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比较外泌体样囊泡与脂质体用于小 RNA 的功能性细胞递释。

Comparing exosome-like vesicles with liposomes for the functional cellular delivery of small RNAs.

机构信息

Laboratory of General Biochemistry and Physical Pharmacy, Faculty of Pharmaceutical Sciences, Ghent University, Ottergemsesteenweg 460, 9000 Ghent, Belgium.

Inflammation Research Center, VIB, Technologiepark 927, 9052 Ghent, Belgium; Department of Biomedical Molecular Biology, Ghent University, Technologiepark 927, 9052 Ghent, Belgium.

出版信息

J Control Release. 2016 Jun 28;232:51-61. doi: 10.1016/j.jconrel.2016.04.005. Epub 2016 Apr 9.

Abstract

Exosome-like vesicles (ELVs) play an important role in intercellular communication by acting as natural carriers for biomolecule transfer between cells. This unique feature rationalizes their exploitation as bio-inspired drug delivery systems. However, the therapeutic application of ELVs is hampered by the lack of efficient and reproducible drug loading methods, in particular for therapeutic macromolecules. To overcome this limitation, we present a generic method to attach siRNA to the surface of isolated ELVs by means of a cholesterol anchor. Despite a feasible uptake in both a dendritic and lung epithelial cell line, B16F10- and JAWSII-derived ELVs were unable to functionally deliver the associated small RNAs, neither exogenous cholesterol-conjugated siRNA nor endogenous miRNA derived from the melanoma producer cell. The latter results were confirmed both for purified ELVs and ELVs delivered via a transwell co-culture set-up. In contrast, simple anionic fusogenic liposomes were able to induce a marked siRNA-mediated gene knockdown under equal experimental conditions, both indicating successful cytosolic delivery of surface-bound cholesterol-conjugated siRNA and further underscoring the incapacity of the here evaluated ELVs to guide cytosolic delivery of small RNAs. In conclusion, we demonstrate that a more in-depth understanding of the biomolecular delivery mechanism and specificity is required before ELVs can be envisioned as a generic siRNA carrier.

摘要

外泌体样囊泡(ELVs)通过充当细胞间生物分子转移的天然载体,在细胞间通讯中发挥着重要作用。这一独特特性使其成为生物启发式药物传递系统的理想选择。然而,由于缺乏高效且可重复的药物加载方法,特别是对于治疗性大分子,ELVs 的治疗应用受到了阻碍。为了克服这一限制,我们提出了一种通过胆固醇锚将 siRNA 附着到分离的 ELVs 表面的通用方法。尽管在树突状细胞和肺上皮细胞系(B16F10 和 JAWSII)中都可以进行可行的摄取,但源自黑素瘤产生细胞的 B16F10 和 JAWSII 衍生的 ELVs 既不能有效地传递相关的小 RNA,也不能传递外源性胆固醇缀合的 siRNA 或内源性 miRNA。这一结果在纯化的 ELVs 和通过 Transwell 共培养设置递送的 ELVs 中均得到了证实。相比之下,简单的阴离子融合脂质体在同等实验条件下能够诱导明显的 siRNA 介导的基因敲低,这均表明表面结合的胆固醇缀合的 siRNA 成功地递送至细胞质中,并进一步强调了这里评估的 ELVs 引导小 RNA 进入细胞质的能力不足。总之,我们证明,在将 ELVs 设想为通用 siRNA 载体之前,需要更深入地了解生物分子传递机制和特异性。

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