Gallipoli Medical Research Institute, Greenslopes Private Hospital, 102 Newdegate Street, Brisbane, QLD 4120, Australia.
Faculty of Medicine, University of Queensland, 288 Herston Road, Herston, Brisbane, QLD 4006, Australia.
Molecules. 2018 Jun 21;23(7):1500. doi: 10.3390/molecules23071500.
Targeted gene delivery relies on the ability to limit the expression of a transgene within a defined cell/tissue population. MicroRNAs represent a class of highly powerful and effective regulators of gene expression that act by binding to a specific sequence present in the corresponding messenger RNA. Involved in almost every aspect of cellular function, many miRNAs have been discovered with expression patterns specific to developmental stage, lineage, cell-type, or disease stage. Exploiting the binding sites of these miRNAs allows for construction of targeted gene delivery platforms with a diverse range of applications. Here, we summarize studies that have utilized miRNA-regulated systems to achieve targeted gene delivery for both research and therapeutic purposes. Additionally, we identify criteria that are important for the effectiveness of a particular miRNA for such applications and we also discuss factors that have to be taken into consideration when designing miRNA-regulated expression cassettes.
靶向基因传递依赖于在特定的细胞/组织群体中限制转基因表达的能力。 microRNA 是一类高度强大和有效的基因表达调控因子,通过与相应信使 RNA 中存在的特定序列结合而发挥作用。许多 miRNA 参与细胞功能的几乎所有方面,其表达模式具有发育阶段、谱系、细胞类型或疾病阶段特异性。利用这些 miRNA 的结合位点,可以构建具有广泛应用的靶向基因传递平台。在这里,我们总结了利用 miRNA 调控系统实现研究和治疗目的的靶向基因传递的研究。此外,我们确定了对于此类应用 miRNA 的有效性的重要标准,并且还讨论了在设计 miRNA 调控表达盒时需要考虑的因素。