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一种用于研究果蝇中枢神经系统修复的损伤模型。

An injury paradigm to investigate central nervous system repair in Drosophila.

作者信息

Kato Kentaro, Hidalgo Alicia

机构信息

Neurodevelopment Group, School of Biosciences, University of Birmingham, Birmingham, UK.

出版信息

J Vis Exp. 2013 Mar 28(73):50306. doi: 10.3791/50306.

Abstract

An experimental method has been developed to investigate the cellular responses to central nervous system (CNS) injury using the fruit-fly Drosophila. Understanding repair and regeneration in animals is a key question in biology. The damaged human CNS does not regenerate, and understanding how to promote the regeneration is one of main goals of medical neuroscience. The powerful genetic toolkit of Drosophila can be used to tackle the problem of CNS regeneration. A lesion to the CNS ventral nerve cord (VNC, equivalent to the vertebrate spinal cord) is applied manually with a tungsten needle. The VNC can subsequently be filmed in time-lapse using laser scanning confocal microscopy for up to 24 hr to follow the development of the lesion over time. Alternatively, it can be cultured, then fixed and stained using immunofluorescence to visualize neuron and glial cells with confocal microscopy. Using appropriate markers, changes in cell morphology and cell state as a result of injury can be visualized. With ImageJ and purposely developed plug-ins, quantitative and statistical analyses can be carried out to measure changes in wound size over time and the effects of injury in cell proliferation and cell death. These methods allow the analysis of large sample sizes. They can be combined with the powerful genetics of Drosophila to investigate the molecular mechanisms underlying CNS regeneration and repair.

摘要

已经开发出一种实验方法,利用果蝇来研究细胞对中枢神经系统(CNS)损伤的反应。了解动物的修复和再生是生物学中的一个关键问题。受损的人类中枢神经系统不会再生,而了解如何促进再生是医学神经科学的主要目标之一。果蝇强大的基因工具包可用于解决中枢神经系统再生问题。用钨针手动对中枢神经系统腹侧神经索(VNC,相当于脊椎动物的脊髓)造成损伤。随后可以使用激光扫描共聚焦显微镜对VNC进行延时拍摄长达24小时,以跟踪损伤随时间的发展。或者,可以对其进行培养,然后固定并用免疫荧光染色,通过共聚焦显微镜观察神经元和神经胶质细胞。使用适当的标记物,可以观察到损伤导致的细胞形态和细胞状态的变化。借助ImageJ和专门开发的插件,可以进行定量和统计分析,以测量伤口大小随时间的变化以及损伤对细胞增殖和细胞死亡的影响。这些方法允许对大量样本进行分析。它们可以与果蝇强大的遗传学相结合,以研究中枢神经系统再生和修复的分子机制。

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