Gene electrotransfer into murine skeletal muscle: A systematic analysis of parameters for long-term gene expression

被引:32
|
作者
Tevz, Gregor [1 ]
Pavlin, Darja [2 ]
Kamensek, Urska [1 ]
Kranjc, Simona [1 ]
Mesojednik, Suzana [1 ]
Coer, Andrej [3 ]
Sersa, Gregor [1 ]
Cemazar, Maja [1 ]
机构
[1] Inst Oncol Ljubljana, Dept Expt Oncol, SI-1000 Ljubljana, Slovenia
[2] Univ Ljubljana, Fac Vet, SI-1000 Ljubljana, Slovenia
[3] Univ Ljubljana, Fac Med, SI-1000 Ljubljana, Slovenia
关键词
electroporation; electrotransfection; skeletal muscle; plasmid DNA; green fluorescent protein; inflammatory mononuclear cells infiltration; long-term gene expression; transfection efficiency;
D O I
10.1177/153303460800700201
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Skeletal muscle is an attractive target tissue for delivery of therapeutic genes, since it is well vascularized, easily accessible, and has a high capacity for protein synthesis. For efficient transfection in skeletal muscle, several protocols have been described, including delivery of low voltage electric pulses and a combination of high and low voltage electric pulses. The aim of this study was to determine the influence of different parameters of electrotransfection on short-term and long-term transfection efficiency in murine skeletal muscle, and to evaluate histological changes in the treated tissue. Different parameters of electric pulses, different time lags between plasmid DNA injection and application of electric pulses, and different doses of plasmid DNA were tested for electrotransfection of tibialis cranialis muscle of C57BI/6 mice using DNA plasmid encoding green fluorescent protein (GFP). Transfection efficiency was assessed on frozen tissue sections one week after electrotransfection using a fluorescence microscope and also noninvasively, followed by an in vivo imaging system using a fluorescence stereo microscope over a period of several months. Histological changes in muscle were evaluated immediately or several months after electrotransfection by determining infiltration of inflammatory mononuclear cells and presence of necrotic muscle fibers. The most efficient electrotransfection into skeletal muscle of C57BI/6 mice in our experiments was achieved when one high voltage (HV) and four low voltage (LV) electric pulses were applied 5 seconds after the injection of 30 mu g of plasmid DNA. This protocol resulted in the highest short-term as well as long-term transfection. The fluorescence intensity of the transfected area declined after 2-3 weeks, but GFP fluorescence was still detectable 18 months after electrotransfection. Extensive inflammatory mononuclear cell infiltration was observed immediately after the electrotransfection procedure using the described parameters, but no necrosis or late tissue damage was observed. This study showed that electric pulse parameters, time lag between the injection of DNA and application of electric pulses, and dose of plasmid DNA affected the duration of transgene expression in murine skeletal muscle. Therefore, transgene expression in muscle can be controlled by appropriate selection of electrotransfection protocol.
引用
收藏
页码:91 / 101
页数:11
相关论文
共 50 条
  • [1] Gene expression profiles in skeletal muscle after gene electrotransfer
    Hojman, Pernille
    Zibert, John R.
    Gissel, Hanne
    Eriksen, Jens
    Gehl, Julie
    BMC MOLECULAR BIOLOGY, 2007, 8
  • [2] Skeletal Muscle Gene Expression in Long-Term Endurance and Resistance Trained Elderly
    Bolotta, Alessandra
    Filardo, Giuseppe
    Abruzzo, Provvidenza Maria
    Astolfi, Annalisa
    De Sanctis, Paola
    Di Martino, Alessandro
    Hofer, Christian
    Indio, Valentina
    Kern, Helmut
    Loefler, Stefan
    Marcacci, Maurilio
    Zampieri, Sandra
    Marini, Marina
    Zucchini, Cinzia
    INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2020, 21 (11)
  • [3] Skeletal muscle gene expression dysregulation in long-term spaceflights and aging is clock-dependent
    Malhan, Deeksha
    Yalcin, Muege
    Schoenrock, Britt
    Blottner, Dieter
    Relogio, Angela
    NPJ MICROGRAVITY, 2023, 9 (01)
  • [4] Effect of long-term exercise on gene expression of insulin signaling pathway intermediates in skeletal muscle
    Kim, YB
    Inoue, T
    Nakajima, R
    Shirai-Morishita, Y
    Tokuyama, K
    Suzuki, M
    BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1999, 254 (03) : 720 - 727
  • [5] Skeletal muscle gene expression dysregulation in long-term spaceflights and aging is clock-dependent
    Deeksha Malhan
    Müge Yalçin
    Britt Schoenrock
    Dieter Blottner
    Angela Relógio
    npj Microgravity, 9
  • [6] Effects of spaceflight on murine skeletal muscle gene expression
    Allen, David L.
    Bandstra, Eric R.
    Harrison, Brooke C.
    Thorng, Seiha
    Stodieck, Louis S.
    Kostenuik, Paul J.
    Morony, Sean
    Lacey, David L.
    Hammond, Timothy G.
    Leinwand, Leslie L.
    Argraves, W. Scott
    Bateman, Ted A.
    Barth, Jeremy L.
    JOURNAL OF APPLIED PHYSIOLOGY, 2009, 106 (02) : 582 - 595
  • [7] Long-term, high level in vivo gene expression after electric pulse-mediated gene transfer into skeletal muscle
    Mir, LM
    Bureau, MF
    Rangara, R
    Schwartz, BT
    Scherman, D
    COMPTES RENDUS DE L ACADEMIE DES SCIENCES SERIE III-SCIENCES DE LA VIE-LIFE SCIENCES, 1998, 321 (11): : 893 - 899
  • [8] Long-term maintenance of dystrophin expression and resistance to injury of skeletal muscle in gene edited DMD mice
    Karri, Dileep R.
    Zhang, Yu
    Chemello, Francesco
    Min, Yi-Li
    Huang, Jian
    Kim, Jiwoong
    Mammen, Pradeep P. A.
    Xu, Lin
    Liu, Ning
    Bassel-Duby, Rhonda
    Olson, Eric N.
    MOLECULAR THERAPY-NUCLEIC ACIDS, 2022, 28 : 154 - 167
  • [9] Gene expression analysis of dystrophic skeletal muscle
    Cree, L
    Brockington, M
    Keers, S
    Poppe, M
    Laval, S
    Muntoni, F
    Anderson, L
    Bushby, K
    JOURNAL OF THE NEUROLOGICAL SCIENCES, 2002, 199 : S83 - S83
  • [10] Long-term and tight control of gene expression in mouse skeletal muscle by a new hybrid human transcription factor
    Roscilli, G
    Rinaudo, CD
    Cimino, M
    Sporeno, E
    Lamartina, S
    Ciliberto, G
    Toniatti, C
    MOLECULAR THERAPY, 2002, 6 (05) : 653 - 663