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爆发式模式刺激促进离体灌注大鼠交感神经节中的烟碱传递。

Burst-patterned stimulation promotes nicotinic transmission in isolated perfused rat sympathetic ganglia.

作者信息

Birks R I, Isacoff E Y

机构信息

Physiology Department, McGill University, Montreal, Quebec, Canada.

出版信息

J Physiol. 1988 Aug;402:515-32. doi: 10.1113/jphysiol.1988.sp017218.

Abstract
  1. Intracellular recordings of small nicotinic excitatory postsynaptic potentials (EPSPs) were made from rostral cells in superior cervical ganglia (SCG) of rats during and after test stimulation of small preganglionic fibre bundles, while perfusing the isolated ganglia via their arterial vasculature. Perfusion, in contrast to superfusion of desheathed ganglia, (a) produced much more rapid and complete equilibration of drugs and ions at synaptic sites, (b) greatly reduced depression of EPSPs during high-frequency stimulation, and (c) largely prevented slowing of conduction, presumably by minimizing accumulation of K+ in the intercellular spaces surrounding these sites. 2. Preganglionic inputs were found to fall into two major groups: those in which the EPSP amplitude during 200 pulse trains was facilitated and others in which it was depressed as stimulation frequency in the train was increased from 2 to 20 Hz or from 0.2 to 1.25 Hz. Both the facilitation and the depression were presynaptic, since they occurred without changes in miniature EPSP amplitude. 3. The maximum maintained facilitation was reached at 5-10 Hz with a value 1.26 times the 1.0 Hz control. This was associated with an increase in the binomial parameter n. While long 20 Hz trains produced a similar facilitation to an early plateau, and an increase in n, EPSP amplitude declined as the train progressed. This was associated with a decrease in the binomial parameter p. 4. Unlike the 20 Hz trains, stimulation with 0.5 s long, 20 Hz bursts given every 8 s produced a marked potentiation in facilitating units and this was maintained for as long as the stimulation was continued (3-11 min). Burst-patterned potentiation was 1.66 times larger than the facilitation evoked by tonic stimulation at the same average frequency (1.25 Hz), and more than twice that achieved with long, 200 pulse trains. The potentiation was associated with increases in both n and p in the first EPSP of the burst and mainly with an increase in n at the end of the burst. Potentiation persisted unchanged for about 30 s following the return to control 0.2 Hz stimulation, before declining to control levels over the next 2-3 min. Depressing units on average showed neither burst-patterned potentiation nor post-burst-patterned potentiation. 5. All inputs tested in Locke solution in which Ca2+ was reduced to 0.5 mM with addition of 1.2 mM-Mn2+ or 3.8 mM-MgCl2 exhibited a pronounced facilitation within each burst but no extension of potentiation into ensuing bursts. Both burst-patterned potentiation and the post-burst-patterned potentiation were abolished.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 在通过动脉血管灌注分离的大鼠颈上神经节(SCG)时,对节前小纤维束进行测试刺激期间及之后,从颈上神经节头端细胞记录微小烟碱型兴奋性突触后电位(EPSP)。与去鞘神经节的表面灌注相比,灌注(a)在突触部位使药物和离子更快且更完全地达到平衡,(b)在高频刺激期间极大地减少了EPSP的衰减,并且(c)很大程度上防止了传导减慢,推测这是通过使这些部位周围细胞间隙中K⁺的积累最小化来实现的。2. 发现节前输入可分为两大类:一类在200次脉冲串期间EPSP幅度增强,另一类在串内刺激频率从2Hz增加到20Hz或从0.2Hz增加到1.25Hz时EPSP幅度降低。增强和降低均为突触前性的,因为它们发生时微小EPSP幅度没有变化。3. 在5 - 10Hz时达到最大持续增强,其值为1.0Hz对照值的1.26倍。这与二项式参数n的增加有关。虽然长时间的20Hz脉冲串产生的增强类似于早期平台期,且n增加,但随着脉冲串的进行EPSP幅度下降。这与二项式参数p的降低有关。4. 与20Hz脉冲串不同,每8秒给予一次0.5秒长、20Hz的爆发式刺激在增强型单位中产生明显的增强作用,并且只要刺激持续(3 - 11分钟)就会持续存在。爆发式增强比相同平均频率(1.25Hz)的强直刺激所诱发的增强大1.66倍,是长200次脉冲串所实现增强的两倍多。增强与爆发中第一个EPSP的n和p增加有关,且在爆发结束时主要与n的增加有关。在恢复到对照的0.2Hz刺激后,增强持续约30秒不变,然后在接下来的2 - 3分钟内降至对照水平。抑制型单位平均既未表现出爆发式增强也未表现出爆发后增强。5. 在添加1.2mM - Mn²⁺或3.8mM - MgCl₂使Ca²⁺降至0.5mM的洛克溶液中测试的所有输入,在每个爆发内均表现出明显的增强,但增强未延伸至随后的爆发。爆发式增强和爆发后增强均被消除。(摘要截断于400字)

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