist CGS 21680 (1 μm) depolarized the airway-specific, capsaicin-sensitive, nodose neurons to action potential threshold. The data support the hypothesis that adenosine selectively depolarizes vagal nodose C-fibre terminals in the lungs to action potential threshold, by stimulation of both adenosine A1 and A2A receptor subtypes located in the neuronal membrane.
机译:我们提出了一个假设,即可以通过腺苷A1或A2A受体亚型刺激单个迷走神经传入C纤维。腺苷对迷走感觉神经亚型的神经末梢的影响在细胞外记录技术的离体灌注豚鼠肺制备物中进行了评估。腺苷(10μm)始终引起由结节性神经节引起的肺C纤维末端的动作电位放电,但未能引起大多数颈神经节C纤维的动作电位放电。腺苷也未能激活肺中拉伸敏感的结节A纤维。选择性A1拮抗剂DPCPX(0.1μm)或选择性A2A拮抗剂SCH 58261(0.1μm)部分抑制腺苷对结节C纤维的激活,两种拮抗剂的组合几乎完全抑制了应答。选择性A1激动剂CCPA(1μm)或选择性A2A激动剂CGS 21680(1μm)模仿了腺瘤C纤维中腺苷诱导的动作电位放电。单细胞PCR技术显示腺苷A1和A2A受体mRNA在从肺中逆行标记的单个结节神经元中表达。肺部逆行标记的神经元上的大蒜素穿孔穿孔膜片钳技术被用于研究腺苷受体激动剂对神经元膜特性的直接作用。选择性A1激动剂CCPA(1μm)和选择性A2A激动剂CGS 21680(1μm)使气道特异性辣椒素敏感的结节神经元去极化至动作电位阈值。数据支持以下假设:通过刺激位于神经元膜中的腺苷A1和A2A受体亚型,腺苷选择性地使肺中迷走性结节C纤维末端去极化至动作电位阈值。

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