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聚合物性质对壳聚糖/小干扰RNA纳米颗粒制剂及基因沉默的影响。

The influence of polymeric properties on chitosan/siRNA nanoparticle formulation and gene silencing.

作者信息

Liu Xiudong, Howard Kenneth A, Dong Mingdong, Andersen Morten Ø, Rahbek Ulrik L, Johnsen Mads G, Hansen Ole C, Besenbacher Flemming, Kjems Jørgen

机构信息

Interdisciplinary Nanoscience Center, University of Aarhus, DK-8000, Aarhus C, Denmark.

出版信息

Biomaterials. 2007 Feb;28(6):1280-8. doi: 10.1016/j.biomaterials.2006.11.004.

Abstract

We have previously introduced the use of the biomaterial chitosan to form chitosan/siRNA nanoparticles for gene silencing protocols. This present study shows that the physicochemical properties (size, zeta potential, morphology and complex stability) and in vitro gene silencing of chitosan/siRNA nanoparticles are strongly dependent on chitosan molecular weight (Mw) and degree of deacetylation (DD). High Mw and DD chitosan resulted in the formation of discrete stable nanoparticles approximately 200 nm in size. Chitosan/siRNA formulations (N:P 50) prepared with low Mw (approximately 10 kDa) showed almost no knockdown of endogenous enhanced green fluorescent protein (EGFP) in H1299 human lung carcinoma cells, whereas those prepared from higher Mw (64.8-170 kDa) and DD (approximately 80%) showed greater gene silencing ranging between 45% and 65%. The highest gene silencing efficiency (80%) was achieved using chitosan/siRNA nanoparticles at N:P 150 using higher Mw (114 and 170 kDa) and DD (84%) that correlated with formation of stable nanoparticles of approximately 200 nm. In conclusion, this work confirms the application of chitosan as a non-viral carrier for siRNA and the importance of polymeric properties for the optimisation of gene silencing using chitosan/siRNA nanoparticles.

摘要

我们之前已介绍过使用生物材料壳聚糖来形成壳聚糖/小干扰RNA(siRNA)纳米颗粒用于基因沉默方案。本研究表明,壳聚糖/ siRNA纳米颗粒的物理化学性质(尺寸、zeta电位、形态和复合物稳定性)以及体外基因沉默强烈依赖于壳聚糖的分子量(Mw)和脱乙酰度(DD)。高Mw和DD的壳聚糖导致形成尺寸约为200 nm的离散稳定纳米颗粒。用低Mw(约10 kDa)制备的壳聚糖/ siRNA制剂(N:P 50)在H1299人肺癌细胞中几乎没有敲低内源性增强型绿色荧光蛋白(EGFP),而用较高Mw(64.8 - 170 kDa)和DD(约80%)制备的制剂显示出更高的基因沉默效果,范围在45%至65%之间。使用N:P 150的壳聚糖/ siRNA纳米颗粒,采用较高Mw(114和170 kDa)和DD(84%),实现了最高的基因沉默效率(80%),这与形成约200 nm的稳定纳米颗粒相关。总之,这项工作证实了壳聚糖作为siRNA的非病毒载体的应用以及聚合物性质对于优化壳聚糖/ siRNA纳米颗粒基因沉默的重要性。

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