Verberne A J, Sartor D M, Berke A
University of Melbourne, Clinical Pharmacology and Therapeutics Unit, Austin and Repatriation Medical Centre, Heidelberg, Victoria 3084, Australia.
Am J Physiol. 1999 Apr;276(4):R1054-62. doi: 10.1152/ajpregu.1999.276.4.R1054.
Mechanisms underlying the depressor and sympathoinhibitory responses evoked from the caudal medullary raphe (MR) region were investigated in pentobarbital sodium-anesthetized, paralyzed rats. Intermittent electrical stimulation (0.5 Hz, 0.5-ms pulses, 200 microA) of the MR elicited a mixed sympathetic response that consisted of a long-latency sympathoexcitatory (SE) peak (onset = 146 +/- 7 ms) superimposed on an inhibitory phase (onset = 59 +/- 10 ms). Chemical stimulation of the MR (glutamate; Glu) most frequently elicited depressor responses accompanied by inhibition of sympathetic nerve discharge. Occasionally, these responses were preceded by transient pressor and SE responses. We examined the influence of intermittent electrical stimulation (0.5 Hz, 0.5-ms pulses, 25-200 microA) and Glu stimulation of the MR on the discharge of rostral ventrolateral medulla (RVLM) premotor SE neurons. Peristimulus-time histograms of RVLM unit discharge featured a prominent inhibitory phase in response to MR stimulation (onset = 20 +/- 2 ms; duration = 42 +/- 4 ms; n = 12 units). Glu stimulation of the MR reduced blood pressure (-37 +/- 2 mmHg, n = 19) and inhibited the discharge of RVLM SE neurons (15 of 19 neurons). Depressor and sympathoinhibitory responses elicited by chemical and electrical stimulation of the MR region are mediated by inhibition of RVLM premotor SE neurons and withdrawal of sympathetic vasomotor discharge.
在戊巴比妥钠麻醉、麻痹的大鼠中,研究了延髓尾端中缝(MR)区域诱发降压和交感抑制反应的机制。对MR进行间歇性电刺激(0.5 Hz,0.5毫秒脉冲,200微安)引发了一种混合交感反应,该反应由一个长潜伏期的交感兴奋(SE)峰(起始时间 = 146 ± 7毫秒)叠加在一个抑制相(起始时间 = 59 ± 10毫秒)上组成。对MR进行化学刺激(谷氨酸;Glu)最常引发降压反应,并伴有交感神经放电抑制。偶尔,这些反应之前会出现短暂的升压和SE反应。我们研究了间歇性电刺激(0.5 Hz,0.5毫秒脉冲,25 - 200微安)和Glu刺激MR对延髓头端腹外侧(RVLM)运动前SE神经元放电的影响。RVLM单位放电的刺激时间直方图显示,对MR刺激有一个明显的抑制相(起始时间 = 20 ± 2毫秒;持续时间 = 42 ± 4毫秒;n = 12个单位)。Glu刺激MR可降低血压(-37 ± 2 mmHg,n = 19),并抑制RVLM SE神经元的放电(19个神经元中的15个)。MR区域的化学和电刺激引发的降压和交感抑制反应是通过抑制RVLM运动前SE神经元和撤回交感缩血管放电来介导的。