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斑马鱼胚胎中单个神经元和神经嵴细胞的细胞运动性及肌动蛋白细胞骨架的实时成像。

Live imaging of cell motility and actin cytoskeleton of individual neurons and neural crest cells in zebrafish embryos.

作者信息

Andersen Erica, Asuri Namrata, Clay Matthew, Halloran Mary

机构信息

Genetics Training Program, University of Wisconsin-Madison, USA.

出版信息

J Vis Exp. 2010 Feb 3(36):1726. doi: 10.3791/1726.

Abstract

The zebrafish is an ideal model for imaging cell behaviors during development in vivo. Zebrafish embryos are externally fertilized and thus easily accessible at all stages of development. Moreover, their optical clarity allows high resolution imaging of cell and molecular dynamics in the natural environment of the intact embryo. We are using a live imaging approach to analyze cell behaviors during neural crest cell migration and the outgrowth and guidance of neuronal axons. Live imaging is particularly useful for understanding mechanisms that regulate cell motility processes. To visualize details of cell motility, such as protrusive activity and molecular dynamics, it is advantageous to label individual cells. In zebrafish, plasmid DNA injection yields a transient mosaic expression pattern and offers distinct benefits over other cell labeling methods. For example, transgenic lines often label entire cell populations and thus may obscure visualization of the fine protrusions (or changes in molecular distribution) in a single cell. In addition, injection of DNA at the one-cell stage is less invasive and more precise than dye injections at later stages. Here we describe a method for labeling individual developing neurons or neural crest cells and imaging their behavior in vivo. We inject plasmid DNA into 1-cell stage embryos, which results in mosaic transgene expression. The vectors contain cell-specific promoters that drive expression of a gene of interest in a subset of sensory neurons or neural crest cells. We provide examples of cells labeled with membrane targeted GFP or with a biosensor probe that allows visualization of F-actin in living cells.

摘要

斑马鱼是体内发育过程中细胞行为成像的理想模型。斑马鱼胚胎为体外受精,因此在发育的各个阶段都易于获取。此外,它们的光学透明性使得在完整胚胎的自然环境中对细胞和分子动态进行高分辨率成像成为可能。我们正在使用实时成像方法来分析神经嵴细胞迁移以及神经元轴突生长和导向过程中的细胞行为。实时成像对于理解调节细胞运动过程的机制特别有用。为了可视化细胞运动的细节,如突出活动和分子动态,标记单个细胞是有利的。在斑马鱼中,质粒DNA注射产生瞬时镶嵌表达模式,与其他细胞标记方法相比具有明显优势。例如,转基因品系通常标记整个细胞群体,因此可能会掩盖单个细胞中精细突出(或分子分布变化)的可视化。此外,在单细胞阶段注射DNA比在后期注射染料侵入性更小且更精确。在这里,我们描述一种标记单个发育中的神经元或神经嵴细胞并在体内对其行为进行成像的方法。我们将质粒DNA注射到单细胞阶段的胚胎中,这会导致镶嵌转基因表达。载体包含细胞特异性启动子,可驱动感兴趣的基因在一部分感觉神经元或神经嵴细胞中表达。我们提供了用膜靶向绿色荧光蛋白或生物传感器探针标记细胞的示例,该探针可在活细胞中可视化F - 肌动蛋白。

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