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Uniqueness Advantages Challenges Solutions and Perspectives in Therapeutics Applying RNA Nanotechnology

机译:应用RNA纳米技术的治疗学的独特性优势挑战解决方案和观点

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摘要

The field of RNA nanotechnology is rapidly emerging. RNA can be manipulated with the simplicity characteristic of DNA to produce nanoparticles with a diversity of quaternary structures by self-assembly. Additionally RNA is tremendously versatile in its function and some RNA molecules display catalytic activities much like proteins. Thus, RNA has the advantage of both worlds. However, the instability of RNA has made many scientists flinch away from RNA nanotechnology. Other concerns that have deterred the progress of RNA therapeutics include the induction of interferons, stimulation of cytokines, and activation of other immune systems, as well as short pharmacokinetic profiles in vivo. This review will provide some solutions and perspectives on the chemical and thermodynamic stability, in vivo half-life and biodistribution, yield and production cost, in vivo toxicity and side effect, specific delivery and targeting, as well as endosomal trapping and escape.
机译:RNA纳米技术领域正在迅速兴起。可以利用DNA的简单特性来操纵RNA,以通过自组装产生具有多种四级结构的纳米粒子。另外,RNA在功能上具有极大的通用性,某些RNA分子像蛋白质一样显示出催化活性。因此,RNA具有两全其美的优势。但是,RNA的不稳定性使许多科学家退缩了RNA纳米技术。阻碍RNA治疗进展的其他问题包括干扰素的诱导,细胞因子的刺激,其他免疫系统的激活以及体内的短药代动力学。这篇综述将提供有关化学和热力学稳定性,体内半衰期和生物分布,产量和生产成本,体内毒性和副作用,特异性递送和靶向以及内体诱捕和逃逸的一些解决方案和观点。

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