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Identification of a population of peripheral sensory neurons that regulates blood pressure

机译:鉴定调节血压的外周感觉神经元的群体

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The vasculature is innervated by a network of peripheral afferents that sense and regulate blood flow. Here, we describe a system of non-peptidergic sensory neurons with cell bodies in the spinal ganglia that regulate vascular tone in the distal arteries. We identify a population of mechanosensitive neurons, marked by tropomyosin receptor kinase C (TrkC) and tyrosine hydroxylase in the dorsal root ganglia, which projects to blood vessels. Local stimulation of TrkC neurons decreases vessel diameter and blood flow, whereas systemic activation increases systolic blood pressure and heart rate variability via the sympathetic nervous system. Ablation of the neurons provokes variability in local blood flow, leading to a reduction in systolic blood pressure, increased heart rate variability, and ultimately lethality within 48 h. Thus, a population of TrkC sensory neurons forms part of a sensory-feedback mechanism that maintains cardiovascular homeostasis through the autonomic nervous system.
机译:脉管系统由围绕感知和调节血流的外周经的网络接管。 在这里,我们描述了一种非患者感觉神经元系统,其具有细胞体在脊柱神经节中调节远端动脉中的血管间调。 我们鉴定了一种机械敏感神经元的群体,由对血管血管突出的背根神经细胞中的Tropomyosin受体激酶C(Trkc)和酪氨酸羟化酶标记。 局部刺激TRKC神经元降低血管直径和血流,而全身激活通过交感神经系统增加收缩压和心率变异性。 烧蚀神经元引起局部血流的可变性,导致收缩压降低,增加心率变异性,最终在48小时内最终致死。 因此,TRKC感觉神经元的群体形成了感觉反馈机制的一部分,其通过自主神经系统维持心血管稳态。

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