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pRNA 纳米颗粒的构建用于将治疗性 RNA 和生物活性化合物递送入肿瘤细胞。

Fabrication of pRNA nanoparticles to deliver therapeutic RNAs and bioactive compounds into tumor cells.

机构信息

Nanobiotechnology Center, Markey Cancer Center, Lexington, Kentucky, USA.

出版信息

Nat Protoc. 2013 Sep;8(9):1635-59. doi: 10.1038/nprot.2013.097. Epub 2013 Aug 1.

Abstract

RNA nanotechnology is a term that refers to the design, fabrication and use of nanoparticles that are mainly composed of RNAs via bottom-up self-assembly. The packaging RNA (pRNA) of the bacteriophage phi29 DNA packaging motor has been developed into a nanodelivery platform. This protocol describes the synthesis, assembly and functionalization of pRNA nanoparticles on the basis of three 'toolkits' derived from pRNA structural features: interlocking loops for hand-in-hand interactions, palindrome sequences for foot-to-foot interactions and an RNA three-way junction for branch extension. siRNAs, ribozymes, aptamers, chemical ligands, fluorophores and other functionalities can also be fused to the pRNA before the assembly of the nanoparticles, so as to ensure the production of homogeneous nanoparticles and the retention of appropriate folding and function of the incorporated modules. The resulting self-assembled multivalent pRNA nanoparticles are thermodynamically and chemically stable, and they remain intact at ultralow concentrations. Gene-silencing effects are progressively enhanced with increasing numbers of siRNAs in each pRNA nanoparticle. Systemic injection of the pRNA nanoparticles into xenograft-bearing mice has revealed strong binding to tumors without accumulation in vital organs or tissues. The pRNA-based nanodelivery scaffold paves a new way for nanotechnological application of pRNA-based nanoparticles for disease detection and treatment. The time required for completing one round of this protocol is 3-4 weeks when including in vitro functional assays, or 2-3 months when including in vivo studies.

摘要

RNA 纳米技术是指通过自下而上的自组装设计、制造和使用主要由 RNA 组成的纳米颗粒。噬菌体 phi29 DNA 包装马达的包装 RNA(pRNA)已被开发为一种纳米递药平台。本方案基于 pRNA 结构特征的三个“工具包”描述了 pRNA 纳米颗粒的合成、组装和功能化:用于手拉手相互作用的互锁环、用于脚对脚相互作用的回文序列和用于分支延伸的 RNA 三链结。siRNA、核酶、适体、化学配体、荧光团和其他功能也可以在组装纳米颗粒之前融合到 pRNA 上,以确保生产出同质的纳米颗粒,并保持掺入模块的适当折叠和功能。所得自组装多价 pRNA 纳米颗粒热力学和化学稳定,在超低浓度下仍保持完整。每个 pRNA 纳米颗粒中的 siRNA 数量增加,基因沉默效果逐渐增强。将 pRNA 纳米颗粒系统注射到异种移植荷瘤小鼠体内,发现它们与肿瘤强烈结合,而不会在重要器官或组织中积累。基于 pRNA 的纳米递药支架为基于 pRNA 的纳米颗粒在疾病检测和治疗中的纳米技术应用开辟了新途径。完成本方案一轮所需的时间为 3-4 周,包括体外功能测定,或 2-3 个月,包括体内研究。

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