Faculty of Pharmaceutical Sciences, Hokkaido University, Kita-12, Nishi-6, Kita-ku, Sapporo, Hokkaido 060-0812, Japan.
J Control Release. 2011 Jan 5;149(1):58-64. doi: 10.1016/j.jconrel.2010.08.023. Epub 2010 Sep 9.
We previously developed octaarginine (R8)-modified lipid envelope-type nanoparticles for siRNA delivery (R8-MEND). Herein, we report on their ex vivo siRNA delivery to primary mouse bone marrow-derived dendritic cells (BMDCs) for potential use as a cancer vaccine. Quantitative imaging analysis of the intracellular trafficking of siRNA revealed that the dissociation process, as well as the rate of endosomal escape limits the siRNA efficiency of the prototype R8-MEND, prepared by the hydration method (R8-MEND(hydo)). Successful endosomal escape was achieved by using a pH-dependent fusogenic peptide (GALA) modified on a lipid mixture that was optimized for endosomal fusion. Furthermore, a modified protocol for the preparation of nanoparticles, mixing the siRNA/STR-R8 complex and small unilamellar vesicles (R8/GALA-MEND(SUV)), results in a more homogenous, smaller particle size, and results in a more efficient intracellular dissociation. Gene knockdown of the suppressor of cytokine signaling 1 (SOCS1), a negative-feedback regulator of the immune response in BMDCs resulted in an enhanced phosphorylation of STAT1, and the production of proinflammatory cytokines. Moreover, SOCS1-silenced BMDCs were more potent in suppressing tumor growth. Collectively, these results show that siRNA loaded in R8/GALA-MEND(SUV) efficiently suppresses endogenous gene expression and consequently enhances dendritic cell-based vaccine potency in vivo.
我们之前开发了八聚精氨酸(R8)修饰的脂质包膜型纳米颗粒用于 siRNA 递药(R8-MEND)。在此,我们报告了它们在体外向原代小鼠骨髓来源树突状细胞(BMDC)递送 siRNA 的情况,以期将其用作癌症疫苗。siRNA 细胞内转运的定量成像分析表明,原型 R8-MEND(hydo)的解离过程以及内体逃逸率限制了其 siRNA 效率,hydo 是通过水合作用制备的。通过在优化用于内体融合的脂质混合物上修饰一种 pH 依赖性融合肽(GALA),成功实现了内体逃逸。此外,通过改良的制备纳米颗粒的方案,将 siRNA/STR-R8 复合物与小单层囊泡(R8/GALA-MEND(SUV))混合,得到了更均一、更小的粒径,并导致更有效的细胞内解离。抑制细胞因子信号转导 1(SOCS1)的基因沉默,SOCS1 是 BMDC 中免疫反应的负反馈调节剂,导致 STAT1 的磷酸化和促炎细胞因子的产生增强。此外,沉默 SOCS1 的 BMDC 在抑制肿瘤生长方面更有效。总之,这些结果表明,装载在 R8/GALA-MEND(SUV)中的 siRNA 可有效抑制内源性基因表达,并因此增强体内基于树突状细胞的疫苗效力。