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基于链霉亲和素的纳米复合物用于 siRNA 递送的研究进展。

Development of streptavidin-based nanocomplex for siRNA delivery.

机构信息

Division of Pharmaceutical Sciences, School of Pharmacy, University of Missouri-Kansas City , Kansas City, Missouri 64108, United States.

出版信息

Mol Pharm. 2013 Dec 2;10(12):4534-45. doi: 10.1021/mp400355q. Epub 2013 Oct 25.

Abstract

In our previous study, we have identified a PCBP2 siRNA that exhibits antifibrotic activity in rat hepatic stellate cells (HSCs) by inhibition of αCP2, a protein responsible for stabilization of the collagen α1 (I) mRNA in alcoholic liver fibrosis. This study aims to develop a streptavidin-based nanocomplex that can efficiently deliver the PCBP2 siRNA to HSCs. Biotin-siRNA and biotin-cholesterol were mixed with streptavidin to form the streptavidin-biotin complex, which was further condensed electrostatically with positively charged protamine to form the final multicomponent siRNA nanocomplex in the size range of 150-250 nm. The siRNA nanocomplex does not induce cytotoxicity in rat HSCs as compared to commercially available transfection agents. The cellular uptake efficiency of the siRNA nanocomplex is higher in rat HSCs than other cell lines, such as Caco-2 and PC-3, indicating that receptor-mediated endocytosis mainly contributes to the cellular uptake of the siRNA nanocomplex. The siRNA nanocomplex exhibits more than 85% silencing effect on the PCBP2 mRNA in HSCs. Stability study indicates that the nanocomplex can efficiently protect siRNA from degradation in the serum. The streptavidin-based multicomponent siRNA nanocomplex provides a promising strategy to deliver the PCBP2 siRNA to HSCs. Moreover, the nanocomplex can be used as a platform for other diseases by changing the siRNA sequence and targeting ligand.

摘要

在我们之前的研究中,我们通过抑制 αCP2 发现了一种具有抗纤维化活性的 PCBP2 siRNA,αCP2 是一种负责稳定酒精性肝纤维化胶原 α1 (I) mRNA 的蛋白质。本研究旨在开发一种基于链霉亲和素的纳米复合物,能够有效地将 PCBP2 siRNA 递送到 HSCs。生物素-siRNA 和生物素-胆固醇与链霉亲和素混合形成链霉亲和素-生物素复合物,该复合物进一步通过静电作用与带正电荷的鱼精蛋白缩合形成最终的多组分 siRNA 纳米复合物,其粒径范围为 150-250nm。与市售转染试剂相比,siRNA 纳米复合物在大鼠 HSCs 中不会诱导细胞毒性。siRNA 纳米复合物在大鼠 HSCs 中的细胞摄取效率高于其他细胞系,如 Caco-2 和 PC-3,表明受体介导的内吞作用主要促进了 siRNA 纳米复合物的细胞摄取。siRNA 纳米复合物在 HSCs 中对 PCBP2 mRNA 的抑制效率超过 85%。稳定性研究表明,该纳米复合物能够有效地保护 siRNA 免受血清中降解。基于链霉亲和素的多组分 siRNA 纳米复合物为将 PCBP2 siRNA 递送到 HSCs 提供了一种有前途的策略。此外,通过改变 siRNA 序列和靶向配体,该纳米复合物可以作为其他疾病的平台。

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