An artificial virus-like nano carrier system: enhanced endosomal escape of nanoparticles via synergistic action of pH-sensitive fusogenic peptide derivatives

被引:0
作者
Kentaro Sasaki
Kentaro Kogure
Shinji Chaki
Yoshio Nakamura
Rumiko Moriguchi
Hirofumi Hamada
Radostin Danev
Kuniaki Nagayama
Shiroh Futaki
Hideyoshi Harashima
机构
[1] Hokkaido University,Faculty of Pharmaceutical Sciences
[2] Japan Science and Technology Agency (JST),CREST
[3] Kyoto Pharmaceutical University,Department of Molecular Medicine
[4] Sapporo Medical University,Institute for Chemical Research
[5] Okazaki Institute for Integrative Bioscience,PRESTO
[6] Kyoto University,Laboratory for Molecular Design of Pharmaceutics, Faculty of Pharmaceutical Sciences
[7] Japan Science and Technology Agency (JST),undefined
[8] Hokkaido University,undefined
来源
Analytical and Bioanalytical Chemistry | 2008年 / 391卷
关键词
Artificial virus; Multifunctional envelope-type nanodevice; Polyethyleneglycol; Transferrin; pH-sensitive fusogenic peptide GALA; Synergistic action;
D O I
暂无
中图分类号
学科分类号
摘要
We previously reported that transferrin (Tf)-modified liposomes (Tf-L) additionally modified with a cholesterylated pH-sensitive fusogenic peptide (Chol-GALA) can release an encapsulated aqueous phase marker to cytosol via endosomal membrane fusion. However, further obstacles need to be overcome to bring the Tf-L to the level of a viral-like gene delivery system. In this study, we developed a novel packaging method to encapsulate condensed plasmid DNA into PEgylated Tf-L (Tf-PEG-L) to form a core–shell-type nanoparticle. The most difficult challenge was to provide a mechanism of escape for the condensed core from endosome to cytosol in the presence of polyethylene glycol (PEG). We hypothesized that a membrane-introduced Chol-GALA and a PEgylated GALA would interact synergistically to induce membrane fusion between liposome and endosome. By simultaneously incorporating Chol-GALA into the membrane of Tf-PEG-L and GALA at tips of PEG chains, a condensed core was released into cytosol, and transfection acitivty increased 100-fold. We concluded that topological control was responsible for the synergistic effect of GALA derivatives introduced on Tf-PEG-L.
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页码:2717 / 2727
页数:10
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