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Differences in the internalization of self-inactivating VSVG-pseudotyped murine leukemia virus-based vectors in human and murine cells
(Elsevier B.V., 2018)
© 2018 Elsevier B.V. Self-inactivating VSVG-pseudotyped murine leukemia virus (SIN-VSVG-MLV) has been widely used to generate stable cell lines and produce gene delivery vectors. Despite the broad cellular tropism of the ...
Differences in the internalization of self inactivating VSVG pseudotyped murine leukemia virus based vectors in human and murine cells
(Elsevier, 2018)
Self-inactivating VSVG-pseudotyped murine leukemia virus (SIN-VSVG-MLV) has been widely used to generate stable cell lines and produce gene delivery vectors. Despite the broad cellular tropism of the VSVG-pseudotyped MLV, ...
Differences in the internalization of self-inactivating vsvg-pseudotyped murine leukemia virus-based vectors in human and murine cells
(2018)
Self-inactivating VSVG-pseudotyped murine leukemia virus (SIN-VSVG-MLV) has been widely used to generate stable cell lines and produce gene delivery vectors. Despite the broad cellular tropism of the VSVG-pseudotyped MLV, ...
Differences in the internalization of self-inactivating vsvg-pseudotyped murine leukemia virus-based vectors in human and murine cells
(2018)
Self-inactivating VSVG-pseudotyped murine leukemia virus (SIN-VSVG-MLV) has been widely used to generate stable cell lines and produce gene delivery vectors. Despite the broad cellular tropism of the VSVG-pseudotyped MLV, ...
Murine Retroviruses Re-engineered for Lineage Tracing and Expression of Toxic Genes in the Developing Chick Embryo
(Wiley-Blackwell, 2008-11-01)
We describe two replication incompetent retroviral vectors that co-express green fluorescent protein (GFP) and beta-galactosidase. These vectors incorporate either the avian reticuloendotheliosis (spleen necrosis virus; ...
Site Specific Knock-In Genome Editing in Human HSCs Using Baboon Envelope gp Pseudotypedviral Derived “Nanoblades” Loaded with Cas9/sgRNA Combined with Donor Encoding AAV-6
(Elsevier, 2019)
Programmable nucleases have enabled rapid and accessible genome engineering in eukaryotic cells and living organisms. Here, we have designed ?Nanoblades?, a new technology that will deliver a genomic cleaving agent into ...