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体外诱导长时程增强后大鼠CA1神经元中兴奋性突触后电流量子参数的变化。

Changes in quantal parameters of EPSCs in rat CA1 neurones in vitro after the induction of long-term potentiation.

作者信息

Stricker C, Field A C, Redman S J

机构信息

Division of Neuroscience, Australian National University, Canberra.

出版信息

J Physiol. 1996 Jan 15;490 ( Pt 2)(Pt 2):443-54. doi: 10.1113/jphysiol.1996.sp021156.

Abstract
  1. Long-term potentiation (LTP) was induced in EPSCs evoked in CA1 pyramidal neurones of young rats in vitro by extracellular stimulation of stratum radiatum. Low frequency stimulation was paired with postsynaptic depolarization to induce LTP, using whole-cell recording techniques. 2. Sufficient control and potentiated records were obtained under stable recording conditions to allow a quantal analysis of eleven EPSCs. The fluctuations in amplitude of all eleven EPSCs were quantized before conditioning stimulation, and they remained quantized after LTP induction, usually with an increased quantal variance. 3. Quantal current was increased by conditioning for nine out of eleven EPSCs. The increase in quantal current was correlated with the percentage increase in the EPSC. For only two EPSCs could the entire potentiation be attributed to an increase in quantal current. 4. The amplitude fluctuations of five control EPSCs could be described by binomial statistics, but after conditioning the binomial description held for only one of these EPSCs. For this EPSC, conditioning caused the release probability to increase from 0.39 +/- 0.05 to 0.47 +/- 0.02. 5. Quantal content was increased by conditioning stimulation for ten out of eleven EPSCs. The increase in quantal content was correlated with the percentage increase in the EPSC. However, for only four EPSCs could the entire potentiation be attributed to an increase in quantal content. 6. Most EPSCs were evoked with a high proportion of response failures. The probability of response failures decreased in eight out of eleven EPSCs following the induction of LTP. There was a negative correlation between the change in the probability of response failures and the amount of LTP. 7. The minimal number of sites at which transmission occurred increased for ten out of eleven EPSCs following LTP induction. Increases in the minimal number of active sites following conditioning were associated with decreases in the probability of response failures for seven out of eleven EPSCs. 8. The induction of LTP usually resulted in changes in the time course of the EPSCs. Cable analysis using a passive compartmental model of a CA1 pyramidal cell suggested that these time course changes were associated with shifts in the average electrotonic location of the active sites following LTP induction, rather than being caused by an increased duration of synaptic current. 9. LTP expression involves postsynaptic modifications to enhance the synaptic current at active sites. New sites are recruited, and our data cannot be used to determine if this is a result of a pre- or a postsynaptic change. Evidence for an increase in release probability was found for one EPSC.
摘要
  1. 在体外通过对幼鼠CA1锥体神经元辐射层进行细胞外刺激,诱发长时程增强(LTP)。采用全细胞记录技术,将低频刺激与突触后去极化配对以诱导LTP。2. 在稳定的记录条件下获得了足够的对照和增强记录,以便对11个兴奋性突触后电流(EPSC)进行量子分析。在条件刺激前,对所有11个EPSC的幅度波动进行量化,在诱导LTP后它们仍保持量化,通常量子方差增加。3. 对11个EPSC中的9个进行条件刺激后,量子电流增加。量子电流的增加与EPSC的百分比增加相关。只有2个EPSC的整个增强可归因于量子电流的增加。4. 5个对照EPSC的幅度波动可用二项式统计描述,但在条件刺激后,只有其中1个EPSC仍符合二项式描述。对于这个EPSC,条件刺激使释放概率从0.39±0.05增加到0.47±0.02。5. 对11个EPSC中的10个进行条件刺激后,量子含量增加。量子含量的增加与EPSC的百分比增加相关。然而,只有4个EPSC的整个增强可归因于量子含量的增加。6. 大多数EPSC诱发时伴有高比例的反应失败。在诱导LTP后,11个EPSC中的8个反应失败概率降低。反应失败概率的变化与LTP的量呈负相关。7. 在诱导LTP后,11个EPSC中的10个发生传递的最小位点数量增加。条件刺激后活性位点最小数量的增加与11个EPSC中的7个反应失败概率的降低相关。8. LTP的诱导通常会导致EPSC时间进程的变化。使用CA1锥体细胞的被动隔室模型进行的电缆分析表明,这些时间进程变化与LTP诱导后活性位点平均电紧张位置的移动有关,而不是由突触电流持续时间增加引起的。9. LTP的表达涉及突触后修饰以增强活性位点的突触电流。新的位点被招募,而我们的数据无法用于确定这是突触前还是突触后变化的结果。在1个EPSC中发现了释放概率增加的证据。

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