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基于巯基化的 N,N,N-三甲基壳聚糖的 siRNA 多聚物的基因沉默活性。

Gene silencing activity of siRNA polyplexes based on thiolated N,N,N-trimethylated chitosan.

机构信息

Department of Pharmaceutics, Utrecht Institute for Pharmaceutical Sciences, Faculty of Science, Utrecht University, Sorbonnelaan 16, 3584 CA Utrecht, The Netherlands.

出版信息

Bioconjug Chem. 2010 Dec 15;21(12):2339-46. doi: 10.1021/bc1003789. Epub 2010 Nov 4.

Abstract

N,N,N-Trimethylated chitosan (TMC) is a biodegradable polymer emerging as a promising nonviral vector for nucleic acid and protein delivery. In the present study, we investigated whether the introduction of thiol groups in TMC enhances the extracellular stability of the complexes based on this polymer and promotes the intracellular release of siRNA. The gene silencing activity and the cellular cytotoxicity of polyplexes based on thiolated TMC were compared with those based on the nonthiolated counterpart and the regularly used lipidic transfection agent Lipofectamine. Incubation of H1299 human lung cancer cells expressing firefly luciferase with siRNA/thiolated TMC polyplexes resulted in 60-80% gene silencing activity, whereas complexes based on nonthiolated TMC showed less silencing (40%). The silencing activity of the complexes based on Lipofectamine 2000 was about 60-70%. Importantly, the TMC-SH polyplexes retained their silencing activity in the presence of hyaluronic acid, while nonthiolated TMC polyplexes hardly showed any silencing activity, demonstrating their stability against competing anionic macromolecules. Under the experimental conditions tested, the cytotoxicity of the thiolated and nonthiolated siRNA complexes was lower than those based on Lipofectamine. Given the good extracellular stability and good silencing activity, it is concluded that polyplexes based on TMC-SH are attractive systems for further in vivo evaluations.

摘要

N,N,N-三甲基壳聚糖(TMC)是一种可生物降解的聚合物,作为核酸和蛋白质传递的非病毒载体,具有广阔的应用前景。在本研究中,我们研究了在 TMC 中引入巯基是否可以提高基于该聚合物的复合物的细胞外稳定性,并促进 siRNA 的细胞内释放。比较了基于硫代 TMC 的聚阳离子与非硫代 TMC 以及常用的脂质体转染试剂 Lipofectamine 的基因沉默活性和细胞毒性。用表达萤火虫荧光素酶的 H1299 人肺癌细胞孵育 siRNA/硫代 TMC 复合物可产生 60-80%的基因沉默活性,而基于非硫代 TMC 的复合物的沉默活性较低(40%)。Lipofectamine 2000 复合物的沉默活性约为 60-70%。重要的是,TMC-SH 复合物在透明质酸存在下仍保持其沉默活性,而非硫代 TMC 复合物几乎没有显示任何沉默活性,表明其对竞争阴离子大分子具有稳定性。在测试的实验条件下,硫代和非硫代 siRNA 复合物的细胞毒性低于基于 Lipofectamine 的复合物。鉴于良好的细胞外稳定性和良好的沉默活性,可以得出结论,TMC-SH 基的聚合物是进一步体内评价的有吸引力的系统。

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