Faculty of Environment and Life, Beijing University of Technology, 100124 Beijing, China.
College of Bioscience and Biotechnology, Shenyang Agricultural University, 110866 Shenyang, Liaoning, China.
Front Biosci (Landmark Ed). 2022 Feb 14;27(2):61. doi: 10.31083/j.fbl2702061.
This attractive and intriguing Ribonucleic acid (RNA) nanotechnology has been conceptualized over the last two decades and with our increasing understanding of RNA structure and function and improvements of RNA nanotechnology it is now possible to use this in clinical settings.
Here we review the unique properties and the recent advances in RNA nanotechnology and then look at its scientific and preclinical applications for tumor diagnosis and targeted delivery and RNA-based therapy using RNA nanoparticles with diverse structures and functions. Finally, we discuss the future perspectives and challenges to RNA nanotechnology.
RNA can be designed and manipulated in a similar way to DNA while having different rules for base-pairing and displaying functions similar to proteins. Rationally designed RNA nanoparticles based on the three-way junction (3WJ) motif as the core scaffold have been extensively explored in the field of nanomedicine and targeted cancer diagnosis and therapy.
RNA nanostructures based on 3WJs demonstrate promising future applications due to their thermal stability, molecular-level plasticity, multifunctional chemotherapeutic drug delivery and other intrinsic characteristics, which will greatly improve the treatment of cancer and promote further major breakthroughs in this field.
这项引人入胜的 RNA 纳米技术在过去二十年中得到了发展。随着我们对 RNA 结构和功能的理解不断加深,以及 RNA 纳米技术的不断改进,现在已经可以将其应用于临床环境中。
本文综述了 RNA 纳米技术的独特性质和最新进展,然后探讨了其在肿瘤诊断和靶向递药以及基于 RNA 纳米颗粒的治疗方面的科学和临床前应用,这些纳米颗粒具有多种结构和功能。最后,我们讨论了 RNA 纳米技术的未来展望和挑战。
RNA 的设计和操作方式与 DNA 相似,但碱基配对规则不同,并具有类似于蛋白质的功能。基于三链结(3WJ)基序作为核心支架的理性设计的 RNA 纳米颗粒已在纳米医学和靶向癌症诊断和治疗领域得到广泛探索。
基于 3WJ 的 RNA 结构展示出了有前景的未来应用,这是因为它们具有热稳定性、分子水平的可塑性、多功能化疗药物递送和其他内在特性,这将极大地改善癌症的治疗效果,并推动该领域的进一步重大突破。