Abu-Elmagd Muhammad
Center of Excellence in Genomic Medicine Research, King Abdulaziz University, Jeddah, Kingdom of Saudi Arabia.
J Biol Methods. 2018 Jun 7;5(2):e93. doi: 10.14440/jbm.2018.253. eCollection 2018.
Somite myogenesis is one of the crucial early embryonic events that lead to the formation of muscular tissue. A complex of dynamic gene regulatory networks masters this event. To understand and analyze these networks, there remains a genuine need for the use of a reproducible and highly efficient gene transfer technique. electroporation has proven to be amongst the best approaches in achieving a high level of gene transfer. However, unoptimized electroporation conditions can directly cause varying degrees of cellular damage which may induce abnormal embryonic development as well as changes in the endogenous gene expression. Presegmented mesoderm and epithelial somites are not easy to electroporate. Chick neural tube has served in many functional studies as an ideal experimental model organ which is both robust and easily manipulated. In the current detailed protocol, the neural tube was used as a tool to optimize the electroporation conditions which were subsequently applied in the electroporation of the presegmented mesoderm and epithelial somites. The protocol highlights important notes and hints that enable reproducible results and could be applied in the electroporation of other chick embryo tissues.
体节肌生成是导致肌肉组织形成的关键早期胚胎事件之一。一个复杂的动态基因调控网络掌控着这一事件。为了理解和分析这些网络,确实需要使用一种可重复且高效的基因转移技术。电穿孔已被证明是实现高水平基因转移的最佳方法之一。然而,未优化的电穿孔条件可能直接导致不同程度的细胞损伤,这可能会诱导胚胎发育异常以及内源性基因表达的变化。预分割中胚层和上皮体节不易进行电穿孔。鸡神经管在许多功能研究中一直作为一种理想的实验模型器官,它既强健又易于操作。在当前的详细方案中,神经管被用作优化电穿孔条件的工具,随后这些条件被应用于预分割中胚层和上皮体节的电穿孔。该方案突出了重要的注意事项和提示,能够实现可重复的结果,并且可应用于其他鸡胚组织的电穿孔。