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将钙敏染料通过电穿孔法导入中枢神经系统。

Electroporation loading of calcium-sensitive dyes into the CNS.

作者信息

Bonnot Agnès, Mentis George Z, Skoch Jesse, O'Donovan Michael J

机构信息

Laboratory of Neural Control, Section on Developmental Neurobiology, NINDS, National Institutes of Health, 35 Convent Dr., Rm. 3C1010, Bethesda, MD 20892, USA.

出版信息

J Neurophysiol. 2005 Mar;93(3):1793-808. doi: 10.1152/jn.00923.2004. Epub 2004 Oct 27.

Abstract

Calcium imaging of neural network function has been limited by the extent of tissue labeled or the time taken for labeling. We now describe the use of electroporation-an established technique for transfecting cells with genes-to load neurons with calcium-sensitive dyes in the isolated spinal cord of the neonatal mouse in vitro. The dyes were injected subdurally, intravascularly, or into the central canal. This technique results in rapid and extensive labeling of neurons and their processes at all depths of the spinal cord, over a rostrocaudal extent determined by the position and size of the electrodes. Our results suggest that vascular distribution of the dye is involved in all three types of injections. Electroporation disrupts local reflex and network function only transiently (approximately 1 h), after which time they recover. We describe applications of the method to image activity of neuronal populations and individual neurons during antidromic, reflex, and locomotor-like behaviors. We show that these different motor behaviors are characterized by distinct patterns of activation among the labeled populations of cells.

摘要

神经网络功能的钙成像一直受到标记组织范围或标记所需时间的限制。我们现在描述电穿孔的应用——一种用基因转染细胞的成熟技术——用于在新生小鼠离体脊髓中用钙敏染料加载神经元。染料通过硬膜下、血管内或注入中央管的方式注入。该技术可在脊髓所有深度快速、广泛地标记神经元及其突起,标记范围在前后方向上由电极的位置和大小决定。我们的结果表明,染料的血管分布与所有三种注射方式都有关。电穿孔仅短暂地(约1小时)破坏局部反射和网络功能,之后它们会恢复。我们描述了该方法在成像逆向、反射和类似运动行为期间神经元群体和单个神经元活动方面的应用。我们表明,这些不同的运动行为以标记细胞群体中不同的激活模式为特征。

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