Lavertu Marc, Méthot Stephane, Tran-Khanh Nicolas, Buschmann Michael D
Department of Chemical Engineering, Institute of Biomedical Engineering, Ecole Polytechnique of Montreal, P.O. Box 6079, Station Centre-Ville, Montreal, Que., Canada H3C 3A7.
Biomaterials. 2006 Sep;27(27):4815-24. doi: 10.1016/j.biomaterials.2006.04.029. Epub 2006 May 24.
Chitosan is a biodegradable natural polysaccharide that has shown potential for gene delivery, although the ideal molecular weight (MW) and degree of deacetylation (DDA) for this application have not been elucidated. To examine the influence of these parameters on gene transfer, we produced chitosans with different DDAs (98%, 92%, 80% and 72%) and depolymerized them with nitrous acid to obtain different MWs (150, 80, 40 and 10 kDa). We produced 64 formulations of chitosan/pDNA complexes (16 chitosans, 2 amine-to-phosphate (N:P) ratios of 5:1 and 10:1 and 2 transfection media pH of 6.5 and 7.1), characterized them for size and surface charge, and tested them for gene transfection in HEK 293 cells in vitro. Several formulations produced high levels of transgene expression while two conditions, 92-10-5 and 80-10-10 [DDA-MW-N:P ratio] at pH 6.5, showed equivalence to our best positive control. The results also revealed an important coupling between DDA and MW of chitosan in determining transgene expression. Maximum expression was obtained with a certain combination of DDA and MW that depended on N:P ratio and the pH, but similar expression levels could be achieved by simultaneously lowering MW and increasing DDA or lowering DDA and increasing MW, suggesting a predominant role of particle stability, through co-operative electrostatic binding, in determining transfection efficiency.
壳聚糖是一种可生物降解的天然多糖,已显示出基因递送的潜力,尽管尚未阐明该应用的理想分子量(MW)和脱乙酰度(DDA)。为了研究这些参数对基因转移的影响,我们制备了具有不同DDA(98%、92%、80%和72%)的壳聚糖,并用亚硝酸使其解聚以获得不同的MW(150、80、40和10 kDa)。我们制备了64种壳聚糖/pDNA复合物制剂(16种壳聚糖、2种胺与磷酸(N:P)比为5:1和10:1以及2种转染培养基pH值为6.5和7.1),对其大小和表面电荷进行了表征,并在体外HEK 293细胞中测试了它们的基因转染能力。几种制剂产生了高水平的转基因表达,而在pH 6.5的两种条件下,即92-10-5和80-10-10 [DDA-MW-N:P比],显示出与我们最佳阳性对照相当的效果。结果还揭示了壳聚糖的DDA和MW在决定转基因表达方面的重要耦合作用。在特定的DDA和MW组合下可获得最大表达,这取决于N:P比和pH值,但通过同时降低MW并增加DDA或降低DDA并增加MW可实现相似的表达水平,这表明通过协同静电结合,颗粒稳定性在决定转染效率方面起主要作用。