Center for Paralysis Research, Department of Basic Medical Sciences, School of Veterinary Medicine, Purdue University, West Lafayette, IN 47907, USA.
J Neurosci Res. 2012 Jul;90(7):1335-46. doi: 10.1002/jnr.22809. Epub 2012 Mar 19.
We report extraordinary perpendicular orientations of neurons dependent on the presence of an external direct current (DC) voltage gradient. We chose chick dorsal root and postganglionic sympathetic neurons to evaluate. These were cultured in observation chambers in which the cells were separated from electrode products or substrate effects and maintained at 35°C. Both types of neurons showed a rapid restructuring of their anatomy. Typically, neurites that were not perpendicular to the voltage gradient were quickly resorbed into the cell body within a few minutes. Over 3-6 hr, significant new neurite growth occurred and was patterned perpendicular to the DC electrical field (Ef). This preferred asymmetry was dependent on the Ef, as was the initial retrograde degeneration of fibers. At 400-500 mV/mm, over 90% of the cells in culture assumed this orientation. Removal of the DC Ef led to a loss of the preferred orientation, with further random growth within the chambers. This is the first report of such responses in dorsal root ganglion neurons. We also used sympathetic neurons as a meaningful comparison to analyze whether there were any qualitative or quantitative differences between these two cell types of neural crest origin. We discuss the means by which these orientations were achieved.
我们报告了神经元的异常垂直取向,这取决于外部直流(DC)电压梯度的存在。我们选择鸡背根和节后交感神经元进行评估。这些细胞在观察室中培养,在观察室中,细胞与电极产物或基底效应分离,并保持在 35°C。这两种类型的神经元都表现出解剖结构的快速重构。通常,不垂直于电压梯度的轴突在几分钟内迅速被吸收到细胞体中。在 3-6 小时内,显著的新轴突生长发生,并垂直于直流电场(Ef)排列。这种优先的不对称性依赖于 Ef,就像纤维的初始逆行变性一样。在 400-500 mV/mm 时,培养物中超过 90%的细胞呈现这种取向。去除直流 Ef 会导致优先取向丧失,腔室内进一步出现随机生长。这是背根神经节神经元中首次报道这种反应。我们还使用交感神经元作为有意义的比较,分析这两种神经嵴起源的细胞类型之间是否存在任何定性或定量差异。我们讨论了实现这些取向的方法。