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Vagal Sensory Neuron Subtypes that Differentially Control Breathing

机译:迷走神经感觉神经元亚型,差异控制呼吸。

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摘要

Breathing is essential for survival and under precise neural control. The vagus nerve is a major conduit between lung and brain required for normal respiration. Here, we identify two populations of mouse vagus nerve afferents (P2ry1, Npy2r), each a few hundred neurons, that exert powerful and opposing effects on breathing. Genetically guided anatomical mapping revealed that these neurons densely innervate the lung and send long-range projections to different brainstem targets. Npy2r neurons are largely slow-conducting C fibers, while P2ry1 neurons are largely fast-conducting A fibers that contact pulmonary endocrine cells (neuroepithelial bodies). Optogenetic stimulation of P2ry1 neurons acutely silences respiration, trapping animals in exhalation, while stimulating Npy2r neurons causes rapid, shallow breathing. Activating P2ry1 neurons did not impact heart rate or gastric pressure, other autonomic functions under vagal control. Thus, the vagus nerve contains intermingled sensory neurons constituting genetically definable labeled lines with different anatomical connections and physiological roles.
机译:呼吸对于生存和在精确的神经控制下至关重要。迷走神经是正常呼吸所需的肺与脑之间的主要管道。在这里,我们确定了两个小鼠迷走神经传入群体(P2ry1,Npy2r),每个群体都有数百个神经元,它们对呼吸产生强大而相反的作用。遗传指导的解剖图谱显示,这些神经元密集地支配着肺部,并向不同的脑干目标发送远程投影。 Npy2r神经元主要是慢传导的C纤维,而P2ry1神经元主要是与肺内分泌细胞(神经上皮体)接触的快速传导的A纤维。 P2ry1神经元的光遗传学刺激会突然使呼吸沉默,将动物困在呼气中,而刺激Npy2r神经元会导致快速,浅呼吸。激活P2ry1神经元不会影响迷走神经控制下的心律或胃压力以及其他自主神经功能。因此,迷走神经包含混合的感觉神经元,它们构成具有不同解剖学连接和生理作用的遗传上可定义的标记线。

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