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超临界二氧化碳技术制备可吸入干粉态小干扰 RNA 对小鼠肺部转移模型的基因沉默作用

Gene silencing in a mouse lung metastasis model by an inhalable dry small interfering RNA powder prepared using the supercritical carbon dioxide technique.

机构信息

Meijo University, Nagoya 468–8503, Japan.

出版信息

Biol Pharm Bull. 2013;36(7):1183-91. doi: 10.1248/bpb.b13-00167.

Abstract

In this study, a novel dry small interfering RNA (siRNA) powder for inhalation, containing chitosan and mannitol, was prepared using the supercritical carbon dioxide (CO2) technique. Although the siRNA/chitosan powder was difficult to disperse because of a long needle-like structure, it could be reduced to fragments of 10-20 µm by manual grinding, which allowed for administration into mice. Electrophoresis revealed that the supercritical CO2 technique and manual grinding didn't greatly affect the integrity of the siRNA. Furthermore, the siRNA was more stable in the lungs than in blood, suggesting the utility of pulmonary delivery. Biodistribution experiments using Cy5.5-labeled siRNA demonstrated that pulmonary administration of the powder achieved a prolonged exposure of the siRNA/chitosan complex on the lung epithelial surface at a higher concentration. For the evaluation of the in-vivo gene silencing effect of the siRNA/chitosan powder, mice bearing colon26/Luc cells were used. The powder significantly inhibited the increase in luminescence intensity in the lungs, but the siRNA/chitosan solution and a non-specific dry siRNA/chitosan powder didn't, indicating the effective and specific gene silencing against the tumor cells metastasized in the lungs of mice by the siRNA/chitosan powder. These results strongly indicate that inhalable dry siRNA powders have the possibility of effective pulmonary gene silencing and that the supercritical CO2 technique can be applied to the production.

摘要

在这项研究中,使用超临界二氧化碳(CO2)技术制备了一种新型的干燥小干扰 RNA(siRNA)粉末,该粉末含有壳聚糖和甘露醇。尽管由于其长针状结构,siRNA/壳聚糖粉末难以分散,但通过手动研磨可以将其减小至 10-20μm 的碎片,从而可以将其施用于小鼠。电泳表明,超临界 CO2 技术和手动研磨对 siRNA 的完整性没有太大影响。此外,siRNA 在肺部比在血液中更稳定,表明肺部给药具有实用性。使用 Cy5.5 标记的 siRNA 进行的生物分布实验表明,肺部施用该粉末可使 siRNA/壳聚糖复合物在肺上皮表面上以更高的浓度长时间暴露。为了评估 siRNA/壳聚糖粉末的体内基因沉默效果,使用携带结肠 26/Luc 细胞的小鼠进行了实验。该粉末可显著抑制肺部发光强度的增加,而 siRNA/壳聚糖溶液和非特异性干燥 siRNA/壳聚糖粉末则没有,这表明该粉末可有效且特异性地针对肺部转移的肿瘤细胞进行基因沉默。这些结果强烈表明,可吸入的干燥 siRNA 粉末具有有效进行肺部基因沉默的可能性,并且超临界 CO2 技术可应用于该粉末的生产。

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