Mir L M
Centre National de la Recherche Scientifique, UMR 8121, Institut Gustave-Roussy, 39 Rue C. Desmoulins, Villejuif Cédex, France.
Mol Biotechnol. 2009 Oct;43(2):167-76. doi: 10.1007/s12033-009-9192-6. Epub 2009 Jun 27.
About 25 years after the publication of the first report on gene transfer in vitro in cultured cells by the means of electric pulses delivery, reversible cell electroporation for gene transfer and gene therapy (DNA electrotransfer) is at a cross in its development. Present knowledge on the effects of cell exposure to appropriate electric field pulses, particularly at the level of the cell membrane, is reported here. The importance of the models of electric field distribution in tissues and of the correct choice of electrodes and applied voltages is highlighted. The mechanisms involved in DNA electrotransfer, which include cell electropermeabilization and DNA electrophoresis, are also surveyed. This knowledge has allowed developing new nucleic acids electrotransfer conditions using combinations of permeabilizing pulses of high voltage and short duration, and of electrophoretic pulses of low voltage and long duration, which are very efficient and safer. Feasibility of electric pulses delivery for gene transfer in humans is discussed taking into account that electric pulses delivery is already regularly used for localized drug delivery in the treatment of cutaneous and subcutaneous solid tumors by electrochemotherapy. Because recent technological developments made DNA electrotransfer more and more efficient and safer, this non-viral gene therapy approach is now ready to reach the clinical stage. A good understanding of DNA electrotransfer principles and the respect of safe procedures will be key elements for a successful future transfer DNA electrotransfer into the clinics.
在关于通过电脉冲递送在培养细胞中进行体外基因转移的首篇报告发表约25年后,用于基因转移和基因治疗的可逆细胞电穿孔(DNA电转染)正处于其发展的十字路口。本文报道了目前关于细胞暴露于适当电场脉冲的影响的知识,特别是在细胞膜水平上的影响。强调了组织中电场分布模型以及电极和施加电压正确选择的重要性。还综述了DNA电转染所涉及的机制,包括细胞电通透化和DNA电泳。这些知识使得能够利用高电压短持续时间的通透化脉冲和低电压长持续时间的电泳脉冲的组合来开发新的核酸电转染条件,这些条件非常高效且更安全。考虑到电脉冲递送已被常规用于通过电化学疗法治疗皮肤和皮下实体瘤的局部药物递送,讨论了电脉冲递送在人类基因转移中的可行性。由于最近的技术发展使DNA电转染越来越高效和安全,这种非病毒基因治疗方法现在已准备好进入临床阶段。对DNA电转染原理的良好理解以及对安全程序的遵守将是未来成功将DNA电转染应用于临床的关键因素。