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与外周化学感受反射通路相关的孤束核神经元的突触形态。

Synaptic profile of nucleus tractus solitarius neurons involved with the peripheral chemoreflex pathways.

机构信息

Department of Physiology, School of Medicine of Ribeirão Preto, University of São Paulo, 14049-900 Ribeirão Preto, São Paulo, Brazil.

出版信息

Neuroscience. 2011 Dec 1;197:107-20. doi: 10.1016/j.neuroscience.2011.08.054. Epub 2011 Sep 21.

Abstract

The glomus cells in the carotid bodies (CB) detect alterations in pH and pCO₂ and low pO₂ level in arterial blood. The carotid sinus nerve conveys the information related to the oxygen level to 2nd-order neurons in the nucleus tractus solitarius (NTS) via tractus solitarius (TS), which is part of the chemoreflex pathways. It has been demonstrated that in 2nd-order NTS neurons receiving inputs from the aortic depressor nerve (ADN), the TS stimulation presents high temporal fidelity. However, the temporal properties of synaptic activity in NTS neurons receiving inputs from CB were not yet fully investigated. Herein using patch-clamp recordings in NTS brainstem slices, we studied TS-evoked excitatory postsynaptic currents (TS-eEPSCs) on morphologically identified 2nd-order NTS neurons that receive afferent inputs from the CB and compared with 2nd-order ADN-NTS neurons recorded in the same experimental conditions. The amplitudes of TS-eEPSCs were similar in both groups, but the latencies and standard deviation (SD) of latency were significantly higher in the CB-NTS neurons (latency: 4±0.2 ms, SD: 0.49±0.03 ms) than in ADN-NTS neurons (latency: 3.3±0.3 ms, SD: 0.19±0.02 ms; P=0.049 for latency and P<0.001 for SD of latency). In a series of double-labeling experiments, we confirmed that some CB-NTS 2nd-order neurons send direct projections to the rostral ventrolateral medulla (RVLM). We conclude that: (a) CB-NTS 2nd-order neurons present temporally distinct postsynaptic currents when compared with ADN-NTS 2nd-order neurons; (b) low SD of latency of TS-eEPSCs is not necessarily a characteristic of all 2nd-order neurons in the NTS; and (c) the presence of direct connections between these 2nd-order neurons in the NTS and RVLM is indicative that these synaptic properties of CB-NTS neurons are relevant for the processing of respiratory and autonomic responses to chemoreflex activation.

摘要

颈动脉体(CB)中的球细胞检测动脉血中 pH 值和 pCO₂的变化以及低 pO₂水平。颈动脉窦神经通过孤束核(NTS)中的孤束(TS)将与氧气水平相关的信息传递给 2 级神经元,TS 是化学反射途径的一部分。已经证明,在接收主动脉降压神经(ADN)输入的 2 级 NTS 神经元中,TS 刺激具有很高的时间保真度。然而,接收来自 CB 输入的 NTS 神经元中突触活动的时间特性尚未得到充分研究。在此,我们使用 NTS 脑干切片中的膜片钳记录,研究了在形态学上鉴定的接收来自 CB 传入输入的 2 级 NTS 神经元上的 TS 诱发兴奋性突触后电流(TS-eEPSC),并将其与在相同实验条件下记录的 2 级 ADN-NTS 神经元进行比较。两组的 TS-eEPSC 幅度相似,但 CB-NTS 神经元的潜伏期和潜伏期标准偏差(SD)明显较高(潜伏期:4±0.2ms,SD:0.49±0.03ms)比 ADN-NTS 神经元(潜伏期:3.3±0.3ms,SD:0.19±0.02ms;潜伏期的 P=0.049,潜伏期 SD 的 P<0.001)。在一系列双标记实验中,我们证实了一些 CB-NTS 2 级神经元向延髓头端腹外侧区(RVLM)直接投射。我们得出结论:(a)与 ADN-NTS 2 级神经元相比,CB-NTS 2 级神经元呈现出时间上不同的突触后电流;(b)TS-eEPSC 的潜伏期 SD 较低不一定是 NTS 中所有 2 级神经元的特征;(c)这些 NTS 中的 2 级神经元与 RVLM 之间存在直接连接表明,这些 CB-NTS 神经元的突触特性与对化学反射激活的呼吸和自主反应的处理有关。

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