Electroporation: theory and methods, perspectives for drug delivery, gene therapy and research

被引:679
作者
Gehl, J [1 ]
机构
[1] Univ Copenhagen, Herlev Hosp, Dept Oncol 54BI, DK-2730 Herlev, Denmark
来源
ACTA PHYSIOLOGICA SCANDINAVICA | 2003年 / 177卷 / 04期
关键词
drug delivery; electrochemotherapy; electrogenetransfer; electroporation; genetherapy;
D O I
10.1046/j.1365-201X.2003.01093.x
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
Electroporation designates the use of short high-voltage pulses to overcome the barrier of the cell membrane. By applying an external electric field, which just surpasses the capacitance of the cell membrane, transient and reversible breakdown of the membrane can be induced. This transient, permeabilized state can be used to load cells with a variety of different molecules, either through simple diffusion in the case of small molecules, or through electrophoretically driven processes allowing passage through the destabilized membrane - as is the case for DNA transfer. Initially developed for gene transfer, electroporation is now in use for delivery of a large variety of molecules: From ions to drugs, dyes, tracers, antibodies, and oligonucleotides to RNA and DNA. Electroporation has proven useful both in vitro, in vivo and in patients, where drug delivery to malignant tumours has been performed. Whereas initial electroporation procedures caused considerable cell damage, developments over the past decades have led to sophistication of equipment and optimization of protocols. The electroporation procedures used in many laboratories could be optimized with limited effort. This review (i) outlines the theory of electroporation, (ii) discusses factors of importance for optimization of electroporation protocols for mammalian cells, (iii) addresses particular concerns when using electroporation in vivo, e.g. effects on blood flow and considerations regarding choice of electrodes, (iv) describes DNA electrotransfer with emphasis on use in the in vivo setting, and (v) sums up data on safety and efficacy of electroporation used to enhance delivery of chemotherapy to tumours in cancer patients.
引用
收藏
页码:437 / 447
页数:11
相关论文
共 96 条
[81]   ELECTROPORATION AND ELECTROPHORETIC DNA TRANSFER INTO CELLS - THE EFFECT OF DNA INTERACTION WITH ELECTROPORES [J].
SUKHAREV, SI ;
KLENCHIN, VA ;
SEROV, SM ;
CHERNOMORDIK, LV ;
CHIZMADZHEV, YA .
BIOPHYSICAL JOURNAL, 1992, 63 (05) :1320-1327
[82]   AN EXPERIMENTAL EVALUATION OF THE CRITICAL POTENTIAL DIFFERENCE INDUCING CELL-MEMBRANE ELECTROPERMEABILIZATION [J].
TEISSIE, J ;
ROLS, MP .
BIOPHYSICAL JOURNAL, 1993, 65 (01) :409-413
[83]   MANIPULATION OF CELL CYTOSKELETON AFFECTS THE LIFETIME OF CELL-MEMBRANE ELECTROPERMEABILIZATION [J].
TEISSIE, J ;
ROLS, MP .
ELECTRICAL INJURY: A MULTIDISCIPLINARY APPROACH TO THERAPY, PREVENTION, AND REHABILITATION, 1994, 720 :98-110
[84]   ELECTROPERMEABILIZATION OF CELL-MEMBRANES - EFFECT OF THE RESTING MEMBRANE-POTENTIAL [J].
TEKLE, E ;
ASTUMIAN, RD ;
CHOCK, PB .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1990, 172 (01) :282-287
[85]   A versatile microporation technique for the transfection of cultured CNS neurons [J].
Teruel, MN ;
Blanpied, TA ;
Shen, K ;
Augustine, GJ ;
Meyer, T .
JOURNAL OF NEUROSCIENCE METHODS, 1999, 93 (01) :37-48
[86]   Electroporation-induced formation of individual calcium entry sites in the cell body and processes of adherent cells [J].
Teruel, MN ;
Meyer, T .
BIOPHYSICAL JOURNAL, 1997, 73 (04) :1785-1796
[87]   INVIVO ELECTROPORATION AND STABLE TRANSFORMATION OF SKIN CELLS OF NEWBORN MICE BY PLASMID DNA [J].
TITOMIROV, AV ;
SUKHAREV, S ;
KISTANOVA, E .
BIOCHIMICA ET BIOPHYSICA ACTA, 1991, 1088 (01) :131-134
[88]  
TOUNEKTI O, 1993, CANCER RES, V53, P5462
[89]   EFFECTS OF STRONG ELECTRICAL SHOCK ON CARDIAC-MUSCLE TISSUE [J].
TUNG, L ;
TOVAR, O ;
NEUNLIST, M ;
JAIN, SK ;
ONEILL, RJ .
ELECTRICAL INJURY: A MULTIDISCIPLINARY APPROACH TO THERAPY, PREVENTION, AND REHABILITATION, 1994, 720 :160-175
[90]   Efficient genetic modification of murine dendritic cells by electroporation with mRNA [J].
Van Meirvenne, S ;
Straetman, L ;
Heirman, C ;
Dullaers, M ;
De Greef, C ;
Van Tendeloo, V ;
Thielemans, K .
CANCER GENE THERAPY, 2002, 9 (09) :787-797