首页> 外文期刊>Hypertension research: Official journal of the Japanese Society of Hypertension >Monosynaptic excitatory connection from the rostral ventrolateral medulla to sympathetic preganglionic neurons revealed by simultaneous recordings.
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Monosynaptic excitatory connection from the rostral ventrolateral medulla to sympathetic preganglionic neurons revealed by simultaneous recordings.

机译:同步记录显示从延髓腹侧延髓到交感神经节前神经元的单突触兴奋性连接。

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To directly investigate whether a monosynaptic connection exists between neurons in the rostral ventrolateral medulla (RVLM) and sympathetic preganglionic neurons (SPNs), we used simultaneous extracellular recordings of RVLM neurons and whole-cell patch-clamp recordings of SPNs at the Th2 level and analyzed them by spike-triggered averaging. We averaged 200 sweeps of membrane potentials in SPN triggered by the spikes in the RVLM neuron. No clear postsynaptic potentials were detected in the averaged wave of SPNs before angiotensin II (Ang II) superfusion, whereas during superfusion with Ang II (6 micromol/L) on the medulla oblongata side alone excitatory postsynaptic potentials (EPSPs) were clearly found in the SPN of 3 out of 10 pairs at 40 +/- 1 ms after the averaged triggering spike in the RVLM neuron. We consider them to be monosynaptic EPSPs, because 1) the averaged EPSPs exhibited a sharp rise time, 2) the onset latency of the averaged EPSPs in the SPNs after the trigger spike in the RVLM was the same as the latency of the antidromic action potentials in the RVLM neurons in response to electrical stimulation of the SPNs, and 3) the amplitude of the averaged EPSPs was over 2 mV. In summary, combining simultaneous recording and spike-triggered averaging allowed us to demonstrate a monosynaptic excitatory connection between a single RVLM neuron and a single SPN in the thoracic spinal cord. Such connections provide the basis for the maintenance of sympathetic tone and the integrative reflex that relays through the RVLM. The results explain the mechanism by which Ang II in the RVLM area increases peripheral sympathetic activity and blood pressure.
机译:为了直接研究在延髓腹侧延髓(RVLM)的神经元和交感神经节前神经元(SPN)之间是否存在单突触连接,我们使用了RVLM神经元的同时细胞外记录和在Th2水平上的SPN的全细胞膜片钳记录,并进行了分析。通过尖峰触发平均得到它们。我们平均RVLM神经元的尖峰触发了SPN中200次膜电位扫描。在血管紧张素II(Ang II)灌注之前,在平均SPNs波中未检测到明显的突触后电位,而在长延髓一侧单独用Ang II(6 micromol / L)灌注期间,在大脑中清楚地发现了兴奋性突触后电位(EPSPs)。在RVLM神经元的平均触发峰值后的40 +/- 1毫秒内,每10对中有3个SPN。我们认为它们是单突触性EPSP,因为1)平均EPSP表现出急剧的上升时间,2)RVLM中触发尖峰后SPN中平均EPSPs的发作潜伏期与抗驱动作电位的潜伏期相同响应SPN的电刺激,在RVLM神经元中出现了这种现象; 3)平均EPSP的幅度超过2 mV。总之,将同时记录和峰值触发平均相结合,使我们能够证明胸脊髓中单个RVLM神经元和单个SPN之间的单突触兴奋性连接。这样的连接为维持同情音调和通过RVLM传递的整体反射提供了基础。结果解释了RVLM区域中Ang II增加外周交感活动和血压的机制。

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