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在大鼠背外侧隔区神经元中细胞内记录到的5-羟色胺的作用。

Actions of serotonin recorded intracellularly in rat dorsal lateral septal neurons.

作者信息

Joëls M, Gallagher J P

机构信息

Department of Pharmacology and Toxicology, University of Texas Medical Branch, Galveston 77550.

出版信息

Synapse. 1988;2(1):45-53. doi: 10.1002/syn.890020108.

DOI:10.1002/syn.890020108
PMID:3420530
Abstract

The actions of serotonin (5HT) on passive and active membrane properties of neurons in the rat dorsal lateral septal nucleus (LSN) were studied by using intracellular recordings in transverse, septal slices. Superfusion with 10 microM 5HT induced a hyperpolarization of the membrane in almost all neurons tested in the dorsolateral part of the LSN. The hyperpolarization was accompanied by a decrease in membrane resistance. These effects of 5HT persisted in a low-Ca2+/high-Mg2+-containing medium or medium with tetrodotoxin, indicating a post-synaptic site of action for 5HT. The reversal potential for the hyperpolarizing effect was ca. -95 mV. If the extracellular K+-concentration was raised, the reversal potential became less negative. These data suggest that 5HT hyperpolarizes LSN neurons by increasing a K+-conductance. Spontaneous, synaptically evoked action potentials and action potentials induced in LSN neurons by a depolarizing current step typically display a fast Na+-spike with a subsequent K+-afterhyperpolarization, followed by a much slower Ca2+-dependent afterdepolarization. The amplitude of the K+-afterhyperpolarization was decreased by 5HT, while at the same time the afterdepolarization became more pronounced. The Ca2+-spike of LSN neurons was not affected by 5HT. Synaptic responses that were evoked in LSN neurons by stimulation of the dorsal part of the LSN consisted of a fast EPSP or spike, followed by a Cl(-)-dependent fast IPSP and a K+-dependent late IPSP. Of these synaptic responses, 5HT suppressed particularly the late IPSP. The present data indicate that 5HT affects the conductance for active and passive K+-channels in LSN neurons.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

通过在横向的隔区切片中进行细胞内记录,研究了血清素(5-羟色胺,5HT)对大鼠背外侧隔核(LSN)神经元被动和主动膜特性的作用。用10微摩尔的5HT灌注几乎所有在LSN背外侧部分测试的神经元,都会引起膜超极化。这种超极化伴随着膜电阻的降低。5HT的这些作用在含低钙/高镁的培养基或含有河豚毒素的培养基中仍然存在,表明5HT的作用位点在突触后。超极化作用的反转电位约为-95毫伏。如果细胞外钾离子浓度升高,反转电位的负值就会减小。这些数据表明,5HT通过增加钾离子电导使LSN神经元超极化。LSN神经元中自发的、突触诱发的动作电位以及由去极化电流阶跃诱发的动作电位,通常表现为快速的钠峰电位,随后是钾离子后超极化,接着是慢得多的钙依赖性后去极化。5HT使钾离子后超极化的幅度降低,同时后去极化变得更加明显。LSN神经元的钙峰电位不受5HT影响。刺激LSN背侧部分在LSN神经元中诱发的突触反应包括快速兴奋性突触后电位(EPSP)或峰电位,随后是氯离子依赖性快速抑制性突触后电位(IPSP)和钾离子依赖性迟发性IPSP。在这些突触反应中,5HT特别抑制迟发性IPSP。目前的数据表明,5HT影响LSN神经元中主动和被动钾离子通道的电导。(摘要截短于250字)

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