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将互补DNA/吗啉代寡核苷酸电穿孔导入非洲爪蟾胚胎中枢神经系统的靶向区域。

Electroporation of cDNA/Morpholinos to targeted areas of embryonic CNS in Xenopus.

作者信息

Falk Julien, Drinjakovic Jovana, Leung Kin Mei, Dwivedy Asha, Regan Aoife G, Piper Michael, Holt Christine E

机构信息

Department of Physiology, Development and Neuroscience, University of Cambridge, Downing Street, Cambridge CB2 3DY, UK.

出版信息

BMC Dev Biol. 2007 Sep 27;7:107. doi: 10.1186/1471-213X-7-107.

Abstract

BACKGROUND

Blastomere injection of mRNA or antisense oligonucleotides has proven effective in analyzing early gene function in Xenopus. However, functional analysis of genes involved in neuronal differentiation and axon pathfinding by this method is often hampered by earlier function of these genes during development. Therefore, fine spatio-temporal control of over-expression or knock-down approaches is required to specifically address the role of a given gene in these processes.

RESULTS

We describe here an electroporation procedure that can be used with high efficiency and low toxicity for targeting DNA and antisense morpholino oligonucleotides (MOs) into spatially restricted regions of the Xenopus CNS at a critical time-window of development (22-50 hour post-fertilization) when axonal tracts are first forming. The approach relies on the design of "electroporation chambers" that enable reproducible positioning of fixed-spaced electrodes coupled with accurate DNA/MO injection. Simple adjustments can be made to the electroporation chamber to suit the shape of different aged embryos and to alter the size and location of the targeted region. This procedure can be used to electroporate separate regions of the CNS in the same embryo allowing separate manipulation of growing axons and their intermediate and final targets in the brain.

CONCLUSION

Our study demonstrates that electroporation can be used as a versatile tool to investigate molecular pathways involved in axon extension during Xenopus embryogenesis. Electroporation enables gain or loss of function studies to be performed with easy monitoring of electroporated cells. Double-targeted transfection provides a unique opportunity to monitor axon-target interaction in vivo. Finally, electroporated embryos represent a valuable source of MO-loaded or DNA transfected cells for in vitro analysis. The technique has broad applications as it can be tailored easily to other developing organ systems and to other organisms by making simple adjustments to the electroporation chamber.

摘要

背景

事实证明,将mRNA或反义寡核苷酸注入卵裂球在分析非洲爪蟾早期基因功能方面是有效的。然而,通过这种方法对参与神经元分化和轴突导向的基因进行功能分析,常常因这些基因在发育过程中的早期功能而受到阻碍。因此,需要对过表达或敲低方法进行精确的时空控制,以具体研究特定基因在这些过程中的作用。

结果

我们在此描述一种电穿孔程序,该程序可在发育的关键时间窗口(受精后22 - 50小时,此时轴突束刚开始形成)以高效率和低毒性将DNA和反义吗啉代寡核苷酸(MOs)靶向导入非洲爪蟾中枢神经系统的空间受限区域。该方法依赖于“电穿孔室”的设计,这种设计能够实现固定间距电极的可重复定位,并结合精确的DNA/MO注射。可以对电穿孔室进行简单调整,以适应不同发育阶段胚胎的形状,并改变靶向区域的大小和位置。此程序可用于对同一胚胎的中枢神经系统不同区域进行电穿孔,从而分别操控正在生长的轴突及其在脑中的中间和最终靶点。

结论

我们的研究表明,电穿孔可作为一种通用工具,用于研究非洲爪蟾胚胎发育过程中轴突延伸所涉及的分子途径。电穿孔能够进行功能获得或功能缺失研究,同时便于监测电穿孔细胞。双靶点转染为在体内监测轴突 - 靶点相互作用提供了独特机会。最后,电穿孔胚胎是用于体外分析的负载MO或DNA转染细胞的宝贵来源。该技术具有广泛的应用,因为通过对电穿孔室进行简单调整,它可以很容易地适用于其他发育中的器官系统和其他生物体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8356/2147031/024f85258e6e/1471-213X-7-107-1.jpg

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