Decaarginine-PEG-artificial lipid/DNA complex for gene delivery: Nanostructure and transfection efficiency

被引:19
作者
Furuhata, Masahiko [1 ]
Danev, Radostin [2 ]
Nagayama, Kuniaki [2 ]
Yamada, Yoshifumi [3 ]
Kawakami, Hiroko [4 ]
Toma, Kazunori [4 ]
Hattori, Yoshiyuki [1 ]
Maitani, Yoshie [1 ]
机构
[1] Hoshi Univ, Inst Med Chem, Shinagawa Ku, Tokyo 1428501, Japan
[2] Natl Inst Nat Sci, Okazaki, Aichi 4448787, Japan
[3] Olympus Corp, Life Sci Grp, Hachioji, Tokyo 1928512, Japan
[4] Noguchi Inst, Itabashi Ku, Tokyo 1730003, Japan
关键词
decaarginine; cell-penetrating peptide; macropinocyotosis; gene delivery; supramolecular structure;
D O I
10.1166/jnn.2008.170
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Oligoarginine conjugates are highly efficient vectors for the delivery of plasmid DNA into cells. Decaarginine-conjugated lipid (Arg10-PEG-lipid) was synthesized and the effects of Arg10-PEG-lipid concentration at a fixed DNA concentration on transfection efficiency and the structure of the complexes were studied below and above critical micelle concentration (CMC), and at the lipid nitrogen/DNA phosphate (N/P) ratio corresponding to transfection, respectively. Arg10-PEG-lipid at the concentration below CMC showed stronger interaction with DNA by fluorescence intensity distribution analysis, and significantly higher luciferase and green fluorescent protein expression than that above CMC. A phase-contrast cryo-transmission electron microscope (cryo-TEM) experiment showed that the morphology of the complexes depended on the N/P ratio. At a low N/P ratio corresponding to that in transfection at a lipid concentration below CMC, a net-like structure developed in which plasmid DNA was involved. A further increase in the N/P ratio, a large fibrous nanostructure of complexes, was also observed. Without DNA, these structures were not obtained. The cellular uptake mechanism of complexes using flow cytometry with inhibitors suggested that complexes with two different morphologies showed similar cellular uptake and uptake mechanism, macropinocytosis. Differences in transfection efficiency of the complexes may be explained by a large fibrous nanostructure inhibiting the cellular internalization of complexes or the release of DNA from macropinosomes into cytoplasm. Arg10-PEG-lipid/DNA complexes formed a favorable nanostructure for gene delivery, depending on the N/P ratio in water.
引用
收藏
页码:2308 / 2315
页数:8
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