首页> 美国卫生研究院文献>The Journal of Physiology >Gamma-aminobutyric acid uptake and the termination of inhibitory synaptic potentials in the rat hippocampal slice.
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Gamma-aminobutyric acid uptake and the termination of inhibitory synaptic potentials in the rat hippocampal slice.

机译:大鼠海马切片中γ-氨基丁酸的摄取和抑制性突触电位的终止。

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摘要

Intracellular recordings were made from CA1 pyramidal cells in the rat hippocampal slice to study the processes that influence the time course of inhibitory post-synaptic potentials (i.p.s.p.s) mediated by gamma-aminobutyric acid (GABA), and conductance changes evoked by ionophoretically applied GABA. The GABA-uptake inhibitors, nipecotic acid and cis-4-OH-nipecotic acid (1 mM), greatly prolonged conductance increases associated with both hyperpolarizing and depolarizing responses to ionophoretically applied GABA. In contrast to their effects on GABA-evoked conductances, uptake inhibitors only slightly prolonged antidromically evoked i.p.s.p.s. Their primary effect occurred after the i.p.s.p. had decayed to 5-30% of its peak. 4-OH-isonipecotic acid, a nipecotic acid analogue that does not inhibit GABA uptake, did not prolong i.p.s.p.s or ionophoretically evoked conductance changes. Sodium pentobarbitone (100 microM), a drug that prolongs the open time of GABA-activated chloride channels, potentiated both i.p.s.p.s and responses to ionophoretically applied GABA. Whereas pentobarbitone also prolonged i.p.s.p.s, it did not prolong responses to ionophoretically applied GABA. The prolongation of i.p.s.p.s by pentobarbitone occurred equally in both the early and late phases of the i.p.s.p., in contrast to the effects of GABA-uptake inhibitors. I.p.s.p.s did not usually decay exponentially. The observation that uptake inhibitors prolonged the late but not the early decay phase of the i.p.s.p., together with the previous finding that the conductance change persists for the duration of the i.p.s.p., indicate that GABA is present in the synapse throughout much of the i.p.s.p. These data suggest that diffusion of GABA out of the synapse, a non-exponential process, is an important determinant of the i.p.s.p. decay time course. Increasing the extracellular potassium concentration from 3.5 to 8.5 mM resulted in spontaneously occurring, synchronous burst firing of pyramidal cells. Cis-4-OH-nipecotic acid significantly reduced the number and amplitude of extracellularly recorded population spikes within each burst. We conclude that diffusion, channel open time and GABA uptake all influence the time course of GABA-mediated i.p.s.p.s. The time course of a single, brief i.p.s.p. is determined predominantly by post-synaptic channel kinetics and diffusion of GABA out of the synapse, whereas the inhibition produced by prolonged synaptic bursts or relatively long application of exogenous GABA can be markedly influenced by GABA uptake.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:用大鼠海马切片中的CA1锥体细胞进行细胞内记录,以研究影响γ-氨基丁酸(GABA)介导的抑制突触后电位(i.p.s.p.s)的时间过程的过程,以及通过离子载体应用GABA引起的电导变化。 GABA吸收抑制剂,乳糜酸和顺4 -OH-乳糜酸(1 mM),大大延长了电导率的增加,这与对离子载体施用的GABA的超极化和去极化反应有关。与它们对GABA诱发的电导的影响相反,摄取抑制剂仅以抗屈状诱​​发的i.p.s.p.s稍微延长了时间。他们的主要作用发生在i.p.s.p.已经衰减到其峰值的5-30%。 4-OH-异癸二酸,一种不抑制GABA摄取的类乳酸酸类似物,不会延长i.p.s.p.s或离子交换诱发的电导率变化。戊巴比妥钠(100 microM)(一种延长GABA活化的氯离子通道开放时间的药物)增强了i.p.s.p.s和对离子载体应用GABA的反应。戊巴比妥也可以延长腹膜内注射的时间,但不能延长对离子载体应用GABA的反应。相比于GABA吸收抑制剂的作用,戊巴比妥在i.p.s.p.的早期和晚期均等地延长了i.p.s.p.s。 I.p.s.p.s通常不会呈指数衰减。观察到摄取抑制剂延长了i.p.s.p.的延迟而不是早期的衰变阶段,以及先前发现电导变化在i.p.s.p.的持续时间内持续的发现,表明GABA存在于整个i.p.s.p.的突触中。这些数据表明,GABA从突触中扩散是一个非指数过程,是i.p.s.p.的重要决定因素。衰减时间过程。将细胞外钾浓度从3.5 mM增加到锥体细胞自发发生的同步爆发放电。顺式4-OH-庚酸显着降低了每次猝发内细胞外记录的种群尖峰的数量和幅度。我们得出的结论是,扩散,通道开放时间和GABA吸收都会影响GABA介导的i.p.s.p.s的时间过程。一次简短的i.p.s.p.主要由突触后通道动力学和GABA在突触中的扩散决定,而长时间的突触爆发或相对长的外源GABA产生的抑制作用可能受到GABA吸收的显着影响。(摘要截断时间为400字)

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