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抑制钙依赖性动作电位后超极化可增加家兔内脏感觉神经元的兴奋性。

Inhibition of calcium-dependent spike after-hyperpolarization increases excitability of rabbit visceral sensory neurones.

作者信息

Weinreich D, Wonderlin W F

机构信息

Department of Pharmacology and Experimental Therapeutics, University of Maryland School of Medicine, Baltimore 21201.

出版信息

J Physiol. 1987 Dec;394:415-27. doi: 10.1113/jphysiol.1987.sp016878.

Abstract
  1. Conventional intracellular recordings were made from rabbit nodose neurones in vitro. Prostaglandins D2 and E2, but not F2 alpha, produced a selective, concentration-dependent (1-100 nM) inhibition of a slow, Ca2+-dependent spike after-hyperpolarization (a.h.p.). Block of the slow a.h.p. was accompanied by an increased membrane resistance and a small (less than 10 mV) depolarization of the membrane potential. Inhibition of the slow a.h.p. produced no change in the voltage-current relationship other than the increased membrane resistance. 2. In C neurones with slow a.h.p.s, trains of brief depolarizing current pulses (2 ms duration, 0.1-10 Hz) could not elicit repetitive action potentials without failure at rates above 0.1 Hz. By contrast, C neurones without slow a.h.p.s could respond at stimulus frequencies up to 10 Hz. The frequency-dependent spike firing ability of slow a.h.p. neurones was eliminated by inhibition of the slow a.h.p. 3. Action potentials were also evoked by intrasomatic injection of paired, depolarizing current ramps (1 nA/10 ms, 0.1-5 s inter-ramp interval). For neurones without a slow a.h.p., the current threshold and number of evoked spikes were the same for both ramps, and the ramps were nearly superimposable. In neurones with a slow a.h.p., the current threshold for the first spike in the second ramp was greatly increased (300-500%) and the number of evoked spikes was reduced. Following inhibition of the slow a.h.p., the current threshold and number of evoked spikes was the same for both ramps. 4. Forskolin, a direct activator of the catalytic subunit of adenylate cyclase, also produced a concentration-dependent inhibition of the slow a.h.p., with 50% block at 30 nM. Prostaglandin D2 and forskolin produced identical enhancement of excitability in C neurones and neither substance produced any effect on C neurones that could not be attributed to inhibition of the Ca2+-dependent K+ conductance associated with the slow a.h.p. We propose that, in some visceral sensory neurones, the level of excitability is regulated by cyclic AMP-mediated control of the slow a.h.p.
摘要
  1. 采用常规细胞内记录方法,在体外对兔结状神经元进行记录。前列腺素D2和E2能选择性地、浓度依赖性地(1 - 100 nM)抑制一种缓慢的、依赖Ca2+的动作电位后超极化(a.h.p.),而前列腺素F2α则无此作用。缓慢a.h.p.的阻断伴随着膜电阻增加以及膜电位出现小幅度(小于10 mV)的去极化。除了膜电阻增加外,缓慢a.h.p.的抑制对电压 - 电流关系没有产生其他变化。2. 在具有缓慢a.h.p.的C类神经元中,一系列短暂的去极化电流脉冲(持续时间2 ms,频率0.1 - 10 Hz)在频率高于0.1 Hz时不能无衰减地引发重复动作电位。相比之下,没有缓慢a.h.p.的C类神经元能够对高达10 Hz的刺激频率做出反应。缓慢a.h.p.神经元的频率依赖性动作电位发放能力通过抑制缓慢a.h.p.而被消除。3. 通过向胞内注射成对的去极化电流斜坡(1 nA/10 ms,斜坡间间隔0.1 - 5 s)也能诱发动作电位。对于没有缓慢a.h.p.的神经元,两个斜坡的电流阈值和诱发的动作电位数量相同,并且斜坡几乎完全重叠。在具有缓慢a.h.p.的神经元中,第二个斜坡中第一个动作电位的电流阈值大幅增加(300 - 500%),并且诱发动作电位的数量减少。在抑制缓慢a.h.p.后,两个斜坡的电流阈值和诱发动作电位的数量相同。4. 福斯可林是腺苷酸环化酶催化亚基的直接激活剂,它也能浓度依赖性地抑制缓慢a.h.p.,在30 nM时产生50%的阻断作用。前列腺素D2和福斯可林在C类神经元中产生相同的兴奋性增强作用,并且这两种物质对那些不能归因于与缓慢a.h.p.相关的依赖Ca2+的K+电导抑制的C类神经元没有任何影响。我们提出,在一些内脏感觉神经元中,兴奋性水平是由环磷酸腺苷介导的对缓慢a.h.p.的控制来调节的。

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