Insights into the mechanism of magnetofection using PEI-based magnetofectins for gene transfer

被引:246
作者
Huth, S
Lausier, J
Gersting, SW
Rudolph, C
Plank, C
Welsch, U
Rosenecker, J
机构
[1] Univ Munich, Dept Pediat, Div Mol Pulm, D-80337 Munich, Germany
[2] Tech Univ Munich, Inst Expt Oncol, D-81675 Munich, Germany
[3] Univ Munich, Dept Anat 2 Chair, D-80336 Munich, Germany
关键词
caveolae; cellular trafficking; endocytosis; gene delivery; magnetic drug targeting; PEI;
D O I
10.1002/jgm.577
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Background Gene delivery by the use of magnetic forces, so-called magnetofection, has been shown to enhance transfection efficiency of viral and non-viral systems up to several-hundred-fold. For this purpose gene carriers, such as polyethylenimine (PEI), are associated with superparamagnetic nanoparticles and complexed with plasmid DNA. Gene delivery is targeted by the application of a magnetic field. Methods To investigate the underlying mechanism, we studied the impact of the applied magnetic field on the transfection process of PEI-coated superparamagnetic iron oxide gene vectors (magnetofectins) using various I cell lines. In particular, we addressed the question whether accelerated sedimentation of magnetofectins is the driving force or if the magnetic field itself directly influences the endocytic processing of the magnetofectins. The cellular uptake mechanism of magnetofectins was studied by electron microscopy and transfection experiments in the presence of various inhibitors that operate at different steps of endocytosis. Results In this study we could show that cellular uptake of magnetofectins proceeds obviously by endocytosis. Cellular uptake of magnetofectins behaves almost analogously as compared with PEI polyplexes. Besides unspecific endocytosis, apparently clathrin-dependent as well as caveolae-mediated endocytic uptake is involved. Conclusions The magnetic field itself does not alter the uptake mechanism of magnetofectins. Obviously, the magnetic forces lead to an accelerated sedimentation of magnetofectins on the cell surface and do not directly affect the endocytic uptake mechanism. So further improvement of magnetic field application could lead to efficient targeting of gene expression into the desired organ and tissue in vivo. Copyright (C) 2004 John Wiley Sons, Ltd.
引用
收藏
页码:923 / 936
页数:14
相关论文
共 35 条
[1]   Intracellular route and transcriptional competence of polyethylenimine-DNA complexes [J].
Bieber, T ;
Meissner, W ;
Kostin, S ;
Niemann, A ;
Elsasser, HP .
JOURNAL OF CONTROLLED RELEASE, 2002, 82 (2-3) :441-454
[2]   A VERSATILE VECTOR FOR GENE AND OLIGONUCLEOTIDE TRANSFER INTO CELLS IN CULTURE AND IN-VIVO - POLYETHYLENIMINE [J].
BOUSSIF, O ;
LEZOUALCH, F ;
ZANTA, MA ;
MERGNY, MD ;
SCHERMAN, D ;
DEMENEIX, B ;
BEHR, JP .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1995, 92 (16) :7297-7301
[3]   Cell cycle dependence of gene transfer by lipoplex polyplex and recombinant adenovirus [J].
Brunner, S ;
Sauer, T ;
Carotta, S ;
Cotten, M ;
Saltik, M ;
Wagner, E .
GENE THERAPY, 2000, 7 (05) :401-407
[4]  
DETILLEUX PG, 1991, AM J VET RES, V52, P1658
[5]  
Durrbach A, 1996, J CELL SCI, V109, P457
[6]   Caveolae-mediated internalization of extracellular HIV-1 tat fusion proteins visualized in real time [J].
Ferrari, A ;
Pellegrini, V ;
Arcangeli, C ;
Fittipaldi, A ;
Giacca, M ;
Beltram, F .
MOLECULAR THERAPY, 2003, 8 (02) :284-294
[7]   On the kinetics of polyplex endocytic trafficking: Implications for gene delivery vector design [J].
Forrest, ML ;
Pack, DW .
MOLECULAR THERAPY, 2002, 6 (01) :57-66
[8]   Tracking the intracellular path of poly(ethylenimine)/DNA complexes for gene delivery [J].
Godbey, WT ;
Wu, KK ;
Mikos, AG .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1999, 96 (09) :5177-5181
[9]   Caveolae: An alternative membrane transport compartment [J].
Gumbleton, M ;
Abulrob, ANG ;
Campbell, L .
PHARMACEUTICAL RESEARCH, 2000, 17 (09) :1035-1048
[10]   Microtubule involvement in the intracellular dynamics for gene transfection mediated by cationic liposomes [J].
Hasegawa, S ;
Hirashima, N ;
Nakanishi, M .
GENE THERAPY, 2001, 8 (21) :1669-1673