Generating in vivo somatic mouse mosaics with locus-specific, stably-integrated transgenic elements for studies of gene function in development and tumorigenesis [scRNA-seq]
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ABSTRACT: Generating in vivo somatic mouse mosaics with locus-specific, stably-integrated transgenic elements for studies of gene function in development and tumorigenesis [scRNA-seq]
Project description:Generating in vivo somatic mouse mosaics with locus-specific, stably-integrated transgenic elements for studies of gene function in development and tumorigenesis
Project description:Generating in vivo somatic mouse mosaics with locus-specific, stably-integrated transgenic elements for studies of gene function in development and tumorigenesis [scATAC-seq]
Project description:Generating in vivo somatic mouse mosaics with locus-specific, stably-integrated transgenic elements for studies of gene function in development and tumorigenesis [ChIP-seq]
Project description:Generating in vivo somatic mouse mosaics with locus-specific, stably-integrated transgenic elements for studies of gene function in development and tumorigenesis [bulk ATAC-seq]
Project description:We report the development and efficiency of a new method to create somatic mosaicism in mice named as mosaic analysis by dual recombinase-mediated cassette exchange. Then we generate, as a proof of concept, a new model for pediatric glioma.
Project description:We report the development and eficiency of a new method to create somatic mosaicism in mice named as mosaic analysis by dual recombinase-mediated cassette exchange. Then we generate, as a proof of concept, a new model for pediatric glioima
Project description:We report the development and eficiency of a new method to create somatic mosaicism in mice named as mosaic analysis by dual recombinase-mediated cassette exchange. Then we generate, as a proof of concept, a new model for pediatric glioima
Project description:We report the development and efficiency of a new method to create somatic mosaicism in mice named as mosaic analysis by dual recombinase-mediated cassette exchange. Then we generate, as a proof of concept, a new model for pediatric glioma.