Uchida Eriko, Mizuguchi Hiroyuki, Ishii-Watabe Akiko, Hayakawa Takao
Division of Biological Chemistry and Biologicals, National Institute of Health Sciences, Tokyo, Japan.
Biol Pharm Bull. 2002 Jul;25(7):891-7. doi: 10.1248/bpb.25.891.
Non-viral gene transfer into a wide range of human cells was examined in order to clarify the factors that affect the efficiency and safety of non-viral vectors and to optimize the conditions so that high efficiency and low toxicity could be achieved. Six non-viral vectors (Lipofectin, LipofectAMINE PLUS, SuperFect, Effectene, DMRIE-C and DOTAP) were used to transfect a mammalian expression plasmid pCMVbeta into 16 types of human primary cells and cultured cell lines. Transfection efficiency was quantified using a galactosidase assay. Cytotoxic effects were measured by lactate dehydrogenase (LDH) assay and WST-8 assay. In serum-free conditions, LipofectAMINE PLUS, Effectene and SuperFect, on average, transfected DNA more successfully than Lipofectin, DMRIE-C, and DOTAP, although the levels of gene expression with these vectors varied remarkably in different cells. The most effective vector also differed depending on the cell type. Serum was found to inhibit gene transfer and reduce the cytotoxicity of all of these vectors except Effectene. The efficiency and toxicity of the non-viral vectors used depended on the type of vector, the DNA/vector ratio, the type of cell, and the presence of serum. These results provided useful information for the optimization of transfer conditions of these non-viral vectors.
为了阐明影响非病毒载体效率和安全性的因素,并优化条件以实现高效和低毒,研究了将非病毒基因导入多种人类细胞的情况。使用六种非病毒载体(Lipofectin、LipofectAMINE PLUS、SuperFect、Effectene、DMRIE-C和DOTAP)将哺乳动物表达质粒pCMVbeta转染到16种人类原代细胞和培养细胞系中。使用半乳糖苷酶测定法定量转染效率。通过乳酸脱氢酶(LDH)测定法和WST-8测定法测量细胞毒性作用。在无血清条件下,平均而言,LipofectAMINE PLUS、Effectene和SuperFect比Lipofectin、DMRIE-C和DOTAP更成功地转染DNA,尽管这些载体的基因表达水平在不同细胞中差异显著。最有效的载体也因细胞类型而异。发现血清会抑制基因转移并降低除Effectene之外所有这些载体的细胞毒性。所使用的非病毒载体的效率和毒性取决于载体类型、DNA/载体比例、细胞类型以及血清的存在。这些结果为优化这些非病毒载体的转染条件提供了有用信息。