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温度对大鼠尾主动脉神经肌肉传递的影响。

The effect of temperature on neuromuscular transmission in the main caudal artery of the rat.

作者信息

Cassell J F, McLachlan E M, Sittiracha T

机构信息

Baker Medical Research Institute, Prahran, Victoria, Australia.

出版信息

J Physiol. 1988 Mar;397:31-49. doi: 10.1113/jphysiol.1988.sp016986.

Abstract
  1. Excitatory junction potentials (EJPs) recorded in isolated segments of the proximal main ventral artery of the rat tail were reduced in amplitude and prolonged in time course as temperature was lowered from 35 to 15 degrees C. 2. The slow depolarization that followed the EJPs after supramaximal or repetitive perivascular stimulation was markedly slowed in time course, but little affected in amplitude, as temperature was lowered. 3. The time constant (tau EJP) of the exponential decay phase of the EJP recorded from cells deep in the media was similar to the membrane time constant, so that the increase in tau EJP at low temperatures is consistent with a decrease in membrane conductance. 4. The value of tau EJP was also prolonged if the EJP was evoked at the time of the peak of the slow depolarization; this effect was blocked by idazoxan (10(-7) M) but not by prazosin (10(-6) M). 5. During repeated short bursts of high-frequency stimulation, action potential initiation was facilitated by both the prolongation of EJPs and summation of slow depolarizations; these effects were greater at 25 than at 35 degrees C. 6. The interactions between EJPs and alpha-adrenoreceptor-mediated membrane conductance changes are considered with respect to the electrical events occurring during sympathetic neuromuscular transmission at the natural temperatures of the rat tail.
摘要
  1. 当温度从35摄氏度降至15摄氏度时,在大鼠尾部近端主腹动脉分离段记录到的兴奋性接头电位(EJP)幅度减小,时程延长。2. 超最大或重复性血管周围刺激后跟随EJP出现的缓慢去极化,其时程在温度降低时明显减慢,但幅度影响不大。3. 从血管中层深处细胞记录到的EJP指数衰减相的时间常数(tau EJP)与膜时间常数相似,因此低温时tau EJP的增加与膜电导降低一致。4. 如果在缓慢去极化峰值时诱发EJP,tau EJP的值也会延长;这种效应被咪唑克生(10^(-7) M)阻断,但未被哌唑嗪(10^(-6) M)阻断。5. 在高频刺激的重复短串刺激期间,EJP的延长和缓慢去极化的总和均促进动作电位的起始;这些效应在25摄氏度时比在35摄氏度时更明显。6. 就大鼠尾部自然温度下交感神经肌肉传递过程中发生的电事件而言,对EJP与α-肾上腺素能受体介导的膜电导变化之间的相互作用进行了探讨。

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