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Vesicular stomatitis virus G glycoprotein pseudotyped retroviral vectors: concentration to very high titer and efficient gene transfer into mammalian and nonmammalian cells

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TLDR
The ability to concentrate vesicular stomatitis virus G glycoprotein pseudotyped vectors will facilitate gene therapy model studies and other gene transfer experiments that require direct delivery of vectors in vivo, and facilitate genetic studies in nonmammalian species, including the important zebrafish developmental system.
Abstract
The restricted host-cell range and low titer of retroviral vectors limit their use for stable gene transfer in eukaryotic cells. To overcome these limitations, we have produced murine leukemia virus-derived vectors in which the retroviral envelope glycoprotein has been completely replaced by the G glycoprotein of vesicular stomatitis virus. Such vectors can be concentrated by ultracentrifugation to titers > 10(9) colony-forming units/ml and can infect cells, such as hamster and fish cell lines, that are ordinarily resistant to infection with vectors containing the retroviral envelope protein. The ability to concentrate vesicular stomatitis virus G glycoprotein pseudotyped vectors will facilitate gene therapy model studies and other gene transfer experiments that require direct delivery of vectors in vivo. The availability of these pseudotyped vectors will also facilitate genetic studies in nonmammalian species, including the important zebrafish developmental system, through the efficient introduction and expression of foreign genes.

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In Vivo Gene Delivery and Stable Transduction of Nondividing Cells by a Lentiviral Vector

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A Third-Generation Lentivirus Vector with a Conditional Packaging System

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Efficient transfer, integration, and sustained long-term expression of the transgene in adult rat brains injected with a lentiviral vector

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Viral vectors for gene therapy: the art of turning infectious agents into vehicles of therapeutics

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References
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Journal ArticleDOI

Characteristics of a Human Cell Line Transformed by DNA from Human Adenovirus Type 5

TL;DR: Human embryonic kidney cells have been transformed by exposing cells to sheared fragments of adenovirus type 5 DNA, and the transformed cells exhibited many of the characteristics of transformation including the elaboration of a virus-specific tumour antigen.
Journal ArticleDOI

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TL;DR: It is shown that the ability to package virus is conferred at very low frequency to cells infected with virus from these retrovirus packaging cell lines, presumably by low-frequency transmission of the deleted virus genome.
Journal ArticleDOI

Production of clones of homozygous diploid zebra fish ( Brachydanio rerio )

TL;DR: Clones of homozygous fish have been produced from individual homozygotes and associated genetic methods facilitate genetic analyses of this vertebrate.
Journal ArticleDOI

Construction and properties of retrovirus packaging cells based on gibbon ape leukemia virus.

TL;DR: These simian virus-based packaging cells extend the host range of currently available murine and avian packaging cells and should be useful for efficient gene transfer into higher mammals.
Book ChapterDOI

Virus entry into animal cells.

TL;DR: In order to take up nutrients, to communicate with other cells, to control the intracellular ion balance, and to secrete substances, cells have a variety of mechanisms for bypassing and modifying the barrier properties imposed by their plasma membrane.
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