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Sensory afferent selective role of P2 receptors in the nucleus tractus solitarii for mediating the cardiac component of the peripheral chemoreceptor reflex in rats

机译:P2受体在孤束核中介导大鼠周围化学感受器反射的心脏成分的感觉传入选择性作用

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摘要

We have assessed the functional role of type 2 purinergic (P2) receptors within the caudal aspect of the commissural nucleus tractus solitarii (NTS) in mediating the peripheral chemoreceptor reflex cardiorespiratory response in the arterially perfused in situ working heart-brainstem preparation of rats. Microinjection in NTS of either suramin (100 pmol) or pyrinoxalphosphate-6-azophenyl-2′,4′-disulphonic acid tetrasodium salt (PPADS; 10 pmol) depressed the reflex bradycardia (by ≈50 %), but not the tachypnoea, following peripheral chemoreceptor stimulation. In contrast, the reflex bradycardia produced by stimulation of pharyngo-oesophageal receptors was unaffected. Furthermore, microinjections in NTS of the P2X receptor agonist α,β-methyleneadenosine 5′-triphosphate (10 pmol) evoked a bradycardia which was antagonized by suramin (100 pmol). This P2X agonist reversibly potentiated the peripheral chemoreceptor-evoked bradycardia. The effect of suramin was selective to purinergic receptors because the bradycardia evoked by microinjection of α,β-methyleneadenosine 5′-triphosphate was blocked while the bradycardic responses to microinjections of NMDA or non-NMDA receptor agonists were not affected. From whole-cell recordings, some NTS neurones received convergent excitatory synaptic inputs from both peripheral chemoreceptors and receptors at the pharyngo-oesophageal junction. The excitatory postsynaptic response evoked by chemoreceptor stimulation was depressed by suramin, but convergent excitatory inputs from pharyngo-oesophageal receptors were unperturbed. Our findings support the hypothesis that caudal commissural NTS P2 purinergic receptors play a role in the neurotransmission of the parasympathetic (bradycardic) component of the chemoreceptor reflex. This effect is highly selective in that the chemoreceptor afferent-evoked tachypnoea, as well as other visceral receptor-mediated reflex bradycardia, remain unaffected.
机译:我们已经评估了2型嘌呤能(P2)受体在独联体尾核(NTS)的尾端内在介导大鼠动脉原位灌注心脏-脑干制剂的周围化学感受器反射性心肺反应中的功能作用。在NTS中微量注射苏拉明(100 pmol)或吡喃磷酸6-6-偶氮苯基-2',4'-二磺酸四钠盐(PPADS; 10 pmol)可抑制反射性心动过缓(约≈50%),但不会抑制心动过速周围化学感受器刺激。相反,刺激咽-食管受体产生的反射性心动过缓不受影响。此外,在NTS中显微注射P2X受体激动剂α,β-亚甲基腺苷5'-三磷酸酯(10 pmol)引起心动过缓,苏拉明(100 pmol)拮抗心动过缓。该P2X激动剂可逆地增强外周化学感受器诱发的心动过缓。苏拉明对嘌呤能受体具有选择性,因为微注射α,β-亚甲基腺苷5'-三磷酸引起的心动过缓被阻断,而对NMDA或非NMDA受体激动剂的微注射的心动过缓没有受到影响。从全细胞记录中,一些NTS神经元从咽部-食管连接处的周围化学感受器和受体接收会聚的兴奋性突触输入。苏拉明抑制了化学感受器刺激引起的兴奋性突触后反应,但咽咽食管受体的收敛性兴奋性输入不受干扰。我们的发现支持以下假设:尾部连合NTS P2嘌呤能受体在化学感受器反射的副交感神经(心动过缓)成分的神经传递中起作用。这种作用是高度选择性的,因为化学感受器引起的心动过速以及其他内脏受体介导的反射性心动过缓均不受影响。

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