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体外大鼠视上核神经元中慢去极化的突触激活

Synaptic activation of slow depolarization in rat supraoptic nucleus neurones in vitro.

作者信息

Dudek F E, Gribkoff V K

机构信息

Department of Physiology, Tulane University School of Medicine, New Orleans, LA 70112.

出版信息

J Physiol. 1987 Jun;387:273-96. doi: 10.1113/jphysiol.1987.sp016573.

Abstract
  1. The effects of synaptic activation on rat supraoptic nucleus (s.o.n.) neurones were studied in the hypothalamic slice preparation. Intracellular recordings were obtained from forty-one probable magnocellular neuroendocrine cells using microelectrodes filled with 3 M-potassium acetate. Responses to single and repetitive stimulation of the area dorsolateral to the s.o.n., which would be expected to activate a cholinergic pathway (Hatton, Ho & Mason, 1983), were analysed. 2. In forty of forty-one cells, responses to single stimuli consisted of a short-latency excitatory post-synaptic potential (e.p.s.p.), which was often followed by a brief burst of fast depolarizing events which resembled spontaneous e.p.s.p.s. When the membrane was depolarized, single stimuli could consistently produce a burst of action potentials. 3. Brief trains of orthodromic stimuli produced three effects in most cells. Spontaneous fast depolarizing events, which appeared to be primarily e.p.s.p.s. significantly increased in frequency after the train. A slow membrane depolarization, which lasted up to 1-2 min, was observed in twenty-eight of forty-one cells. In several cells the slow depolarization was accompanied by an increase in input resistance (Ri). In some cells an after-discharge occurred during the slow depolarization. Slow depolarizations were observed in each of eleven phasic neurones, and in a smaller percentage of non-phasic and silent cells. 4. All components of the response to dorsolateral stimulation could be reduced or blocked in low-Ca2+, high-Mg2+ bathing medium. 5. Slow depolarizations were observed when action potentials were not elicited by the stimulus train. The slow depolarization was still present after manipulations that blocked discharge during the stimulus train, including injection of hyperpolarizing current and diffusion of the quaternary ammonium compound QX314. These data argue that the slow depolarization can occur independent of spike depolarizing after-potentials (d.a.p.s). 6. In some cells antidromic stimulation at an intensity just suprathreshold for the recorded cell did not produce comparable bursts of fast depolarizing events or slow depolarizations; similar periods of depolarizing current injection, which produced repetitive discharge, also did not mimic the effects of orthodromic stimulation. 7. The fast depolarizing events appear to reflect spontaneous e.p.s.p.s; increases in the frequency of these events may reflect the after-discharge of nearby neurones that are presynaptic to the recorded neurone.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 在下丘脑脑片标本中研究了突触激活对大鼠视上核(s.o.n.)神经元的影响。使用充满3M醋酸钾的微电极,从41个可能的大细胞神经内分泌细胞中进行细胞内记录。分析了对s.o.n.背外侧区域的单次和重复刺激的反应,该区域预计会激活胆碱能通路(哈顿、何和梅森,1983年)。2. 在41个细胞中的40个细胞中,对单次刺激的反应包括一个短潜伏期兴奋性突触后电位(e.p.s.p.),随后常常是一阵短暂的快速去极化事件,类似于自发的e.p.s.p.s。当膜去极化时,单次刺激能够持续产生一阵动作电位。3. 短暂的顺向刺激序列在大多数细胞中产生了三种效应。自发的快速去极化事件,似乎主要是e.p.s.p.s,在刺激序列后频率显著增加。在41个细胞中的28个细胞中观察到了持续长达1 - 2分钟的缓慢膜去极化。在几个细胞中,缓慢去极化伴随着输入电阻(Ri)的增加。在一些细胞中,在缓慢去极化期间出现了后放电。在11个相位性神经元中的每一个以及较小比例的非相位性和静息细胞中都观察到了缓慢去极化。4. 在低钙、高镁的灌流液中,对背外侧刺激的反应的所有成分都可以被减弱或阻断。5. 当刺激序列未引发动作电位时,观察到了缓慢去极化。在包括注入超极化电流和季铵化合物QX314扩散等阻断刺激序列期间放电的操作之后,缓慢去极化仍然存在。这些数据表明,缓慢去极化可以独立于锋电位去极化后电位(d.a.p.s)而发生。6. 在一些细胞中,以刚好高于记录细胞阈值的强度进行逆向刺激并没有产生类似的快速去极化事件爆发或缓慢去极化;类似的去极化电流注入时期,产生了重复放电,也没有模拟顺向刺激的效应。7. 快速去极化事件似乎反映了自发的e.p.s.p.s;这些事件频率的增加可能反映了记录神经元突触前附近神经元的后放电。(摘要截选至400字)

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