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细胞外电场对神经突生长的导向作用。

Orientation of neurite growth by extracellular electric fields.

作者信息

Patel N, Poo M M

出版信息

J Neurosci. 1982 Apr;2(4):483-96. doi: 10.1523/JNEUROSCI.02-04-00483.1982.

Abstract

Extracellularly applied steady electric fields of 0.1 to 10 V/cm were found to have marked effects on the neurite growth of single dissociated Xenopus neurons in culture: (1) neurites facing the cathode showed accelerated growth, while the growth of those facing the anode was reduced. Neurites growing relatively perpendicular to the field axis were prompted to curve toward the cathode. (2) More neurites appeared to be initiate from the cathodal side of the cell. (3) The number of neurite-bearing neurons per culture and the average neurite length were increased. These effects are absent in cultures treated with electric fields of similar strength but alternating polarity and cannot be attributed either to a gradient of extracellular diffusible substances or to the flow of culture medium produced by the field. The field effects are reversible: (1) removal of the electric field resulted in the loss of neurite orientation in a few hours and (2) reversal of the polarity of the electric field led to a rapid reversal in the neurite orientation. To determine the cellular loci of these field effects, we treated the neurons with a number of pharmacological agents or altered their ionic environments. Incubation with concanavalin A (Con A) was found to abolish these filed effects completely. Since the binding of Con A to the neuronal surface was shown to prevent field-induced accumulation of the Con A receptors toward the cathodal side of these neurons, our finding is accumulation of the Con A receptors toward the cathodal side of these neurons, our finding is consistent with the notion that cathodal accumulation of growth-controlling surface glycoproteins by the field is the underlying mechanism of the field-induced orientation of neurite growth toward the cathode.

摘要

研究发现,在体外施加强度为0.1至10V/cm的稳定电场,对培养的单个非洲爪蟾离体神经元的神经突生长有显著影响:(1)朝向阴极的神经突生长加速,而朝向阳极的神经突生长减缓。相对垂直于电场轴生长的神经突会向阴极弯曲。(2)更多的神经突似乎从细胞的阴极侧起始。(3)每个培养物中带有神经突的神经元数量和平均神经突长度增加。在用强度相似但极性交替的电场处理的培养物中,不存在这些效应,且这些效应既不能归因于细胞外可扩散物质的梯度,也不能归因于电场产生的培养基流动。电场效应是可逆的:(1)去除电场会导致神经突在数小时内失去方向;(2)电场极性反转会导致神经突方向迅速反转。为了确定这些电场效应的细胞位点,我们用多种药理试剂处理神经元或改变其离子环境。发现用伴刀豆球蛋白A(Con A)孵育可完全消除这些电场效应。由于已表明Con A与神经元表面的结合会阻止电场诱导的Con A受体向这些神经元的阴极侧积累,我们的发现与以下观点一致,即电场使生长控制表面糖蛋白在阴极侧积累是电场诱导神经突生长向阴极方向定向的潜在机制。

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