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新生大鼠运动神经元中诱发的最小抑制性突触电流。

The minimal inhibitory synaptic currents evoked in neonatal rat motoneurones.

作者信息

Takahashi T

机构信息

Department of Physiology, Kyoto University Faculty of Medicine, Japan.

出版信息

J Physiol. 1992 May;450:593-611. doi: 10.1113/jphysiol.1992.sp019145.

Abstract
  1. Tight-seal whole-cell recordings were made from lumbar motoneurones visually identified in thin slices of neonatal rat spinal cord. The inhibitory postsynaptic currents (IPSCs) were evoked by extracellular stimulation of a neighbouring internuncial neurone in the presence of glutamate receptor antagonists. 2. Glycinergic IPSCs were recorded in the presence of bicuculline. The IPSCs appeared in an all-or-none manner as the graded stimulus intensity exceeded a certain threshold. Their latencies showed a unimodal distribution with a mean of 0.81 ms at 37 degrees C. Thus, the observed IPSCs are suggested to be monosynaptically evoked unitary IPSCs. The mean conductance of unitary IPSCs was 2.9 +/- 1.2 nS (+/- S.D.). 3. When the external Ca2+ concentration ([Ca2+]o) was reduced, the number of failures in response to stimulation increased, thereby reducing the mean amplitude of IPSCs. The mean amplitude of IPSCs was linearly related to the [Ca2+]o (0.35-1.4 mM) with a mean slope of 3.1 +/- 0.67 on double logarithmic co-ordinates. 4. The amplitude of individual IPSCs decreased with decrease in [Ca2+]o. However, below 0.7 mM [Ca2+]o, the mean amplitude of IPSCs (excluding failures) reached a steady minimum level. The mean conductance of these IPSCs measured in 0.5 mM [Ca2+]o was 657 +/- 281 pS. 5. The minimal IPSCs had a coefficient of variation of 0.50 +/- 0.13. No clear correlation was observed between the rise time and the amplitude of minimal IPSCs evoked in individual motoneurones, indicating that the amplitude variability is not due to the different synaptic locations. 6. Spontaneous miniature IPSCs were recorded from motoneurones in the presence of tetrodotoxin. The miniature IPSCs had a mean conductance of 739 +/- 278 pS, being comparable to the minimal evoked IPSCs. 7. Under various internal and external Cl- concentration, the reversal potential of the IPSCs (EIPSC) approximately coincided with the Cl- equilibrium potential. A 730-fold change in the potassium concentration gradient across the membrane did not affect the EIPSC. The permeability ratio of K+ to Cl- (Pk/PCl) was less than 0.05. 8. It is concluded that the IPSCs are carried almost exclusively by Cl- and that the minimal evoked IPSCs represent the quantal response of the transmitter.
摘要
  1. 采用全细胞膜片钳记录技术,从新生大鼠脊髓薄片中经视觉识别的腰段运动神经元进行紧密封接记录。在存在谷氨酸受体拮抗剂的情况下,通过细胞外刺激相邻的中间神经元诱发抑制性突触后电流(IPSCs)。2. 在荷包牡丹碱存在的情况下记录甘氨酸能IPSCs。当分级刺激强度超过一定阈值时,IPSCs以全或无的方式出现。它们的潜伏期呈单峰分布,在37℃时平均为0.81毫秒。因此,观察到的IPSCs被认为是单突触诱发的单位IPSCs。单位IPSCs的平均电导为2.9±1.2纳秒(±标准差)。3. 当降低细胞外Ca2+浓度([Ca2+]o)时,刺激反应中的失败次数增加,从而降低了IPSCs的平均幅度。IPSCs的平均幅度与[Ca2+]o(0.35 - 1.4毫摩尔)呈线性关系,在双对数坐标上平均斜率为3.1±0.67。4. 单个IPSCs的幅度随[Ca2+]o的降低而减小。然而,在[Ca2+]o低于0.7毫摩尔时,IPSCs的平均幅度(不包括失败的)达到稳定的最低水平。在0.5毫摩尔[Ca2+]o下测量的这些IPSCs的平均电导为657±281皮秒。5. 最小IPSCs的变异系数为0.50±0.13。在单个运动神经元中诱发的最小IPSCs中,未观察到上升时间与幅度之间有明显的相关性,这表明幅度变异性不是由于突触位置不同所致。6. 在存在河豚毒素的情况下,从运动神经元记录到自发的微小IPSCs。微小IPSCs的平均电导为7,39±278皮秒,与最小诱发IPSCs相当。7. 在各种细胞内和细胞外Cl-浓度下,IPSCs的反转电位(EIPSC)大致与Cl-平衡电位一致。跨膜钾浓度梯度730倍的变化不影响EIPSC。K+与Cl-的通透率比(Pk/PCl)小于0.05。8. 得出的结论是,IPSCs几乎完全由Cl-携带,并且最小诱发IPSCs代表递质的量子反应。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e6d5/1176140/862968f0d697/jphysiol00432-0592-a.jpg

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