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The genetically modified mouse in which a gene affecting hair growth has been knocked out (left) shown next to a normal lab mouse. A genetically modified mouse, genetically engineered mouse model (GEMM) [1] or transgenic mouse is a mouse (Mus musculus) that has had its genome altered through the use of genetic engineering techniques.
The two most common types of genetically modified mice are knockout mice and oncomice. Knockout mice are a type of mouse model that uses transgenic insertion to disrupt an existing gene's expression. In order to create knockout mice, a transgene with the desired sequence is inserted into an isolated mouse blastocyst using electroporation.
A mouse-human hybrid is a genetically modified mouse whose genome has both mouse and human genes, thus being a murine form of a human-animal hybrid. For example, genetically modified mice may be born with human leukocyte antigen genes in order to provide a more realistic environment when introducing human white blood cells into them in order to ...
Another method is Embryonic Stem Cell-Mediated Gene Transfer. The gene is transfected into embryonic stem cells and then they are inserted into mouse blastocysts that are then implanted into foster mothers. The resulting offspring are chimeric, and further mating can produce mice fully transgenic with the gene of interest. [42]
Mice with genes knocked out (knockout mouse) were created in 1989. The first transgenic livestock were produced in 1985 [ 28 ] and the first animal to synthesise transgenic proteins in their milk were mice, [ 29 ] engineered to produce human tissue plasminogen activator in 1987.
Typically, this is done in mice since the technology for this process is more refined and there is a high degree of shared sequence complexity between mice and humans. [2] The difference between knock-in technology and traditional transgenic techniques is that a knock-in involves a gene inserted into a specific locus, and is thus a "targeted ...
A knockout mouse, or knock-out mouse, is a genetically modified mouse (Mus musculus) in which researchers have inactivated, or "knocked out", an existing gene by replacing it or disrupting it with an artificial piece of DNA.
The gene can be later knocked out (inactivated) at a specific time-point or tissue-type in mutant mice derived from the mutant ES Cells, by appropriate breeding to other transgenic mice. This conditionality is a key property of the entire resource, and it allows a more nuanced study of the effects of the gene-knockout.