Literature DB >> 15451456

Enhanced hepatocyte-selective in vivo gene expression by stabilized galactosylated liposome/plasmid DNA complex using sodium chloride for complex formation.

Shintaro Fumoto1, Shigeru Kawakami, Yoshitaka Ito, Kosuke Shigeta, Fumiyoshi Yamashita, Mitsuru Hashida.   

Abstract

In this study, we demonstrated that the presence of an essential amount of sodium chloride (NaCl) during the formation of cationic liposome/plasmid DNA complexes (lipoplexes) stabilizes the lipoplexes according to the surface charge regulation (SCR) theory. Fluorescence resonance energy transfer analysis revealed that cationic liposomes in an SCR lipoplex (5 and 10 mM NaCl solution in lipoplex) increased fusion. Also, aggregation of SCR lipoplexes was significantly delayed after exposure to saline (150 mM NaCl) as a model of physiological conditions. After intraportal administration, the hepatic transfection activity of galactosylated SCR lipoplexes (5 and 10 mM NaCl solution in lipoplex) was approximately 10- to 20-fold higher than that of galactosylated conventional lipoplexes in mice. The transfection activity in hepatocytes of galactosylated SCR lipoplexes was significantly higher than that of conventional lipoplexes, and preexposure to competitive asialoglycoprotein-receptor blocker significantly reduced the hepatic gene expression, suggesting that hepatocytes are responsible for high hepatic transgene expression of the galactosylated SCR lipoplexes. Pharmacokinetic studies both in situ and in vivo demonstrated a higher tissue binding affinity and a greater expanse of intrahepatic distribution by galactosylated SCR lipoplexes. Moreover, enhanced transfection activity of galactosylated SCR lipoplexes was observed in HepG2 cells, and investigation of confocal microscopic images showed that the release of plasmid DNA in the cell was markedly accelerated. These characteristics partly explain the mechanism of enhanced in vivo transfection efficacy by galactosylated SCR lipoplexes. Hence, information in this study will be valuable for the future use, design, and development of ligand-modified lipoplexes for in vivo applications.

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Year:  2004        PMID: 15451456     DOI: 10.1016/j.ymthe.2004.07.015

Source DB:  PubMed          Journal:  Mol Ther        ISSN: 1525-0016            Impact factor:   11.454


  8 in total

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Review 4.  Nano-vectors for efficient liver specific gene transfer.

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5.  Live Cell Characterization of DNA Aggregation Delivered through Lipofection.

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6.  Local targeted therapy of liver metastasis from colon cancer by galactosylated liposome encapsulated with doxorubicin.

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7.  Efficient gene transfection to the brain with ultrasound irradiation in mice using stabilized bubble lipopolyplexes prepared by the surface charge regulation method.

Authors:  Koki Ogawa; Yuki Fuchigami; Masayori Hagimori; Shintaro Fumoto; Yusuke Miura; Shigeru Kawakami
Journal:  Int J Nanomedicine       Date:  2018-04-16

8.  Interaction of Lipoplex with Albumin Enhances Gene Expression in Hepatitis Mice.

Authors:  Naoki Yoshikawa; Shintaro Fumoto; Keiko Yoshikawa; Die Hu; Kazuya Okami; Riku Kato; Mikiro Nakashima; Hirotaka Miyamoto; Koyo Nishida
Journal:  Pharmaceutics       Date:  2020-04-10       Impact factor: 6.321

  8 in total

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