Muscular Gene Transfer Using Nonviral Vectors

被引:49
作者
Braun, Serge [1 ]
机构
[1] AFM, F-91002 Evry, France
关键词
non-viral; gene therapy; skeletal muscle; cancer; cardiovascular diseases; neuromuscular diseases; human; clinical trials;
D O I
10.2174/156652308786070998
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Skeletal muscle is a target tissue of choice for the gene therapy of both muscle and non-muscle disorders. Investigations of gene transfer into muscle have progressed considerably from the expression of plasmid reporter genes to the production of therapeutic proteins such as trophic factors, hormones, antigens, ion channels or cytoskeletal proteins. Viral vectors are intrinsically the most efficient vehicles to deliver genes into skeletal muscles. But, because viruses are associated with a variety of problems (such as immune and inflammatory responses, toxicity, limited large scale production yields, limitations in the size of the carried therapeutic genes), nonviral vectors remain a viable alternative. In addition, as nonviral vectors allow to transfer genetic structures of various sizes (including large plasmid DNA carrying full-length coding sequences of the gene of interest), they can be used in various gene therapy approaches. However, given the lack of efficiency of nonviral vectors in experimental studies and in the clinical settings, the overall outcome clearly indicates that improved synthetic vectors and/or delivery techniques are required for successful clinical gene therapy. Today, most of the potential muscle-targeted clinical applications seem geared toward peripheral ischemia (mainly through local injections) and cancer and infectious vaccines, and one locoregional administration of naked DNA in Duchenne muscular dystrophy. This review updates the developments in clinical applications of the various plasmid-based non-viral methods under investigation for the delivery of genes to muscles.
引用
收藏
页码:391 / 405
页数:15
相关论文
共 165 条
[1]   Histone H2A significantly enhances in vitro DNA transfection [J].
Balicki, D ;
Beutler, E .
MOLECULAR MEDICINE, 1997, 3 (11) :782-787
[2]   Induction of antigen-specific tolerance in multiple sclerosis after immunization with DNA encoding myelin basic protein in a randomized, placebo-controlled phase 1/2 trial [J].
Bar-Or, Amit ;
Vollmer, Timothy ;
Antel, Jack ;
Arnold, Douglas L. ;
Bodner, Caroline Anita ;
Campagnolo, Denise ;
Gianettoni, Jill ;
Jalili, Farzaneh ;
Kachuck, Norman ;
Lapierre, Yves ;
Niino, Masaaki ;
Oger, Joel ;
Price, Mary ;
Rhodes, Susan ;
Robinson, William H. ;
Shi, Fu-Dong ;
Utz, Paul J. ;
Valone, Frank ;
Weiner, Leslie ;
Steinman, Lawrence ;
Garren, Hideki .
ARCHIVES OF NEUROLOGY, 2007, 64 (10) :1407-1415
[3]   Long-term expression of a fluorescent reporter gene via direct injection of plasmid vector into mouse skeletal muscle: Comparison of human creatine kinase and CMV promoter expression levels in vivo [J].
Bartlett, RJ ;
Secore, SL ;
Singer, JT ;
Bodo, M ;
Sharma, K ;
Ricordi, C .
CELL TRANSPLANTATION, 1996, 5 (03) :411-419
[4]   Cell-specific targeting of lipid-based carriers for ODN and DNA [J].
Bartsch, M ;
Weeke-Klimp, AH ;
Meijer, DKF ;
Scherphof, GL ;
Kamps, JAAM .
JOURNAL OF LIPOSOME RESEARCH, 2005, 15 (1-2) :59-92
[5]   Constitutive expression of phVEGF165 after intramuscular gene transfer promotes collateral vessel development in patients with critical limb ischemia [J].
Baumgartner, I ;
Pieczek, A ;
Manor, O ;
Blair, R ;
Kearney, M ;
Walsh, K ;
Isner, JM .
CIRCULATION, 1998, 97 (12) :1114-1123
[6]   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
[7]   Enhancement of cellular immune response in HIV-1 seropositive individuals: A DNA-based trial [J].
Boyer, JD ;
Chattergoon, MA ;
Ugen, KE ;
Shah, A ;
Bennett, M ;
Cohen, A ;
Nyland, S ;
Lacy, KE ;
Bagarazzi, ML ;
Higgins, TJ ;
Baine, Y ;
Ciccarelli, RB ;
Ginsberg, RS ;
MacGregor, RR ;
Weiner, DB .
CLINICAL IMMUNOLOGY, 1999, 90 (01) :100-107
[8]  
Braun S, 2004, CURR OPIN MOL THER, V6, P499
[9]   The efficient expression of intravascularly delivered DNA in rat muscle [J].
Budker, V ;
Zhang, G ;
Danko, I ;
Williams, P ;
Wolff, J .
GENE THERAPY, 1998, 5 (02) :272-276
[10]  
Budker V, 2000, J GENE MED, V2, P76, DOI 10.1002/(SICI)1521-2254(200003/04)2:2<76::AID-JGM97>3.0.CO