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视觉皮层中长时程增强的赫布诱导:培养神经元的穿孔膜片钳研究。

Hebbian induction of LTP in visual cortex: perforated patch-clamp study in cultured neurons.

作者信息

Otsu Y, Kimura F, Tsumoto T

机构信息

Department of Neurophysiology, Osaka University Medical School, Suita, Japan.

出版信息

J Neurophysiol. 1995 Dec;74(6):2437-44. doi: 10.1152/jn.1995.74.6.2437.

Abstract
  1. To see whether presynaptic activation paired with postsynaptic depolarization is necessary for the induction of long-term potentiation (LTP) in visual cortex or whether an activation of postsynaptic receptors in conjunction with depolarization is sufficient, we carried out perforated patch-clamp recordings with nystatin from cultured cortical neurons of rats. 2. Recorded neurons were monosynaptically activated either by electrical stimulation of an adjacent neuron or by direct activation of glutamate on "hot spots" of dendrites through iontophoresis or pressure ejection. In experiments in which cultured neurons were stained immunocytochemically with antibody against synaptophysin after electrophysiological recordings, hot spots were found to correspond to probable synaptic sites. 3. Excitatory postsynaptic currents (EPSCs) evoked by test stimulation applied to the adjacent neuron at 0.1 Hz were recorded at a holding potential of -60 or -70 mV for 5-10 min after an establishment of the whole cell recording configuration. Then, stimulation was paired with postsynaptic depolarization (0 mV for 200 ms) at 1 Hz for 30 or 60 s. LTP of EPSCs was induced in 7 of the 15 cells from which stable recordings were obtained for 18-30 min after pairing. 4. When postsynaptic depolarization was paired with direct glutamate application in the absence of presynaptic stimulation in 12 cells, only 1 showed LTP. Postsynaptic depolarization alone did not induce LTP in any of the six cells tested. Also, presynaptic stimulation alone did not induce LTP in any of the five cells tested. 5. These results suggest that the concurrent activation of presynaptic elements with postsynaptic depolarization is necessary for the induction of LTP in visual cortex.
摘要
  1. 为了探究突触前激活与突触后去极化配对对于视觉皮层中长时程增强(LTP)的诱导是否必要,或者突触后受体激活与去极化相结合是否足够,我们用制霉菌素对大鼠培养的皮层神经元进行了穿孔膜片钳记录。2. 记录的神经元通过电刺激相邻神经元或通过离子电泳或压力喷射在树突的“热点”上直接激活谷氨酸进行单突触激活。在电生理记录后用抗突触素抗体对培养神经元进行免疫细胞化学染色的实验中,发现热点对应于可能的突触部位。3. 在建立全细胞记录模式后,以0.1 Hz的频率施加于相邻神经元的测试刺激诱发的兴奋性突触后电流(EPSCs)在-60或-70 mV的钳制电位下记录5-10分钟。然后,刺激与突触后去极化(0 mV,持续200 ms)以1 Hz的频率配对30或60秒。在配对后获得18-30分钟稳定记录的15个细胞中的7个中诱导出了EPSCs的LTP。4. 当在12个细胞中突触后去极化与在无突触前刺激的情况下直接应用谷氨酸配对时,只有1个显示出LTP。单独的突触后去极化在测试的6个细胞中均未诱导出LTP。此外,单独的突触前刺激在测试的5个细胞中均未诱导出LTP。5. 这些结果表明,突触前元件与突触后去极化的同时激活对于视觉皮层中LTP诱导是必要的。

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