IBB-Institute for Biotechnology and Bioengineering, Centre for Biological and Chemical Engineering, Department of Bioengineering, Instituto Superior Técnico, Universidade Técnica de Lisboa, Lisboa, 1049-001, Portugal.
J Pharm Sci. 2013 Nov;102(11):3932-41. doi: 10.1002/jps.23709. Epub 2013 Aug 28.
This work investigates the impact of quality attributes (impurity content, plasmid charge, and compactness) of plasmid DNA isolated with different purification methodologies on the characteristics of lipoplexes prepared thereof (size, zeta potential, stability) and on their ability to transfect mammalian cells. A 3.7 kb plasmid with a green fluorescence protein (GFP) reporter gene, Lipofectamine®-based liposomes, and Chinese Hamster Ovary (CHO) cells were used as models. The plasmid was purified by hydrophobic interaction chromatography (HIC)/gel filtration, and with three commercial kits, which combine the use of chaotropic salts with silica membranes/glass fiber fleeces. The HIC-based protocol delivered a plasmid with the smallest hydrodynamic diameter (144 nm) and zeta potential (-46.5 mV), which is virtually free from impurities. When formulated with Lipofectamine®, this plasmid originated the smallest (146 nm), most charged (+13 mV), and most stable lipoplexes. In vitro transfection experiments further showed that these lipoplexes performed better in terms of plasmid uptake (∼500,000 vs. ∼100,000-200,000 copy number/cell), transfection efficiency (50% vs. 20%-40%), and GFP expression levels (twofold higher) when compared with lipoplexes prepared with plasmids isolated using commercial kits. Overall our observations highlight the potential impact that plasmid purification methodologies can have on the outcome of gene transfer experiments and trials.
本研究考察了不同纯化方法分离的质粒 DNA 的质量属性(杂质含量、质粒电荷和紧凑度)对其所制备的脂质体的特性(粒径、Zeta 电位、稳定性)以及转染哺乳动物细胞能力的影响。采用携带绿色荧光蛋白(GFP)报告基因的 3.7kb 质粒、基于 Lipofectamine®的脂质体和中国仓鼠卵巢(CHO)细胞作为模型。质粒通过疏水性相互作用色谱(HIC)/凝胶过滤和三种商业试剂盒进行纯化,这些试剂盒结合使用离液盐和硅胶膜/玻璃纤维绒毛。基于 HIC 的方案提供了一种具有最小水动力直径(144nm)和 Zeta 电位(-46.5mV)的质粒,几乎不含杂质。当与 Lipofectamine®一起配制时,该质粒产生了最小的(146nm)、带正电荷最多的(+13mV)和最稳定的脂质体。体外转染实验进一步表明,与使用商业试剂盒分离的质粒制备的脂质体相比,这些脂质体在质粒摄取(约 500,000 与约 100,000-200,000 拷贝数/细胞)、转染效率(50%与 20%-40%)和 GFP 表达水平(高两倍)方面表现更好。总的来说,我们的观察结果强调了质粒纯化方法对基因转移实验和试验结果的潜在影响。