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一种用于小干扰RNA质粒新型基因递送的多功能包膜型纳米装置

A multifunctional envelope-type nano device for novel gene delivery of siRNA plasmids.

作者信息

Moriguchi Rumiko, Kogure Kentaro, Akita Hidetaka, Futaki Shiroh, Miyagishi Makoto, Taira Kazunari, Harashima Hideyoshi

机构信息

Graduate School of Pharmaceutical Sciences, Hokkaido University, Sapporo 060-0812, Japan.

出版信息

Int J Pharm. 2005 Sep 14;301(1-2):277-85. doi: 10.1016/j.ijpharm.2005.05.021.

Abstract

A multifunctional envelope-type nano device (MEND) for use in the delivery of siRNA expression plasmids is described. The plasmid DNA encoding anti-luciferase short interfering RNA (siRNA) was condensed by poly-L-lysine (PLL) and packaged into the MEND. The silencing effect of the MEND(PLL) showed a 96% inhibition of luciferase activities in a co-transfection study. The silencing effect was maintained at more than 60%, even under the 100-fold diluted conditions. In the luciferase transformed cells, however, the MEND(PLL) showed no significant silencing effect (10%), indicating heterogeneity in transfection by the MEND(PLL). To solve this problem, the DNA condensing agents were optimized by comparing PLL, stearyl octaarginine (STR-R8) and protamine (Prot). No difference in silencing effect (95-97%) was found among these MENDs in a co-transfection study. However, the MEND(Prot) showed a 70% silencing effect in the transformed cells. These results suggest that the MEND(Prot) has less heterogeneity in transfection, while the MEND(PLL) and the MEND(STR-R8) have large heterogeneities. These results demonstrate that MEND(Prot) is a promising gene delivery system for siRNA expression plasmids with less heterogeneity associated with the transfection.

摘要

描述了一种用于递送小干扰RNA(siRNA)表达质粒的多功能包膜型纳米装置(MEND)。编码抗荧光素酶短干扰RNA(siRNA)的质粒DNA被聚-L-赖氨酸(PLL)浓缩并包装到MEND中。在共转染研究中,MEND(PLL)的沉默效果显示出对荧光素酶活性96%的抑制。即使在100倍稀释条件下,沉默效果仍保持在60%以上。然而,在荧光素酶转化细胞中,MEND(PLL)显示出不显著的沉默效果(10%),表明MEND(PLL)转染存在异质性。为了解决这个问题,通过比较PLL、硬脂酰八聚精氨酸(STR-R8)和鱼精蛋白(Prot)对DNA浓缩剂进行了优化。在共转染研究中,这些MEND之间未发现沉默效果的差异(95-97%)。然而,MEND(Prot)在转化细胞中显示出70%的沉默效果。这些结果表明,MEND(Prot)在转染中具有较小的异质性,而MEND(PLL)和MEND(STR-R8)具有较大的异质性。这些结果证明,MEND(Prot)是一种有前景的用于siRNA表达质粒的基因递送系统,与转染相关的异质性较小。

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