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秀丽隐杆线虫体内激光轴突切断术。

In vivo laser axotomy in C. elegans.

作者信息

Byrne Alexandra B, Edwards Tyson J, Hammarlund Marc

机构信息

Department of Genetics, Program in Cellular Neuroscience, Neurodegeneration and Repair, Yale University School of Medicine, USA.

出版信息

J Vis Exp. 2011 May 19(51):2707. doi: 10.3791/2707.

Abstract

Neurons communicate with other cells via axons and dendrites, slender membrane extensions that contain pre- or post-synaptic specializations. If a neuron is damaged by injury or disease, it may regenerate. Cell-intrinsic and extrinsic factors influence the ability of a neuron to regenerate and restore function. Recently, the nematode C. elegans has emerged as an excellent model organism to identify genes and signaling pathways that influence the regeneration of neurons(1-6). The main way to initiate neuronal regeneration in C. elegans is laser-mediated cutting, or axotomy. During axotomy, a fluorescently-labeled neuronal process is severed using high-energy pulses. Initially, neuronal regeneration in C. elegans was examined using an amplified femtosecond laser(5). However, subsequent regeneration studies have shown that a conventional pulsed laser can be used to accurately sever neurons in vivo and elicit a similar regenerative response(1,3,7). We present a protocol for performing in vivo laser axotomy in the worm using a MicroPoint pulsed laser, a turnkey system that is readily available and that has been widely used for targeted cell ablation. We describe aligning the laser, mounting the worms, cutting specific neurons, and assessing subsequent regeneration. The system provides the ability to cut large numbers of neurons in multiple worms during one experiment. Thus, laser axotomy as described herein is an efficient system for initiating and analyzing the process of regeneration.

摘要

神经元通过轴突和树突与其他细胞进行通讯,轴突和树突是细长的膜性延伸结构,包含突触前或突触后特化结构。如果神经元因损伤或疾病而受损,它可能会再生。细胞内在和外在因素会影响神经元再生和恢复功能的能力。最近,线虫秀丽隐杆线虫已成为一种优秀的模式生物,用于鉴定影响神经元再生的基因和信号通路(1-6)。在秀丽隐杆线虫中启动神经元再生的主要方法是激光介导切割,即轴突切断术。在轴突切断术中,使用高能脉冲切断荧光标记的神经元突起。最初,使用放大的飞秒激光研究秀丽隐杆线虫中的神经元再生(5)。然而,随后的再生研究表明,传统的脉冲激光可用于在体内精确切断神经元并引发类似的再生反应(1,3,7)。我们介绍了一种使用MicroPoint脉冲激光在线虫中进行体内激光轴突切断术的方案,MicroPoint脉冲激光是一种现成的系统,已被广泛用于靶向细胞消融。我们描述了激光对准、线虫固定、特定神经元切割以及后续再生评估的方法。该系统能够在一次实验中对多条线虫的大量神经元进行切割。因此,本文所述的激光轴突切断术是一种启动和分析再生过程的有效系统。

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