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Improving miRNA Delivery by Optimizing miRNA Expression Cassettes in Diverse Virus Vectors

机译:通过优化多种病毒载体中的miRNA表达盒来改善miRNA传递

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摘要

The RNA interference pathway is an evolutionary conserved post-transcriptional gene regulation mechanism that is exclusively triggered by double-stranded RNA inducers. RNAi-based methods and technologies have facilitated the discovery of many basic science findings and spurred the development of novel RNA therapeutics. Transient induction of RNAi via transfection of synthetic small interfering RNAs can trigger the selective knockdown of a target mRNA. For durable silencing of gene expression, either artificial short hairpin RNA or microRNA encoding transgene constructs were developed. These miRNAs are based on the molecules that induce the natural RNAi pathway in mammals and humans: the endogenously expressed miRNAs. Significant efforts focused on the construction and delivery of miRNA cassettes in order to solve basic biology questions or to design new therapy strategies. Several viral vectors have been developed, which are particularly useful for the delivery of miRNA expression cassettes to specific target cells. Each vector system has its own unique set of distinct properties. Thus, depending on the specific application, a particular vector may be most suitable. This field was previously reviewed for different viral vector systems, and now the recent progress in the field of miRNA-based gene-silencing approaches using lentiviral vectors is reported. The focus is on the unique properties and respective limitations of the available vector systems for miRNA delivery.
机译:RNA干扰途径是进化保守的转录后基因调控机制,仅由双链RNA诱导剂触发。基于RNAi的方法和技术促进了许多基础科学发现的发现,并刺激了新型RNA治疗剂的开发。通过转染合成的小分子干扰RNA瞬时诱导RNAi可以触发靶mRNA的选择性敲低。为了持久沉默基因表达,开发了人工短发夹RNA或编码转基因构建体的microRNA。这些miRNA基于诱导哺乳动物和人类中天然RNAi途径的分子:内源表达的miRNA。为了解决基本生物学问题或设计新的治疗策略,大量的精力集中在miRNA盒的构建和交付上。已经开发了几种病毒载体,其对于将miRNA表达盒递送至特定靶细胞特别有用。每个向量系统都有其独特的独特属性集。因此,取决于特定的应用,特定的载体可能是最合适的。先前已针对不同的病毒载体系统对该领域进行了综述,现在报道了使用慢病毒载体的基于miRNA的基因沉默方法领域的最新进展。重点在于可用于miRNA递送的载体系统的独特特性和各自的局限性。

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