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大鼠海马切片培养物CA3区和CA1区细胞对之间单一突触连接的生理学和药理学

Physiology and pharmacology of unitary synaptic connections between pairs of cells in areas CA3 and CA1 of rat hippocampal slice cultures.

作者信息

Debanne D, Guérineau N C, Gähwiler B H, Thompson S M

机构信息

Brain Research Institute, University of Zurich, Switzerland.

出版信息

J Neurophysiol. 1995 Mar;73(3):1282-94. doi: 10.1152/jn.1995.73.3.1282.

Abstract
  1. Paired intracellular recordings were made in rat hippocampal slice cultures, with the use of either sharp microelectrodes or the whole cell configuration of the patch-clamp technique. Unitary synaptic connections were studied between pyramidal and nonpyramidal cells within and between areas CA1 and CA3. 2. Monosynaptic excitatory synaptic responses between CA3 pyramidal neurons were found in 56% of cell pairs (n = 91, 28 postsynaptic cells). Monosynaptic connections from a CA3 cell to a CA1 cell were observed in 76% of cell pairs (n = 125, 26 postsynaptic cells), but from CA1 to CA3 neurons in only 8% of cell pairs (n = 13, 13 postsynaptic cells). Monosynaptic excitatory connections were found in only 16% of CA1/CA1 cell pairs (n = 25, 10 postsynaptic cells). 3. Disynaptic inhibition was commonly observed between CA3 cell pairs (43%), but rarely found between CA3-CA1 pyramidal cell pairs (2%). In 50% of CA3 pyramidal cell pairs, synchronous inhibitory postsynaptic potentials (IPSPs) in both cells could be triggered by an action potential in one pyramidal cell. Reciprocal monosynaptic connections were found between 75% of interneuron and pyramidal cell pairs within area CA3. 4. The latency of monosynaptic CA3- to CA1-cell responses was significantly longer than for responses between two CA3 cells. Within area CA3 the latencies for inhibitory synaptic responses between interneurons and pyramidal cells were significantly shorter than those for excitatory responses between pyramidal cells. Monosynaptic excitatory postsynaptic potentials (EPSPs) in interneurons had a significantly shorter time-to-peak than those recorded in pyramidal neurons. 5. 6-Cyano-7-nitroquinoxaline-2,3-dione (CNQX)- and D-2-amino-5-phosphonovalerate (AP5)-sensitive components were identified in unitary monosynaptic EPSPs in CA3-CA3 and CA3-CA1 pyramidal cell pairs. The CNQX-sensitive component had a mean time-to-peak and duration of 6.2 +/- 0.3 (SE) ms and 61.2 +/- 2.0 ms, respectively, and an amplitude of approximately 1 mV (n = 93). The AP5-sensitive component of EPSPs was only detected when the cell was depolarized with respect to the resting potential, had a mean time-to-peak of 41 +/- 5 ms and duration of 121 +/- 11 ms (n = 6), and increased in amplitude with postsynaptic depolarization. 6. Unitary monosynaptic IPSPs between an interneuron and a pyramidal cell had a mean amplitude of approximately 1 mV and were fully blocked by gamma-aminobutyric acid-A (GABAA) receptor antagonists (n = 3). 7. Unitary inhibitory responses were found only within, but not between, areas CA3 or CA1.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 在大鼠海马切片培养物中进行配对细胞内记录,使用尖锐微电极或膜片钳技术的全细胞配置。研究了CA1和CA3区域内以及之间的锥体神经元和非锥体神经元之间的单突触连接。2. 在56%的细胞对中发现了CA3锥体神经元之间的单突触兴奋性突触反应(n = 91,28个突触后细胞)。在76%的细胞对中观察到从CA3细胞到CA1细胞的单突触连接(n = 125,26个突触后细胞),但从CA1到CA3神经元的单突触连接仅在8%的细胞对中发现(n = 13,13个突触后细胞)。在仅16%的CA1/CA1细胞对中发现了单突触兴奋性连接(n = 25,10个突触后细胞)。3. 在CA3细胞对之间普遍观察到双突触抑制(43%),但在CA3 - CA1锥体细胞对之间很少发现(2%)。在50%的CA3锥体细胞对中,一个锥体细胞的动作电位可触发两个细胞中的同步抑制性突触后电位(IPSPs)。在CA3区域内75%的中间神经元和锥体细胞对之间发现了相互的单突触连接。4. 从CA3到CA1细胞的单突触反应潜伏期明显长于两个CA3细胞之间的反应潜伏期。在CA3区域内,中间神经元和锥体细胞之间抑制性突触反应的潜伏期明显短于锥体细胞之间兴奋性反应的潜伏期。中间神经元中单突触兴奋性突触后电位(EPSPs)的峰值时间明显短于在锥体神经元中记录到的峰值时间。5. 在CA3 - CA3和CA3 - CA1锥体细胞对的单突触EPSPs中鉴定出对6 - 氰基 - 7 - 硝基喹喔啉 - 2,3 - 二酮(CNQX)和D - 2 - 氨基 - 5 - 磷酸戊酸(AP5)敏感的成分。CNQX敏感成分的平均峰值时间和持续时间分别为6.2±0.3(SE)毫秒和61.2±2.0毫秒,幅度约为1毫伏(n = 93)。EPSPs的AP5敏感成分仅在细胞相对于静息电位去极化时被检测到,平均峰值时间为41±5毫秒,持续时间为121±11毫秒(n = 6),并且幅度随突触后去极化而增加。6. 中间神经元和锥体细胞之间的单突触IPSPs平均幅度约为1毫伏,并被γ - 氨基丁酸 - A(GABAA)受体拮抗剂完全阻断(n = 3)。7. 仅在CA3或CA1区域内发现了单突触抑制反应,而在它们之间未发现。(摘要截断于400字)

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