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大鼠小脑攀缘纤维-浦肯野细胞突触处双脉冲抑制的突触前起源

Presynaptic origin of paired-pulse depression at climbing fibre-Purkinje cell synapses in the rat cerebellum.

作者信息

Hashimoto K, Kano M

机构信息

Department of Physiology, Jichi Medical School, Tochigi, Japan.

出版信息

J Physiol. 1998 Jan 15;506 ( Pt 2)(Pt 2):391-405. doi: 10.1111/j.1469-7793.1998.391bw.x.

Abstract
  1. Climbing fibre-mediated excitatory postsynaptic potentials (CF-EPSPs) or currents (CF-EPSCs) were recorded from Purkinje cells in rat cerebellar slices using the whole-cell recording technique. 2. Climbing fibre responses displayed prominent paired-pulse depression (PPD). In the current-clamp recording mode, PPD resulted in a decreased number of spikelets in the second complex spike of the pair, and depression of the after-depolarization and after-hyperpolarization. 3. The mechanism of PPD was examined under voltage clamp. Manipulations that reduce transmitter release significantly affected PPD. These included lowering extracellular Ca2+ concentration and bath application of baclofen or adenosine. 4. Changing the number of stimulated climbing fibres, equivalent to changing the number of release sites, had no effect on PPD. 5. Selective manipulations of postsynaptic responsiveness had no effect on PPD. These included partial blockade of CF-EPSCs by a non-NMDA receptor antagonist, 6-cyano-7-nitro-quinoxaline-2,3-dione (CNQX), and changing the holding potential. 6. A rapidly dissociating AMPA receptor antagonist, 2,3-cis-piperidine dicarboxylic acid, inhibited the second CF-EPSC of the pair proportionately more than the first, suggesting that presynaptic release by the second pulse is decreased. 7. PPD at interstimulus intervals of 50 ms or longer (up to 3000 ms) was not significantly affected by manipulations that change postsynaptic glutamate receptor desensitization. 8. Blockade of metabotropic glutamate, GABAB and adenosine receptors had no effect on PPD, suggesting that presynaptic autoreceptors do not contribute to PPD. 9. These results indicate that decreased transmitter release is a major cause of PPD at cerebellar climbing fibre-Purkinje cell synapses.
摘要
  1. 使用全细胞记录技术,从大鼠小脑切片中的浦肯野细胞记录攀爬纤维介导的兴奋性突触后电位(CF-EPSPs)或电流(CF-EPSCs)。2. 攀爬纤维反应表现出明显的双脉冲抑制(PPD)。在电流钳记录模式下,PPD导致该对中第二个复合峰的小尖峰数量减少,以及去极化后和超极化后的抑制。3. 在电压钳下研究了PPD的机制。显著减少递质释放的操作对PPD有明显影响。这些操作包括降低细胞外Ca2+浓度以及在浴液中应用巴氯芬或腺苷。4. 改变受刺激攀爬纤维的数量,等同于改变释放位点的数量,对PPD没有影响。5. 对突触后反应性的选择性操作对PPD没有影响。这些操作包括用非NMDA受体拮抗剂6-氰基-7-硝基喹喔啉-2,3-二酮(CNQX)部分阻断CF-EPSCs,以及改变钳制电位。6. 一种快速解离的AMPA受体拮抗剂2,3-顺式哌啶二羧酸对该对中的第二个CF-EPSC的抑制作用比对第一个的抑制作用更大,表明第二个脉冲的突触前释放减少。7. 在50毫秒或更长(长达3000毫秒)的刺激间隔下的PPD不受改变突触后谷氨酸受体脱敏的操作的显著影响。8. 代谢型谷氨酸、GABAB和腺苷受体的阻断对PPD没有影响,表明突触前自身受体对PPD没有作用。9. 这些结果表明,递质释放减少是小脑攀爬纤维-浦肯野细胞突触处PPD的主要原因。

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