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外泌体模拟纳米囊泡介导的 RNAi 递呈 - 靶向癌症中 c-Myc 的意义。

RNAi delivery by exosome-mimetic nanovesicles - Implications for targeting c-Myc in cancer.

机构信息

Krefting Research Center, Department of Internal Medicine and Clinical Nutrition, University of Gothenburg, Gothenburg 405 30, Sweden.

Krefting Research Center, Department of Internal Medicine and Clinical Nutrition, University of Gothenburg, Gothenburg 405 30, Sweden; Department of Life Sciences, Pohang University of Science and Technology, Pohang 790-784, Republic of Korea.

出版信息

Biomaterials. 2016 Sep;102:231-8. doi: 10.1016/j.biomaterials.2016.06.024. Epub 2016 Jun 15.

Abstract

To develop RNA-based therapeutics, it is crucial to create delivery vectors that transport the RNA molecule into the cell cytoplasm. Naturally released exosomes vesicles (also called "Extracellular Vesicles") have been proposed as possible RNAi carriers, but their yield is relatively small in any cell culture system. We have previously generated exosome-mimetic nanovesicles (NV) by serial extrusions of cells through nano-sized filters, which results in 100-times higher yield of extracellular vesicles. We here test 1) whether NV can be loaded with siRNA exogenously and endogenously, 2) whether the siRNA-loaded NV are taken up by recipient cells, and 3) whether the siRNA can induce functional knock-down responses in recipient cells. A siRNA against GFP was first loaded into NV by electroporation, or a c-Myc shRNA was expressed inside of the cells. The NV were efficiently loaded with siRNA with both techniques, were taken up by recipient cells, which resulted in attenuation of target gene expression. In conclusion, our study suggests that exosome-mimetic nanovesicles can be a platform for RNAi delivery to cell cytoplasm.

摘要

为了开发基于 RNA 的治疗方法,创建将 RNA 分子递送到细胞质中的载体至关重要。天然释放的外泌体囊泡(也称为“细胞外囊泡”)已被提议作为可能的 RNAi 载体,但在任何细胞培养系统中外泌体的产量相对较小。我们之前通过将细胞连续挤压通过纳米级过滤器来产生类外泌体的纳米囊泡(NV),这导致细胞外囊泡的产量增加了 100 倍。在这里,我们测试了 1)NV 是否可以体外和体内装载 siRNA,2)负载 siRNA 的 NV 是否被受体细胞摄取,以及 3)siRNA 是否可以在受体细胞中诱导功能敲低反应。首先通过电穿孔将 GFP 靶向的 siRNA 装入 NV 中,或者在细胞内表达 c-Myc shRNA。这两种技术都能有效地将 siRNA 装入 NV 中,被受体细胞摄取,从而导致靶基因表达的衰减。总之,我们的研究表明,类外泌体纳米囊泡可以作为将 RNAi 递送到细胞质的平台。

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