Olson E C
Department of Biology, University of California at San Diego, La Jolla 92093, USA.
J Neurosci. 1996 Aug 15;16(16):5117-29. doi: 10.1523/JNEUROSCI.16-16-05117.1996.
Living neurons are usually first identifiable in primary cultures at the time of neurite initiation, and studies of excitability have been restricted largely to the subsequent period. A morphological early marker is described that identifies neurons for whole-cell voltage-clamp recordings before neurite initiation. Video time-lapse recordings of cultured cells dissociated from neurectoderm of Xenopus neural plate stage embryos reveal cells demonstrating circus movements, in which blebs of plasma membrane propagate around the cell circumference within a period of several minutes. All neurons demonstrate circus movements before morphological differentiation; the fraction of cells exhibiting circus movements that differentiate morphologically depends on the substrate on which they are cultured. Blockade of circus activity with cytochalasin B does not prevent neuronal differentiation. Circus movements are not neurectoderm-specific because they similarly predict differentiation of myocytes developing in mesodermal cultures. Initially inexcitable, neurons develop voltage-dependent K+, Na+, and Ca2+ currents during the period of several hours in which they exhibit circus movements. The early development of depolarization-induced elevations of [Ca2+]i several hours before morphological differentiation corresponds to the previously described onset of functionally significant spontaneous elevations of [Ca2+]i in these neurons and demonstrates a role for early expression of voltage-dependent ion channels.
活神经元通常在神经突起始时首次在原代培养物中被识别出来,并且兴奋性研究在很大程度上局限于随后的时期。本文描述了一种形态学早期标志物,它能够在神经突起始之前识别用于全细胞膜片钳记录的神经元。对非洲爪蟾神经板阶段胚胎神经外胚层解离的培养细胞进行延时视频记录,发现细胞呈现出循环运动,即质膜泡在几分钟内围绕细胞周长传播。所有神经元在形态分化之前都表现出循环运动;表现出循环运动并发生形态分化的细胞比例取决于它们所培养的底物。用细胞松弛素B阻断循环活动并不能阻止神经元分化。循环运动并非神经外胚层所特有,因为它们同样能够预测中胚层培养物中正在发育的心肌细胞的分化。神经元最初是不可兴奋的,在它们表现出循环运动的几个小时内会发育出电压依赖性钾离子、钠离子和钙离子电流。在形态分化前几个小时,去极化诱导的细胞内钙离子浓度升高的早期发展与之前描述的这些神经元中具有功能意义的细胞内钙离子浓度自发性升高的起始相对应,并证明了电压依赖性离子通道早期表达的作用。