Efficient long-term gene transfer into muscle tissue of immunocompetent mice by adeno-associated virus vector

Author:

Xiao X1,Li J1,Samulski R J1

Affiliation:

1. Gene Therapy Center, University of North Carolina at Chapel Hill, 27599, USA.

Abstract

Muscle-directed gene transfer is being considered for the treatment of several metabolic diseases, including hemophilia and Duchene's muscular dystrophy. Previous efforts to target this tissue for somatic delivery with various vector systems have resulted in transient expression due to silencing of the transgene or to an immune response against the vector-transduced cells. We introduced recombinant adeno-associated virus vector (rAAV) carrying a lacZ reporter into muscle tissue of immunocompetent mice. The lacZ reporter gene was efficiently transduced and expressed with no evidence of a cellular immune response. Moreover, gene expression persisted for more than 1.5 years. Molecular characterization of rAAV vector DNA suggests a mechanism for persistence, since vector episomes convert to high-molecular-weight genomic DNA. These data provide the first report for establishing long-term gene transduction into mammalian muscle cells in vivo without the need for immune modulation of the organism.

Publisher

American Society for Microbiology

Subject

Virology,Insect Science,Immunology,Microbiology

Reference58 articles.

1. Cultured human myoblasts and myotubes show markedly different transducibility by replication-defective adenovirus recombinants;Acsadi G.;Gene Ther.,1994

2. A differential efficiency of adenovirus-mediated in vivo gene transfer into skeletal muscle cells of different maturity;Acsadi G.;Hum. Mol. Genet.,1994

3. Dystrophin expression in muscle of mdx mice after adenovirus-mediated in vivo gene transfer;Acsadi G.;Hum. Gene Ther.,1996

4. In vivo model of adeno-associated virus vector persistence and rescue;Afione S. A.;J. Virol.,1996

5. DNA-damaging agents greatly increase the transduction of nondividing cells by adeno-associated virus vectors;Alexander I. E.;J. Virol.,1994

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