Xun Miao-Miao, Huang Zheng, Xiao Ya-Ping, Liu Yan-Hong, Zhang Ji, Zhang Ju-Hui, Yu Xiao-Qi
National Demonstration Center for Experimental Chemical Engineering Comprehensive Education, School of Chemical Engineering and Technology, North University of China, Taiyuan 030000, China.
Key Laboratory of Green Chemistry and Technology (Ministry of Education), College of Chemistry, Sichuan University, Chengdu 610064, China.
Polymers (Basel). 2018 Sep 25;10(10):1060. doi: 10.3390/polym10101060.
Rapid enzymatic degradation and fragmentation during DNA administration can result in limited gene expression, and consequently, poor efficacy. It is necessary to use novel vectors for DNA delivery. Herein, we aimed to design useful carriers for enhancing transfection efficiency (TE). These lipopolymers were prepared through Michael addition reactions from low-molecular-weight (LMW) polyethyleneimine (PEI) and linkers with three kinds of steroids. Agarose gel electrophoresis assay results displayed that the three lipopolymers could condense plasmid DNA well, and the formed polyplexes had appropriate sizes around 200⁻300 nm, and zeta potentials of about +25⁻40 mV. The results of in vitro experiments using HeLa, HEK293, and MCF-7 cells showed that these lipopolymers present higher TE than 25-kDa PEI, both in the absence and presence of 10% serum. Flow cytometry and confocal microscopy studies also demonstrated that these lipopolymer/DNA complexes present higher cellular uptake and intracellular distribution. The measurement of critical micelle concentration (CMC) revealed that these lipopolymers could form micelles, which are suited for drug delivery. All results suggest that the three materials may serve as hopeful candidates for gene and drug delivery in future in vivo applications.
在DNA给药过程中,快速的酶促降解和片段化会导致基因表达受限,进而疗效不佳。因此,有必要使用新型载体进行DNA递送。在此,我们旨在设计出能提高转染效率(TE)的有效载体。这些脂聚合物是通过低分子量(LMW)聚乙烯亚胺(PEI)与连接体以及三种类固醇通过迈克尔加成反应制备而成。琼脂糖凝胶电泳分析结果表明,这三种脂聚合物能够很好地凝聚质粒DNA,形成的多聚体大小合适,约为200⁻300 nm,zeta电位约为+25⁻40 mV。使用HeLa、HEK293和MCF-7细胞进行的体外实验结果表明,无论有无10%血清,这些脂聚合物的转染效率均高于25 kDa的PEI。流式细胞术和共聚焦显微镜研究还表明,这些脂聚合物/DNA复合物具有更高的细胞摄取率和细胞内分布。临界胶束浓度(CMC)的测定表明,这些脂聚合物能够形成胶束,适合用于药物递送。所有结果表明,这三种材料有望成为未来体内基因和药物递送的候选材料。