Zhang Lei, Bellis Susan L, Fan Yiwen, Wu Yunkun
State Key Laboratory of Structural Chemistry, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences, Fuzhou, People's Republic of China.
Cell, Developmental and Integrative Biology, University of Alabama at Birmingham, Birmingham, AL, USA.
Int J Nanomedicine. 2015 Apr 13;10:2871-84. doi: 10.2147/IJN.S77002. eCollection 2015.
Transgene transfection techniques using cationic polymers such as polyethylenimines (PEIs) and PEI derivatives as gene vectors have shown efficacy, although they also have shortcomings. PEIs have decent DNA-binding capability and good cell internalization performance, but they cannot deliver gene payloads very efficiently to cell nuclei. In this study, three hyperbranched polyglycerol-polyethylenimine (PG6-PEI) polymers conjugated with myo-inositol (INO) molecules were developed. The three resulting PG6-PEI-INO polymers have an increased number of INO ligands per molecule. PG6-PEI-INO 1 had only 14 carboxymethyl INO (CMINO) units per molecule. PG6-PEI-INO 2 had approximately 130 CMINO units per molecule. PG6-PEI-INO 3 had as high as 415 CMINO units approximately. Mixing PG6-PEI-INO polymers with DNA produced compact nanocomposites. We then performed localization studies using fluorescent microscopy. As the number of conjugated inositol ligands increased in PG6-PEI-INO polymers, there was a corresponding increase in accumulation of the polymers within 293T cell nuclei. Transfection performed with spherical 293T cells yielded 82% of EGFP-positive cells when using PG6-PEI-INO 3 as the vehicle. Studies further revealed that extracellular adenosine triphosphate (eATP) can inhibit the transgene efficiency of PG6-PEI-INO polymers, as compared with PEI and PG6-PEI that were not conjugated with inositol. Our work unveiled the possibility of using inositol as an effective ligand for transgene expression.
使用阳离子聚合物(如聚乙烯亚胺(PEIs)和PEI衍生物)作为基因载体的转基因转染技术已显示出效果,尽管它们也有缺点。PEIs具有良好的DNA结合能力和细胞内化性能,但它们不能非常有效地将基因载荷传递到细胞核。在本研究中,开发了三种与肌醇(INO)分子共轭的超支化聚甘油-聚乙烯亚胺(PG6-PEI)聚合物。得到的三种PG6-PEI-INO聚合物每分子的INO配体数量增加。PG6-PEI-INO 1每分子仅具有14个羧甲基肌醇(CMINO)单元。PG6-PEI-INO 2每分子约有130个CMINO单元。PG6-PEI-INO 3每分子约有高达415个CMINO单元。将PG6-PEI-INO聚合物与DNA混合产生了致密的纳米复合材料。然后我们使用荧光显微镜进行了定位研究。随着PG6-PEI-INO聚合物中共轭肌醇配体数量的增加,聚合物在293T细胞核内的积累相应增加。当使用PG6-PEI-INO 3作为载体时,对球形293T细胞进行转染产生了82%的EGFP阳性细胞。研究进一步表明,与未与肌醇共轭的PEI和PG6-PEI相比,细胞外三磷酸腺苷(eATP)可抑制PG6-PEI-INO聚合物的转基因效率。我们的工作揭示了使用肌醇作为转基因表达有效配体的可能性。