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Independent purinergic mechanisms of central and peripheral chemoreception in the rostral ventrolateral medulla

机译:延髓腹侧延髓中枢和外周化学感受的独立嘌呤能机制

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摘要

The rostral ventrolateral medulla oblongata (RVLM) contains two functionally distinct types of neurons that control and orchestrate cardiovascular and respiratory responses to hypoxia and hypercapnia. One group is composed of the central chemoreceptor neurons of the retrotrapezoid nucleus, which provides a CO2/H+-dependent drive to breathe and serves as an integration centre and a point of convergence of chemosensory information from other central and peripheral sites, including the carotid bodies. The second cluster of RVLM cells forms a population of neurons belonging to the C1 catecholaminergic group that controls sympathetic vasomotor tone in resting conditions and in conditions of hypoxia and hypercapnia. Recent evidence suggests that ATP-mediated purinergic signalling at the level of the RVLM co-ordinates cardiovascular and respiratory responses triggered by hypoxia and hypercapnia by activating retrotrapezoid nucleus and C1 neurons, respectively. The role of ATP-mediated signalling in the RVLM mechanisms of cardiovascular and respiratory activities is the main subject of this short review.
机译:延髓腹侧延髓(RVLM)包含两种功能不同的神经元,它们控制和协调对缺氧和高碳酸血症的心血管和呼吸系统反应。一组由梯形后核的中央化学感受器神经元组成,可提供依赖CO2 / H +的呼吸驱动力,并且是其他中枢和周围部位(包括颈动脉体)的化学感应信息的整合中心和汇聚点。 RVLM细胞的第二个簇形成一个神经元群,该神经元群属于C1儿茶酚胺能组,在休息状态以及缺氧和高碳酸血症的情况下,控制交感血管舒缩。最近的证据表明,在RVLM水平上,ATP介导的嘌呤能传递信号通过分别激活梯形后核和C1神经元来协调由缺氧和高碳酸血症引发的心血管和呼吸反应。 ATP介导的信号在心血管和呼吸活动的RVLM机制中的作用是本简短综述的主要主题。

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