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Embryonic stem cell culture and gene targeting in transgenic mice.

Hélène Baribault, Rolf Kemler

Open publisher page 36 citations

Abstract

Genetically altered embryonic stem (ES) cells re-injected into mouse blastocysts take part in the formation of all tissues, including the germ line, thus generating transgenic offspring. This approach in combination with the homologous recombination technology offers the possibility of altering ES cells in a controlled manner and therefore of generating transgenic mice with a predetermined genome. We summarize here advances in mouse embryology and genetics that have led to this exciting development.

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What this paper is about

Genetically altered embryonic stem (ES) cells re-injected into mouse blastocysts take part in the formation of all tissues, including the germ line, thus generating transgenic offspring. This approach in combination with the homologous recombination technology offers the possibility of altering ES cells in a controlled manner and therefore of generating transgenic mice with a predetermined genome. We summarize here advances in mouse embryology and genetics that have led to this exciting development.

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OpenAlex reports 36 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Genetically altered embryonic stem (ES) cells re-injected into mouse blastocysts take part in the formation of all tissues, including the germ line, thus generating transgenic offspring. This approach in combination with the homologous recombination technology offers the possibility of altering ES cells in a controlled manner and therefore of generating transgenic mice with a predetermined genome. We summarize here advances in mouse embryology and genetics that have led to this exciting development.

Key concepts: Embryonic stem cell, Transgene, Genetically modified mouse, Biology, Homologous recombination, Germline, Cell biology, Stem cell

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