SOD1转基因小鼠ALS动物模型的电生理和形态学研究

D. Carpenter, N. Hori, Y. Tan, Z. Xu, N. Akaike
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引用次数: 0

摘要

肌萎缩性侧索硬化症(ALS)是一种上下运动神经元死亡的疾病,通常与超氧化物歧化酶1 (SOD1)突变有关。我们用小鼠模型比较了野生型和突变型动物颈运动神经元的生理和形态学特征。分别制备老龄野生型和突变型G93A和G85R小鼠颈脊髓切片,观察细胞内膜电位、阻抗和对兴奋性神经递质的反应。部分运动神经元注射路西法黄进行形态学分析。SOD1突变体的膜电位与老龄野生型小鼠无显著差异,但运动神经元的膜阻抗略高。突变的运动神经元的树突对离子电泳应用兴奋性氨基酸没有反应,尽管细胞体反应强烈。在充满路西法的细胞中,树突消失了。突变的运动神经元有时自发活动。突变体运动神经元对灌注不同钙浓度谷氨酸的反应与野生型细胞不同。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Electrophysiological and Morphological Studies of SOD1 Transgenic Mice: An Animal Model of ALS
Amyotrophic lateral sclerosis (ALS) is a disease where upper and lower motor neurons die, and it is often associated with mutations of superoxide dismutase 1 (SOD1). We have used mouse models to compare physiologic and morphologic characteristics of cervical motor neurons in wild-type and mutant animals. Slices of the cervical spinal cord were prepared from old wild-type and mutant G93A and G85R mice, and intracellular recordings of membrane potential, resistance and responses to application of excitatory neurotransmitters were studied. Some motor neurons were injected with Lucifer Yellow for morphological analysis. There were no significant differences between membrane potential in the SOD1 mutants and aged wild-type mice, but membrane resistance was somewhat higher in the mutant motor neurons. Dendrites of the mutant motor neurons were not responsive to ionophoretic application of excitatory amino acids, although the cell body responded strongly. In Lucifer-filled cells, the dendrites were found to disappear. Mutant motor neurons were sometimes spontaneously active. Responses of mutant motor neurons to perfused glutamate with varying calcium concentrations in the Ringer’s solution were different from those of the wild-type cells.
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