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Viral and Synthetic RNA Vector Technologies and Applications

机译:病毒和合成RNA载体技术及应用

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摘要

Use of RNA is an increasingly popular method to transiently deliver genetic information for cell manipulation in basic research and clinical therapy. In these settings, viral and nonviral RNA platforms are employed for delivery of small interfering RNA and protein-coding mRNA. Technological advances allowing RNA modification for increased stability, improved translation and reduced immunogenicity have led to increased use of nonviral synthetic RNA, which is delivered in naked form or upon formulation. Alternatively, highly efficient viral entry pathways are exploited to transfer genes of interest as RNA incorporated into viral particles. Current viral RNA transfer technologies are derived from Retroviruses, nonsegmented negative-strand RNA viruses or positive-stranded Alpha- and Flaviviruses. In retroviral particles, the genes of interest can either be incorporated directly into the viral RNA genome or as nonviral RNA. Nonsegmented negative-strand virus-, Alpha- and Flavivirus-derived vectors support prolonged expression windows through replication of viral RNA encoding genes of interest. Mixed technologies combining viral and nonviral components are also available. RNA transfer is ideal for all settings that do not require permanent transgene expression and excludes potentially detrimental DNA integration into the target cell genome. Thus, RNA-based technologies are successfully applied for reprogramming, transdifferentiation, gene editing, vaccination, tumor therapy, and gene therapy.
机译:RNA的使用是一种越来越流行的方法,可以在基础研究和临床治疗中为细胞操作瞬时传递遗传信息。在这些情况下,病毒和非病毒RNA平台可用于递送小分子干扰RNA和编码蛋白质的mRNA。允许对RNA进行修饰以提高稳定性,改善翻译和降低免疫原性的技术进步已导致非病毒合成RNA的使用增加,该合成RNA以裸露形式或通过制剂给药。或者,利用高效的病毒进入途径来转移感兴趣的基因,作为掺入病毒颗粒的RNA。当前的病毒RNA转移技术源自逆转录病毒,非分段的负链RNA病毒或正链的甲型和黄病毒。在逆转录病毒颗粒中,目的基因可以直接掺入病毒RNA基因组中,也可以掺入非病毒RNA中。非分段负链病毒,α和黄病毒衍生载体通过复制编码目的基因的病毒RNA支持延长的表达窗口。也可以使用结合了病毒和非病毒成分的混合技术。 RNA转移是不需要永久性转基因表达且不包括可能有害的DNA整合到靶细胞基因组中的所有设置的理想选择。因此,基于RNA的技术已成功应用于重编程,转分化,基因编辑,疫苗接种,肿瘤治疗和基因治疗。

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