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Use of in vitro electroporation and slice culture for gene function analysis in the mouse embryonic spinal cord

机译:在小鼠胚胎脊髓中使用体外电穿孔和切片培养物进行基因功能分析

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摘要

The spinal cord is an important part of the central nervous system (CNS). At present, the expression of the exogenous gene in the spinal cord of the embryonic mouse needs in utero spinal cord electroporation, but the success rate of this technique is very low. In this study, we have demonstrated the expression of an exogenous gene on one side of the spinal cord by combining two methods-in vitro electroporation of embryonic mouse spinal cord and organ spinal cord slices culture. We took 12-day embryonic mice, injected the green fluorescent protein (pCAGGS-GFP) plasmid into the spinal cord cavity in vitro, and then electroporated. The spinal cord was cut into 300-mu m slices using a vibratory microtome. After cultured for 48 h, GFP-positive neurons were clearly observed on one side of the spinal cord, indicating that the exogenous gene was successfully transferred. The axon projection direction is basically unanimous from the inside to the lateral edge of the spinal cord. Compared to neurons in vivo, a single neuron in the culturing section has more complete neurites and is conducive to studying changes in the structure and behavior of individual neurons. Based on the above results, we have successfully established a convenient and efficient method for expressing the exogenous gene in the spinal cord of the mouse.
机译:脊髓是中枢神经系统(CNS)的重要组成部分。目前,外源基因在子宫脊髓电穿孔中胚胎小鼠需要的脊髓表达,但这种技术的成功率非常低。在这项研究中,我们通过组合胚胎小鼠脊髓和器官脊髓切片培养的两种方法电穿孔,证明了脊髓一侧的外源基因的表达。我们服用了12天的胚胎小鼠,将绿色荧光蛋白(PCAGGS-GFP)质粒注射到体外脊髓腔中,然后电穿孔。使用振动切片体切成300-mu m切片的脊髓。在培养48小时后,在脊髓的一侧清楚地观察到GFP阳性神经元,表明外源基因成功转移。轴突突出方向从内侧到脊髓的侧边缘基本上是一致的。与体内神经元相比,培养部分中的单一神经元具有更完整的神经态,有利于研究个体神经元的结构和行为的变化。基于上述结果,我们已经成功地建立了一种方便,高效的方法,用于表达小鼠脊髓中的外源基因。

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