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March 1, 1998Journal of Virology1,383 citationsOpen Access

Production of High-Titer Recombinant Adeno-Associated Virus Vectors in the Absence of Helper Adenovirus

XXXiao XiaoJLJuan LiRSR. Jude Samulski

Key Points

  • To establish a high-yield recombinant adeno-associated virus production system that completely eliminates contaminating infectious helper adenovirus.
  • Constructed a mini-adenovirus helper plasmid lacking key early and late adenovirus genes essential for producing infectious viral particles.
  • Transfected 293 cells with the mini-adenovirus helper, an AAV packaging plasmid with translational Rep control, and rAAV vector plasmids.
  • Assessed viral titers and compared in vitro and in vivo transduction efficiency against standard heat-inactivated rAAV preparations.
  • Achieved rAAV yields exceeding 1,000 transducing units, or greater than 10^5 viral particles per cell, without generating infectious helper adenovirus.
  • Produced rAAV vectors that achieved in vitro and in vivo transduction levels equivalent to or better than standard helper-virus-derived preparations.

Abstract

Recently, efficient and long-term in vivo gene transfer by recombinant adeno-associated virus type 2 (rAAV) vectors has been demonstrated in a variety of tissues. Further improvement in vector titer and purity will expedite this in vivo exploration and provide preclinical information required for use in human gene therapy. In an effort to obtain higher titers, we constructed a novel AAV helper plasmid which utilizes translational control of AAV Rep genes (J. Li et al., J. Virol. 71:5236-5243, 1997). To address the issue of purity, in this study we report the first rAAV production method which is completely free of adenovirus (Ad) helper virus. The new production system uses a plasmid construct which contains a mini-Ad genome capable of propagating rAAV in the presence of AAV Rep and Cap genes. This construct is missing some of the early and most of the late Ad genes and is incapable of producing infectious Ad. Transfection of 293 cells with the new mini-Ad helper and AAV packaging plasmids results in high-titer rAAV vectors with yields greater than 1,000 transducing units, or 10(5) viral particles per cell. When rAAV vectors were produced by using this production scheme and compared to traditional heat-inactivated rAAV preparations in vitro and in vivo, we observed transduction equivalent to or better than normal levels. The complete removal of infectious Ad from AAV production should facilitate a better understanding of immune response to AAV vectors in vivo, eliminate the need for developing replication-competent Ad assays, and provide a more defined reagent for clinical use.

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Cite This Study

Xiao et al. (1998) studied this question.

synapsesocial.com/papers/6a197975f2eb401dc78923b5https://doi.org/10.1128/jvi.72.3.2224-2232.1998
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