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细胞培养中的小鼠脊髓。III. 神经元化学敏感性及其与突触活动的关系。

Mouse spinal cord in cell culture. III. Neuronal chemosensitivity and its relationship to synaptic activity.

作者信息

Ransom B R, Bullock P N, Nelson P G

出版信息

J Neurophysiol. 1977 Sep;40(5):1163-77. doi: 10.1152/jn.1977.40.5.1163.

Abstract
  1. Mouse spinal cord (SC) cells in dissociated cell cultures showed strong electrophysiologic responses to glutamate, gamma-aminobutyric acid (GABA), and glycine when these were iontophoretically applied to the neurons. 2. The extrapolated reversal potential for the glutamate response was 20-30 mV negative in contrast to the positive extrapolated reversal potential for the SC-SC excitatory postsynaptic potential. The data are interpreted as indicating different ionic mechanisms for the glutamate response and the EPSP. 3. The reversal potentials for the glycine and GABA responses were similar to one another and to the IPSP reversal potential. The time course of the glycine and GABA responses were quite different from each other, however. 4. While some SC cells showed a relatively uniform sensitivity over their surfaces to iontophoretically applied glutamate, discrete regions of higher sensitivity occurred on most cells. 5. Release of excitatory and inhibitory transmitter could be elicited by focal application of glutamate and, in favorable instances, this could be shown to be due to the sensitivity of presynaptic terminals to the applied glutamate. Considerable spatial resolution of regions from which transmitter release could be elicited was achieved by this technique. Some correspondence between glutamate "hot spots" and such release sites was found.
摘要
  1. 在解离细胞培养物中的小鼠脊髓(SC)细胞,当通过离子电泳法将谷氨酸、γ-氨基丁酸(GABA)和甘氨酸施加到神经元上时,会表现出强烈的电生理反应。2. 谷氨酸反应的外推反转电位为负20 - 30 mV,这与脊髓-脊髓兴奋性突触后电位的正外推反转电位形成对比。这些数据被解释为表明谷氨酸反应和兴奋性突触后电位存在不同的离子机制。3. 甘氨酸和GABA反应的反转电位彼此相似,且与抑制性突触后电位的反转电位相似。然而,甘氨酸和GABA反应的时间进程彼此 quite different from each other(此处原文有误,推测可能是“quite different from each other”,意为“彼此非常不同”)。4. 虽然一些脊髓细胞在其表面对离子电泳施加的谷氨酸表现出相对均匀的敏感性,但大多数细胞上出现了更高敏感性的离散区域。5. 通过局部施加谷氨酸可以引发兴奋性和抑制性递质的释放,在有利的情况下,这可以证明是由于突触前终末对施加的谷氨酸敏感。通过这种技术实现了对可引发递质释放的区域的相当高的空间分辨率。发现谷氨酸“热点”与此类释放位点之间存在一些对应关系。

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