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细胞培养中的小鼠脊髓。I. 形态学和内在神经元电生理特性。

Mouse spinal cord in cell culture. I. Morphology and intrinsic neuronal electrophysiologic properties.

作者信息

Ransom B R, Neale E, Henkart M, Bullock P N, Nelson P G

出版信息

J Neurophysiol. 1977 Sep;40(5):1132-50. doi: 10.1152/jn.1977.40.5.1132.

Abstract
  1. Reliable methods for establishing fetal mouse spinal cord (SC) and dorsal root ganglion (DRG) cells in long term (greater than 1 mo) dissociated cell cultures are described. These cells have been studied by morphologic and intracellular electrophysiologic techniques. 2. Cells studied electrophysiologically can be relocated after preparation for electron microscopy and examined in thin sections. The electron microscope shows that the surface membranes of these cells were directly accessible to the culture medium. The surfaces of SC cells were studded with synaptic boutons, whereas the DRG cell surfaces generally had none. 3. Current-voltage relationships and linear electrotonic properties of the neurons are described. Delayed and anomalous rectification were seen in both cell types. The length of SC cell dendrites was about one characteristic electrotonic length, while little or no contribution of the relatively sparse DRG cell processes was seen in the transient responses of the DRG cells. 4. Postspike and posttetanic hyperpolarizations in DRG cells were due to a surface membrane conductance increase; this was probably primarily an increase in K+ conductance. Post-activation hyperpolarization in SC cells was primarily due to activation of an electrogenic Na+ pump.
摘要
  1. 本文描述了在长期(超过1个月)解离细胞培养物中建立胎鼠脊髓(SC)和背根神经节(DRG)细胞的可靠方法。这些细胞已通过形态学和细胞内电生理学技术进行了研究。2. 经电生理学研究的细胞在制备用于电子显微镜检查后可以重新定位,并在薄切片中进行检查。电子显微镜显示这些细胞的表面膜可直接接触培养基。脊髓细胞表面布满了突触小体,而背根神经节细胞表面通常没有。3. 描述了神经元的电流-电压关系和线性电紧张特性。在两种细胞类型中均观察到延迟整流和反常整流。脊髓细胞树突的长度约为一个特征性电紧张长度,而在背根神经节细胞的瞬态反应中,相对稀疏的背根神经节细胞突起几乎没有贡献或没有贡献。4. 背根神经节细胞的锋电位后和强直后超极化是由于表面膜电导增加;这可能主要是钾电导的增加。脊髓细胞的激活后超极化主要是由于生电钠泵的激活。

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