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MRNA as gene therapeutic: How to control protein expression

机译:MRNA作为基因治疗剂:如何控制蛋白质表达

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For many years, it was generally accepted that mRNA is too unstable to be efficiently used for gene therapy purposes. In the last decade, however, several research groups faced this challenge and not only proved the feasibility of mRNA-mediated transfection with surprising results regarding transfection efficiency and duration of protein expression, but also were able to demonstrate major advantages over the use of pDNA. These advantages will be the first issue discussed in this review, which first of all addresses the notions that mRNA does not need to cross the nuclear barrier to exert its biological activity and in addition lacks CpG motifs, which reduces its immunogenicity. Secondly, it provides insight in the (in)stability of the mRNA molecule, in how mRNA can be modified to increase its half-life and in the necessities of exogenously produced mRNA to be successfully used in transfection protocols. Furthermore, this review gives an in-depth overview of the different techniques and vehicles for intracellular mRNA delivery exploited by us and other groups, comprising electroporation, gene gun injection, lipo- and polyplexes. Finally, it covers recent literature describing specific applications for mRNA based gene delivery, showing that until now most attention has been paid to vaccination strategies. This review offers a comprehensive overview of current knowledge of the major theoretical as well as practical aspects of mRNA-mediated transfection, showing both its possibilities and its pitfalls and should therefore be useful for a diverse scientific audience.
机译:多年来,人们普遍认为mRNA太不稳定而不能有效地用于基因治疗。然而,在过去的十年中,几个研究小组面对了这一挑战,不仅证明了mRNA介导的转染的可行性,而且在转染效率和蛋白质表达持续时间方面取得了令人惊讶的结果,而且还证明了使用pDNA的主要优势。这些优点将是本综述中讨论的第一个问题,该问题首先解决了以下观点:mRNA不需要越过核屏障即可发挥其生物学活性,并且还缺少CpG基序,从而降低了其免疫原性。其次,它提供了关于mRNA分子(不稳定)稳定性,如何修饰mRNA以增加其半衰期以及将外源产生的mRNA成功用于转染方案的必要性的见解。此外,本综述深入探讨了我们和其他研究小组利用的不同技术和载体进行细胞内mRNA递送,包括电穿孔,基因枪注射,脂质复合物。最后,它涵盖了最近的文献,这些文献描述了基于mRNA的基因传递的特定应用,表明迄今为止,人们一直最关注疫苗接种策略。这篇综述提供了有关mRNA介导的转染的主要理论和实践方面的最新知识的全面概述,显示了其可能性和陷阱,因此对于不同的科学读者应该是有用的。

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