Guo Songchuan, Tschammer Nuska, Mohammed Sulma, Guo Peixuan
Department of Pathobiology and Purdue Cancer Research Center, Purdue University, West Lafayette, IN 47907, USA.
Hum Gene Ther. 2005 Sep;16(9):1097-109. doi: 10.1089/hum.2005.16.1097.
The application of small RNA in therapy has been hindered by the lack of an efficient and safe delivery system to target specific cells. Packaging RNA (pRNA), part of the DNA-packaging motor of bacteriophage phi29(Phi29), was manipulated by RNA nanotechnology to make chimeric RNAs that form dimers via interlocking right- and left-hand loops. Fusing pRNA with receptor-binding RNA aptamer, folate, small interfering RNA (siRNA), ribozyme, or another chemical group did not disturb dimer formation or interfere with the function of the inserted moieties. Incubation of cancer cells with the pRNA dimer, one subunit of which harbored the receptor-binding moiety and the other harboring the gene-silencing molecule, resulted in their binding and entry into the cells, and subsequent silencing of anti/proapoptotic genes. The chimeric pRNA complex was found to be processed into functional double-stranded siRNA by Dicer (RNA-specific endonuclease). Animal trials confirmed the suppression of tumorigenicity of cancer cells by ex vivo delivery. It has been reported [Shu, D., Moll, W.-D., Deng, Z., Mao, C., and Guo, P. (2004). Nano Lett. 4:1717-1724] that RNA can be used as a building block for bottom-up assembly in nanotechnology. The assembly of protein-free 25-nm RNA nanoparticles reported here will allow for repeated long-term administration and avoid the problems of short retention time of small molecules and the difficulties in the delivery of particles larger than 100 nm.
小RNA在治疗中的应用一直受到缺乏高效安全的靶向特定细胞递送系统的阻碍。包装RNA(pRNA)是噬菌体phi29(Phi29)DNA包装马达的一部分,通过RNA纳米技术进行操控,以制造通过右手和左手环互锁形成二聚体的嵌合RNA。将pRNA与受体结合RNA适体、叶酸、小干扰RNA(siRNA)、核酶或另一种化学基团融合,不会干扰二聚体形成或影响插入部分的功能。用pRNA二聚体孵育癌细胞,其中一个亚基带有受体结合部分,另一个亚基带有基因沉默分子,导致它们与细胞结合并进入细胞,随后抗凋亡/促凋亡基因沉默。发现嵌合pRNA复合物被Dicer(RNA特异性核酸内切酶)加工成功能性双链siRNA。动物试验证实了通过离体递送对癌细胞致瘤性的抑制作用。据报道[Shu, D., Moll, W.-D., Deng, Z., Mao, C., and Guo, P. (2004). Nano Lett. 4:1717-1724],RNA可作为纳米技术中自下而上组装的构建块。本文报道的无蛋白质25纳米RNA纳米颗粒的组装将允许重复长期给药,并避免小分子保留时间短以及大于100纳米颗粒递送困难的问题。