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首页> 外文期刊>The journal of gene medicine >Plasmid DNA electrotransfer for intracellular and secreted proteins expression: new methodological developments and applications
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Plasmid DNA electrotransfer for intracellular and secreted proteins expression: new methodological developments and applications

机译:用于细胞内和分泌蛋白表达的质粒DNA电转移:新方法学的发展和应用

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摘要

In vivo electrotransfer is a physical method of gene delivery in various tissues and organs, relying on the injection of a plasmid DNA followed by electric pulse delivery. The importance of the association between cell permeabilization and DNA electrophoresis for electrotransfer efficiency has been highlighted. In vivo electrotransfer is of special interest since it is the most efficient non-viral strategy of gene delivery and also because of its low cost, easiness of realization and safety. The potentiality of this technique can be further improved by optimizing plasmid biodistribution in the targeted organ, plasmid structure, and the design of the encoded protein. In particular, we found that plasmids of smaller size were electrotransferred more efficiently than large plasmids. It is also of importance to study and understand kinetic expression of the transgene, which can be very variable, depending on many factors including cellular localization of the protein, physiological activity and regulation. The most widely targeted tissue is skeletal muscle, because this strategy is not only promising for the treatment of muscle disorders, but also for the systemic secretion of therapeutic proteins. Vaccination and oncology gene therapy are also major fields of application of electrotransfer, whereas application to other organs such as liver, brain and cornea are expanding. Many published studies have shown that plasmid electrotransfer can lead to long-lasting therapeutic effects in various pathologies such as cancer, blood disorders, rheumatoid arthritis or muscle ischemia. DNA electrotransfer is also a powerful laboratory tool to study gene function in a given tissue.
机译:体内电转移是在各种组织和器官中进行基因传递的物理方法,它依赖于质粒DNA的注射,然后进行电脉冲传递。已经强调了细胞通透性和DNA电泳之间的关联对于电转移效率的重要性。体内电转移特别受关注,因为它是最有效的基因传递非病毒策略,并且还因为其成本低,易于实现和安全性。通过优化靶器官中的质粒生物分布,质粒结构和编码蛋白的设计,可以进一步提高该技术的潜力。特别地,我们发现较小的质粒比较大的质粒更有效地电转移。研究和理解转基因的动力学表达也很重要,这取决于很多因素,包括蛋白质的细胞定位,生理活性和调节,因此变化很大。靶向最广泛的组织是骨骼肌,因为该策略不仅有望用于治疗肌肉疾病,而且还有望用于治疗性蛋白质的全身性分泌。疫苗接种和肿瘤基因治疗也是电转移应用的主要领域,而在其他器官(如肝,脑和角膜)的应用也在扩大。许多已发表的研究表明,质粒电转移可以在各种病理学例如癌症,血液疾病,类风湿性关节炎或肌肉缺血中导致长期的治疗效果。 DNA电转移也是研究给定组织中基因功能的强大实验室工具。

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