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哺乳动物小脑切片中体外浦肯野细胞胞体的电生理特性

Electrophysiological properties of in vitro Purkinje cell somata in mammalian cerebellar slices.

作者信息

Llinás R, Sugimori M

出版信息

J Physiol. 1980 Aug;305:171-95. doi: 10.1113/jphysiol.1980.sp013357.

Abstract
  1. The electrical activity of Purkinje cells was studied in guinea-pig cerebellar slices in vitro. Intracellular recordings from Purkinje cell somata were obtained under direct vision, and antidromic, synaptic and direct electroresponsiveness was demonstrated. Synaptic potentials produced by the activation of the climbing fibre afferent could be reversed by direct membrane depolarization. 2. Input resistance of impaled neurones ranged from 10 to 19 M omega and demonstrated non-linearities in both hyperpolarizing and depolarizing directions. 3. Direct activation of a Purkinje cell indicated that repetitive firing of fast somatic spikes (s.s.) occurs, after a threshold, with a minimum spike frequency of about 30 spikes/sec, resembling the '2-class' response of crab nerve (Hodgkin, 1948). 4. As the amplitude of the stimulus was increased, a second form of electroresponsiveness characterized by depolarizing spike bursts (d.s.b.) was observed and was often accomppanied by momentary inactivation of the s.s. potentials. Upon application of tetrodotoxin (TTX) or removal of Na+ ions from the superfusion fluid, the s.s. potentials were abolished while the burst responses remained intact. However, Ca conductance blockers such as Co, Cd, Mn and D600, or the replacement of Ca by Mg, completely abolish d.s.b.s. 5. If Ca conductance was blocked, or Ca removed from the superfusion fluid without blockage of Na conductance, two types of Na-dependent electroresponsiveness were seen: (a) the s.s. potentials and (b) slow rising all-or-none responses which reached plateau at approximately -15 mV and could last for several seconds. These all-or-none Na-dependent plateau depolarizations outlasted the stimulus and were accompanied by a large increase in membrane conductance. Within certain limits the rate of rise and amplitude of the plateau were independent of stimulus strength. The latency, however, was shortened as stimulus amplitude was increased. These potentials were blocked by TTX or by Na-free solutions. 6. Substitution of extracellular Ca by Ba or intracellular injection of tetraethylammonium generated prolonged action potentials lasting for several seconds and showing a plateau more ositive than those obtained in norrmal circumstances by either non-inactivating Na or Ca currents. 7. Spontaneous firing of the Purkinje cell was characterized by burst-like activity consisting of both s.s. and d.s.b. responses. Addition of TTX to the bath left the basic spontaneous activity and its frequency unaltered, indicating tha Ca spiking and Ca-dependent K conductance changes are the main events underlying this oscillatory behaviour. 8...
摘要
  1. 在豚鼠小脑离体切片中研究了浦肯野细胞的电活动。在直视下从浦肯野细胞胞体进行细胞内记录,并证明了其逆向、突触和直接电反应性。由攀缘纤维传入激活产生的突触电位可通过直接膜去极化而反转。2. 被穿刺神经元的输入电阻范围为10至19兆欧,并在超极化和去极化方向均表现出非线性。3. 浦肯野细胞的直接激活表明,在阈值之后会出现快速体细胞锋电位(s.s.)的重复发放,最小锋电位频率约为30次/秒,类似于蟹神经的“2类”反应(霍奇金,1948年)。4. 随着刺激幅度的增加,观察到第二种电反应形式,其特征为去极化锋电位爆发(d.s.b.),并且常常伴随着s.s.电位的瞬时失活。应用河豚毒素(TTX)或从灌流液中去除Na+离子后,s.s.电位消失,而爆发反应仍然完整。然而,Ca2+电导阻滞剂如Co、Cd、Mn和D600,或用Mg替代Ca,可完全消除d.s.b.。5. 如果Ca2+电导被阻断,或者从灌流液中去除Ca2+而不阻断Na+电导,则会出现两种类型的Na+依赖性电反应:(a)s.s.电位和(b)缓慢上升的全或无反应,在约-15 mV处达到平台期,并可持续数秒。这些全或无的Na+依赖性平台期去极化持续时间超过刺激,并伴随着膜电导的大幅增加。在一定限度内,平台期的上升速率和幅度与刺激强度无关。然而,潜伏期随着刺激幅度的增加而缩短。这些电位被TTX或无Na+溶液阻断。6. 用Ba替代细胞外Ca2+或细胞内注射四乙铵可产生持续数秒的延长动作电位,并显示出比正常情况下由非失活Na+或Ca2+电流获得的平台期更正的平台期。7. 浦肯野细胞的自发放电特征为爆发样活动,包括s.s.和d.s.b.反应。向浴槽中加入TTX后,基本的自发放电活动及其频率未改变,表明Ca2+锋电位和Ca2+依赖性K+电导变化是这种振荡行为的主要事件。8...
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/507c/1282966/51049d65f534/jphysiol00718-0199-a.jpg

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