Department of Applied Chemistry, Graduate School of Engineering, Osaka Prefecture University, 1-1 Gakuen-cho, Naka-ku, Sakai, Osaka 599-8531, Japan.
J Control Release. 2012 Jun 28;160(3):552-60. doi: 10.1016/j.jconrel.2012.04.002. Epub 2012 Apr 10.
In an earlier study, we developed a new type of gene vector using poly(amidoamine) (PAMAM) dendron-bearing lipids and reported that their transfection activity was affected by their structures, such as dendron generation and alkyl chain length. In this study, for improvement of their performance as gene vectors, we examined the effect of unsaturated chains of the dendron-bearing lipids using DL-G1-2C(18), which consists of PAMAM G1 dendron moiety and two octadecyl chains, and achieved the most efficient transfection activity among the dendron-bearing lipids having saturated alkyl chains, and DL-G1-2C(18)-U2, which consists of the same dendron-moiety and two octadecenyl chains. DL-G1-2C(18)-U2 showed a higher ability to form lipoplexes with plasmid DNA than DL-G1-2C(18). The DL-G1-2C(18)-U2 lipoplexes exhibited much smaller particle sizes than the DL-G1-2C(18). In addition, the DL-G1-2C(18)-U2 lipoplexes exhibited more efficient transfection of HeLa cells than DL-G1-2C(18) did. Results demonstrate the importance of unsaturated chains for the production of the dendron-bearing lipids having excellent gene transfection performance. Without the help of additional fusogenic lipids such as dioleoylphosphatidylethanolamine, DL-G1-2C(18)-U2 lipoplexes achieved the highly efficient transfection of the cells without marked cellular toxicity, in the presence of serum. Therefore, DL-G1-2C(18)-U2 might be promising as a potent gene vector.
在之前的研究中,我们使用聚酰胺-胺(PAMAM)树状大分子负载脂质开发了一种新型基因载体,并报道其转染活性受结构影响,如树突生成和烷基链长度。在本研究中,为了提高其作为基因载体的性能,我们使用 DL-G1-2C(18) 研究了树突状脂质不饱和链的影响,DL-G1-2C(18) 由 PAMAM G1 树突部分和两条十八烷基链组成,在具有饱和烷基链的树突状脂质中表现出最高的转染活性,并且 DL-G1-2C(18)-U2 由相同的树突部分和两条十八烯基链组成。DL-G1-2C(18)-U2 与质粒 DNA 形成的脂质体比 DL-G1-2C(18) 具有更高的能力。DL-G1-2C(18)-U2 脂质体的粒径比 DL-G1-2C(18) 小得多。此外,DL-G1-2C(18)-U2 脂质体对 HeLa 细胞的转染效率比 DL-G1-2C(18) 更高。结果表明不饱和链对于产生具有优异基因转染性能的树突状脂质的重要性。在没有辅助融合脂质如二油酰基磷脂酰乙醇胺的情况下,DL-G1-2C(18)-U2 脂质体在存在血清的情况下能够高效转染细胞,而没有明显的细胞毒性。因此,DL-G1-2C(18)-U2 可能是一种很有前途的基因载体。