Mendelowitz D
Department of Physiology and Biophysics, University of Tennessee, Memphis 38163, USA.
Am J Physiol. 1996 Dec;271(6 Pt 2):H2609-14. doi: 10.1152/ajpheart.1996.271.6.H2609.
This study tests the hypothesis that identified parasympathetic cardiac neurons in the nucleus ambiguus possess pacemaker-like activity or, alternatively, that these neurons are inherently silent. To test this hypothesis and to examine the firing properties of these neurons, parasympathetic cardiac neurons were identified by the presence of a fluorescent tracer previously applied to their terminals surrounding the heart. Perforated patch-clamp electrophysiological techniques were used to study the spontaneous and depolarization-evoked firing patterns of these identified parasympathetic cardiac neurons in an in vitro brain stem slice. Parasympathetic cardiac neurons were silent. On injection of depolarizing current, however, these neurons fired with both little delay and spike frequency adaptation. Hyperpolarizing prepulses elicited a significant delay before depolarization-evoked firing The Ca(2+)-activated K+ channel blocker apamin, but not charybdotoxin, increased the depolarization-activated firing frequency of these neurons and inhibited the afterhyperpolarization. In summary, parasympathetic cardiac neurons do not have pacemaker-like properties, but they do possess discharge characteristics that would enable them to closely follow excitatory synaptic activation for prolonged periods.
疑核中已鉴定出的副交感神经心脏神经元具有类似起搏器的活动,或者,这些神经元本质上是静息的。为了检验这一假设并研究这些神经元的放电特性,通过先前应用于心脏周围终末的荧光示踪剂的存在来鉴定副交感神经心脏神经元。采用穿孔膜片钳电生理技术,在体外脑干切片中研究这些已鉴定的副交感神经心脏神经元的自发和去极化诱发的放电模式。副交感神经心脏神经元是静息的。然而,在注入去极化电流时,这些神经元几乎没有延迟地放电且无放电频率适应性。超极化预脉冲在去极化诱发放电前引起显著延迟。钙激活钾通道阻滞剂蜂毒明肽而非大蝎毒素增加了这些神经元的去极化激活放电频率并抑制了超极化后电位。总之,副交感神经心脏神经元不具有类似起搏器的特性,但它们确实具有放电特征,这将使它们能够长时间紧密跟随兴奋性突触激活。