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大鼠海马锥体细胞与中间神经元中NMDA受体介导的突触电流的动力学特性

Kinetic properties of NMDA receptor-mediated synaptic currents in rat hippocampal pyramidal cells versus interneurones.

作者信息

Perouansky M, Yaari Y

机构信息

Department of Physiology, Hebrew University School of Medicine, Jerusalem, Israel.

出版信息

J Physiol. 1993 Jun;465:223-44. doi: 10.1113/jphysiol.1993.sp019674.

Abstract
  1. Whole-cell tight-seal recordings were obtained from visually identified pyramidal cells (PCs) and interneurones (INs) in the CA1 field of thin hippocampal slices from 13- to 23-day-old rats. The INs sampled were classified according to their location either in the molecular layer (M-INs) or in the oriens layer and alveus (OA-INs). PCs and INs differed in their mode of firing when depolarized by a prolonged current pulse. Whereas PCs fired a single action potential, most INs responded with non-accommodating high frequency spike firing. 2. In the presence of 1 microM tetrodotoxin (TTX), bath application of either 50 microM L-glutamate with 10 microM 6-cyano-7-nitroquinoxaline-2,3-dione (CNQX) or 2.5 microM N-methyl-D-aspartate (NMDA), induced a similar conductance increase in PCs and INs that was completely blocked by 200 microM DL-2-amino-5-phosphonovaleric acid (APV). The NMDA receptor-mediated currents reversed around 4 mV and exhibited an area of negative slope conductance at potentials more negative than -20 to -30 mV in the presence of 1-2 mM Mg2+. 3. Dual-component excitatory postsynaptic currents (EPSCs) were evoked in PCs and INs by stimulating afferent fibres close to the neurone. The NMDA receptor-mediated component of the EPSCs (NMDA EPSC) was isolated by adding 10 microM CNQX to block non-NMDA receptors. The NMDA EPSCs in all cell types reversed around 1.5 mV and were abolished by 50 microM APV. 4. In saline containing 1 mM Mg2+, the peak current-voltage (I-V) relationship of NMDA EPSCs in PCs and INs showed an area of negative slope conductance at voltages more negative than -20 to -30 mV. In nominally Mg(2+)-free saline, the peak I-V relation was linear over a much wider voltage range in both cell types. 5. The 10-90% rise times of NMDA EPSCs at -60 mV ranged from 4.5 to 16 ms in PCs (mean 8.7 ms; n = 25) and in M-INs (mean 9.1 ms; n = 10). Their decay could be best fitted with the sum of two exponentials. The decay of NMDA EPSCs in PCs was significantly slower than that recorded in INs. The average fast (tau f) and slow (tau s) time constants of decay were, respectively, 66.5 and 353.9 ms in PCs, and 34.4 and 212.5 ms in M-INs.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 采用全细胞膜片钳紧密封接记录技术,从13至23日龄大鼠薄海马脑片CA1区经视觉识别的锥体细胞(PCs)和中间神经元(INs)获取记录。所采样的INs根据其位置分为位于分子层(M-INs)或腔隙层和肺泡层(OA-INs)。当通过长时间电流脉冲去极化时,PCs和INs的放电模式不同。PCs发放单个动作电位,而大多数INs则以非适应性高频放电做出反应。2. 在存在1微摩尔河豚毒素(TTX)的情况下,向浴槽中加入50微摩尔L-谷氨酸和10微摩尔6-氰基-7-硝基喹喔啉-2,3-二酮(CNQX)或2.5微摩尔N-甲基-D-天冬氨酸(NMDA),可诱导PCs和INs中出现类似的电导增加,且这种增加被200微摩尔DL-2-氨基-5-磷酸戊酸(APV)完全阻断。NMDA受体介导的电流在约4毫伏时反转,并且在存在1 - 2毫摩尔镁离子的情况下,在比 - 20至 - 30毫伏更负的电位处表现出负斜率电导区域。3. 通过刺激靠近神经元的传入纤维,在PCs和INs中诱发双成分兴奋性突触后电流(EPSCs)。通过加入10微摩尔CNQX阻断非NMDA受体来分离EPSCs的NMDA受体介导成分(NMDA EPSC)。所有细胞类型中的NMDA EPSCs在约1.5毫伏时反转,并被50微摩尔APV消除。4. 在含有1毫摩尔镁离子的盐溶液中,PCs和INs中NMDA EPSCs的峰值电流-电压(I-V)关系在比 - 20至 - 30毫伏更负的电压处显示出负斜率电导区域。在名义上无镁离子的盐溶液中,两种细胞类型的峰值I-V关系在更宽的电压范围内呈线性。5. 在 - 60毫伏时,PCs(平均8.7毫秒;n = 25)和M-INs(平均9.1毫秒;n = 10)中NMDA EPSCs的10 - 90%上升时间范围为4.5至16毫秒。它们的衰减可以用两个指数之和进行最佳拟合。PCs中NMDA EPSCs的衰减明显慢于INs中记录到的衰减。PCs中平均快速(tau f)和慢速(tau s)衰减时间常数分别为66.5和353.9毫秒,M-INs中分别为34.4和212.5毫秒。(摘要截断于400字)
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8c44/1175427/e8a5eb40f0af/jphysiol00417-0236-a.jpg

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