2016•Unpublished venueRequires access

Development of optimized vectors f

Gary J. Nabel

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Abstract

The promise of gene therapy and its potential to generate effective treatments for human diseases has been a subject of much debate. It is now well recognized that gene delivery technology presents the major obstacle to the success of this field, and a consensus has emerged that the development of vectors that can deliver and appropriately express relevant gene products in specific tissues in vivo is much needed. For this reason, significant effort has been placed on expanded studies in molecular virology and gene expression relevant to gene-transfer technology (reviewed in ref. 1). The challenge has been to achieve stable, regulated gene expression and to avoid immune responses. Thus, the ideal gene therapy vector would be injectable, targetable to specific sites in vivo, regulatable, able to maintain long-term gene expression, and nonimmunogenic. In this issue of the Proceedings, Burcin and colleagues (2) in Dr. Bert O'Malley's laboratory describe a major step toward the generation of an optimized adenoviral vector. This vector could be useful for the treatment of

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What this paper is about

The promise of gene therapy and its potential to generate effective treatments for human diseases has been a subject of much debate. It is now well recognized that gene delivery technology presents the major obstacle to the success of this field, and a consensus has emerged that the development of vectors that can deliver and appropriately express relevant gene products in specific tissues in vivo is much needed. For this reason, significant effort has been placed on expanded studies in molecular virology and gene expression relevant to gene-transfer technology (reviewed in ref. 1). The challenge has been to achieve stable, regulated gene expression and to avoid immune responses. Thus, the ideal gene therapy vector would be injectable, targetable to specific sites in vivo, regulatable, able to maintain long-term gene expression, and nonimmunogenic. In this issue of the Proceedings, Burcin and colleagues (2) in Dr. Bert O'Malley's laboratory describe a major step toward the generation of an optimized adenoviral vector. This vector could be useful for the treatment of

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Available abstract

The promise of gene therapy and its potential to generate effective treatments for human diseases has been a subject of much debate. It is now well recognized that gene delivery technology presents the major obstacle to the success of this field, and a consensus has emerged that the development of vectors that can deliver and appropriately express relevant gene products in specific tissues in vivo is much needed. For this reason, significant effort has been placed on expanded studies in molecular virology and gene expression relevant to gene-transfer technology (reviewed in ref. 1). The challenge has been to achieve stable, regulated gene expression and to avoid immune responses. Thus, the ideal gene therapy vector would be injectable, targetable to specific sites in vivo, regulatable, able to maintain long-term gene expression, and nonimmunogenic. In this issue of the Proceedings, Burcin and colleagues (2) in Dr. Bert O'Malley's laboratory describe a major step toward the generation of an optimized adenoviral vector. This vector could be useful for the treatment of

Key concepts: Genetic enhancement, Vector (molecular biology), Gene transfer, Gene delivery, Computational biology, Viral vector, Gene, Gene expression

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