首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >Octaarginine- and pH sensitive fusogenic peptide-modified nanoparticles for liver gene delivery
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Octaarginine- and pH sensitive fusogenic peptide-modified nanoparticles for liver gene delivery

机译:八精氨酸和pH敏感的融合肽修饰的纳米颗粒可用于肝脏基因传递

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We previously reported that octaarginine peptide modified liposomes (R8-liposomes) largely accumulated in the liver after intravenous administration and that this is dependent on the R8-density. We report herein on the development of a Multifunctional Envelope-type Nano Device modified with R8 and GALA, as a pH-sensitive fusogenic peptide (R8-GALA-MEND) for liver gene delivery. An R8-MEND encapsulating pDNA prepared using two different cores (negatively or positively charged pDNA/polyethylene imine condensed particles) failed to produce a high gene expression in the liver. Modification with GALA dramatically increased gene expression particularly in the liver only in the case of a negative core R8-MEND. Quantification of the number of gene copies delivered to liver cells and nuclei revealed that the amount of pDNA was significantly higher in the case of positive core R8-MENDs, regardless of the absence or presence of GALA. However, gene expression efficiencies per nucleus-delivered pDNA were much higher in the case of the negative core R8-MEND, especially the R8-GALA-MEND suggesting that the substantial improvement in gene expression can be explained by an improved gene expression efficiency per pDNA in the presence of GALA. A comparative study between the developed R8-GALA-MEND and a similar system containing DOTAP, a commonly used cationic lipid, instead of R8 showed that gene expression of the R8-GALA-MEND was 29 times higher than that of the DOTAP-GALA-MEND and is more selective for the liver. Collectively, these results suggest that the combination of a negatively charged core system and GALA modification of the R8-MEND is useful system for efficiently delivering genes to the liver.
机译:我们以前曾报道过,在静脉内给药后,八精氨酸肽修饰的脂质体(R8-脂质体)在肝脏中大量积累,这取决于R8的密度。我们在此报告了用R8和GALA修饰的多功能信封型纳米设备的开发情况,该设备是用于肝脏基因传递的pH敏感融合肽(R8-GALA-MEND)。使用两个不同核心(带负电荷或带正电荷的pDNA /聚乙烯亚胺缩合颗粒)制备的R8-MEND封装pDNA无法在肝脏中产生高基因表达。仅在核心R8-MEND阴性的情况下,用GALA修饰才能显着提高基因表达,特别是在肝脏中。定量传递至肝细胞和细胞核的基因拷贝数表明,在阳性核心R8-MENDs的情况下,无论是否存在GALA,pDNA的量均显着较高。然而,在负核R8-MEND的情况下,每个核传递的pDNA的基因表达效率要高得多,尤其是R8-GALA-MEND,这表明基因表达的显着改善可以用每个pDNA的基因表达效率提高来解释。在GALA面前。对已开发的R8-GALA-MEND和包含DOTAP(一种常用的阳离子脂质)而不是R8的类似系统进行的比较研究表明,R8-GALA-MEND的基因表达比DOTAP-GALA-的基因表达高29倍。 MEND对肝脏更具选择性。总的来说,这些结果表明,带负电荷的核心系统和R8-MEND的GALA修饰的组合对于有效地将基因传递至肝脏是有用的系统。

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