The state of the art of adeno-associated virus-based vectors in gene therapy

被引:80
作者
Coura, Renata dos Santos [1 ]
Nardi, Nance Beyer [1 ]
机构
[1] Univ Fed Rio Grande do Sul, Dept Genet, BR-91501 Porto Alegre, RS, Brazil
关键词
D O I
10.1186/1743-422X-4-99
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
The adeno-associated virus (AAV) has rapidly gained popularity in gene therapy since the establishment of the first AAV2 infectious clone, in 1982, due to some of their distinguishing characteristics such as lack of pathogenicity, wide range of infectivity, and ability to establish long-term transgene expression. Notably over the past decade, this virus has attracted considerable interest as a gene therapy vector, and about 85% of the currently available 2,041 PubMed references on adeno-associated viruses have been published during this time. The exponential progress of AAV-based vectors has been made possible by the advances in the knowledge of the virology and biology of this virus, which allows great improvement in AAV vectors construction and a better comprehension of their operation. Moreover, with the recent discovery of novel AAV serotypes, there is virtually one preferred serotype for nearly every organ or tissue to target. Thus, AAV-based vectors have been successfully overcoming the main gene therapy challenges such as transgene maintenance, safety and host immune response, and meeting the desirable vector system features of high level of safety combined with clinical efficacy and versatility in terms of potential applications. Consequently, AAV is increasingly becoming the vector of choice for a wide range of gene therapy approaches. This report will highlight the state of the art of AAV-based vectors studies and the advances on the use of AAV vectors for several gene therapy approaches.
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页数:7
相关论文
共 49 条
[21]   Effects of transient immunosuppression on adenoassociated, virus-mediated, liver-directed gene transfer in rhesus macaques and implications for human gene therapy [J].
Jiang, Haiyan ;
Couto, Linda B. ;
Patarroyo-White, Susannah ;
Liu, Tongyao ;
Nagy, Dea ;
Vargas, Joseph A. ;
Zhou, Shangzhen ;
Scallan, Ciaran D. ;
Sommer, Jurg ;
Vijay, Sharmila ;
Mingozzi, Federico ;
High, Katherine A. ;
Pierce, Glenn F. .
BLOOD, 2006, 108 (10) :3321-3328
[22]   Evidence for gene transfer and expression of factor IX in haemophilia B patients treated with an AAV vector [J].
Kay, MA ;
Manno, CS ;
Ragni, MV ;
Larson, PJ ;
Couto, LB ;
McClelland, A ;
Glader, B ;
Chew, AJ ;
Tai, SJ ;
Herzog, RW ;
Arruda, V ;
Johnson, F ;
Scallan, C ;
Skarsgard, E ;
Flake, AW ;
High, KA .
NATURE GENETICS, 2000, 24 (03) :257-261
[23]   ADENOVIRUS-ASSOCIATED VIRUS MULTIPLICATION .10. SELF-COMPLEMENTARITY OF TERMINAL SEQUENCES WITHIN PLUS OR MINUS STRANDS OF ADENOVIRUS-ASSOCIATED VIRUS DNA [J].
KOCZOT, FJ ;
CARTER, BJ ;
GARON, CF ;
ROSE, JA .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1973, 70 (01) :215-219
[24]   CLONING OF INFECTIOUS ADENO-ASSOCIATED VIRUS GENOMES IN BACTERIAL PLASMIDS [J].
LAUGHLIN, CA ;
TRATSCHIN, JD ;
COON, H ;
CARTER, BJ .
GENE, 1983, 23 (01) :65-73
[25]  
Leone P, 2000, ANN NEUROL, V48, P27, DOI 10.1002/1531-8249(200007)48:1<27::AID-ANA6>3.0.CO
[26]  
2-6
[27]  
Linden RM, 2000, CONTRIB MICROBIOL, V4, P68
[28]   Regulatory considerations for novel gene therapy products: A review of the process leading to the first clinical lentiviral vector [J].
Manilla, P ;
Rebello, T ;
Afable, C ;
Lu, XB ;
Slepushkin, V ;
Humeau, LM ;
Schonely, K ;
Ni, YJ ;
Binder, GK ;
Levine, BL ;
MacGregor, RR ;
June, CH ;
Dropulic, B .
HUMAN GENE THERAPY, 2005, 16 (01) :17-25
[29]   Adeno-associated virus terminal repeat (TR) mutant generates self-complementary vectors to overcome the rate-limiting step to transduction in vivo [J].
McCarty, DM ;
Fu, H ;
Monahan, PE ;
Toulson, CE ;
Naik, P ;
Samulski, RJ .
GENE THERAPY, 2003, 10 (26) :2112-2118
[30]   Self-complementary recombinant adeno-associated virus (scAAV) vectors promote efficient transduction independently of DNA synthesis [J].
McCarty, DM ;
Monahan, PE ;
Samulski, RJ .
GENE THERAPY, 2001, 8 (16) :1248-1254