Lentiviral Vectors Mediate Long-Term and High Efficiency Transgene Expression in HEK 293T cells

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Lentiviral Vectors Mediate Long-Term and High Efficiency Transgene Expression in HEK 293T cells

OBJECTIVES Lentiviral vectors have been used successfully to rapidly produce decigram quantities of active recombinant proteins in mammalian cell lines. To optimize the protein production platform, the roles of Ubiquitous Chromatin Opening Element (UCOE), an insulator, and selected promoters were evaluated based on efficiency and stability of foreign gene expression mediated by lentiviral vecto...

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Lentiviral transgene vectors

Transgenic animals can be broadly defined as animals that contain recombinant DNA molecules in their genome that have been introduced by human intervention (Wall, 1996). Developmental studies and clinically relevant disease models are based on transgenic laboratory animals, most commonly the mouse. In farm animals, transgenic technology is used to produce large quantities of pharmaceutically re...

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Lentiviral vector-mediated transduction of adult neural stem/progenitor cells isolated from the temporal tissues of epileptic patients

Objective(s): Neural stem/progenitor cells (NS/PCs) hold a great potential for delivery of therapeutic agents into the injured regions of the brain. Efficient gene delivery using NS/PCs may correct a genetic defect, produce therapeutic proteins or neurotransmitters, and modulate enzyme activation. Here, we investigated the efficiency of a recombinant lentivirus vector ...

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Targeted transgene expression in muller glia of normal and diseased retinas using lentiviral vectors.

PURPOSE Müller glia play crucial roles in retinal homeostasis and function. Genetic modification of Müller cells by viral gene delivery would be valuable for studies of their normal physiology and roles in retinal disease states. However, stable and efficient transgene expression in Müller cells after delivery of gene transfer vectors has remained elusive. Transcriptional and transductional tar...

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Gene manipulation of human adipose-derived mesenchymal stem cells by miR-34a

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ژورنال

عنوان ژورنال: International Journal of Medical Sciences

سال: 2015

ISSN: 1449-1907

DOI: 10.7150/ijms.11270