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An evolved adeno-associated viral variant enhances gene delivery and gene targeting in neural stem cells.


ABSTRACT: Gene delivery to, and gene targeting in, stem cells would be a highly enabling technology for basic science and biomedical application. Adeno-associated viral (AAV) vectors have demonstrated the capacity for efficient delivery to numerous cells, but their application to stem cells has been limited by low transduction efficiency. Due to their considerable advantages, however, engineering AAV delivery systems to enhance gene delivery to stem cells may have an impact in stem cell biology and therapy. Therefore, using several diverse AAV capsid libraries-including randomly mutagenized, DNA shuffled, and random peptide insertion variants-we applied directed evolution to create a "designer" AAV vector with enhanced delivery efficiency for neural stem cells (NSCs). A novel AAV variant, carrying an insertion of a selected peptide sequence on the surface of the threefold spike within the heparin-binding site, emerged from this evolution. Importantly, this evolved AAV variant mediated efficient gene delivery to rat, mouse, and human NSCs, as well as efficient gene targeting within adult NSCs, and it is thus promising for applications ranging from basic stem cell biology to clinical translation.

SUBMITTER: Jang JH 

PROVIDER: S-EPMC3070092 | biostudies-literature | 2011 Apr

REPOSITORIES: biostudies-literature

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An evolved adeno-associated viral variant enhances gene delivery and gene targeting in neural stem cells.

Jang Jae-Hyung JH   Koerber James T JT   Kim Jung-Suk JS   Asuri Prashanth P   Vazin Tandis T   Bartel Melissa M   Keung Albert A   Kwon Inchan I   Park Kook In KI   Schaffer David V DV  

Molecular therapy : the journal of the American Society of Gene Therapy 20110111 4


Gene delivery to, and gene targeting in, stem cells would be a highly enabling technology for basic science and biomedical application. Adeno-associated viral (AAV) vectors have demonstrated the capacity for efficient delivery to numerous cells, but their application to stem cells has been limited by low transduction efficiency. Due to their considerable advantages, however, engineering AAV delivery systems to enhance gene delivery to stem cells may have an impact in stem cell biology and therap  ...[more]

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