Transgenic mice carrying site-specific genome modifications (knockout, knock-in) are of vital importance for dissecting complex biological systems as well as for modeling human diseases and testing therapeutic strategies. Recent advances in the use of designer nucleases such as zinc finger nucleases (ZFNs), transcription activator-like effector nucleases (TALENs), and the clustered regularly interspaced short palindromic repeats (CRISPR)/CRISPR-associated (Cas) 9 system for site-specific genome engineering open the possibility to perform rapid targeted genome modification in virtually any laboratory species without the need to rely on embryonic stem (ES) cell technology. A genome editing experiment typically starts with identification of de...
Genetic modification of almost any species is now possible using approaches based on targeted nuclea...
Genetic engineered mice are instrumental for analysis of gene function in health and disease. Here t...
Gene targeting by sequence-specific nucleases in one-cell embryos provides an expedited mutagenesis ...
Gene engineering for generating targeted mouse mutants is a key technology for biomedical research. ...
Gene engineering for generating targeted mouse mutants is a key technology for biomedical research. ...
Genetically engineered mice are instrumental for the analysis of mammalian gene function in health a...
AbstractMouse transgenesis has been instrumental in determining the function of genes in the pathoph...
Genetically engineered mice are instrumental for the analysis of mammalian gene function in health a...
Mouse transgenesis has been instrumental in determining the function of genes in the pathophysiology...
Mouse transgenesis has been instrumental in determining the function of genes in the pathophysiology...
Mouse transgenesis has been instrumental in determining the function of genes in the pathophysiology...
Mouse transgenesis has been instrumental in determining the function of genes in the pathophysiology...
Mouse transgenesis has been instrumental in determining the function of genes in the pathophysiology...
Genetic modification of almost any species is now possible using approaches based on targeted nuclea...
Genetic modification of almost any species is now possible using approaches based on targeted nuclea...
Genetic modification of almost any species is now possible using approaches based on targeted nuclea...
Genetic engineered mice are instrumental for analysis of gene function in health and disease. Here t...
Gene targeting by sequence-specific nucleases in one-cell embryos provides an expedited mutagenesis ...
Gene engineering for generating targeted mouse mutants is a key technology for biomedical research. ...
Gene engineering for generating targeted mouse mutants is a key technology for biomedical research. ...
Genetically engineered mice are instrumental for the analysis of mammalian gene function in health a...
AbstractMouse transgenesis has been instrumental in determining the function of genes in the pathoph...
Genetically engineered mice are instrumental for the analysis of mammalian gene function in health a...
Mouse transgenesis has been instrumental in determining the function of genes in the pathophysiology...
Mouse transgenesis has been instrumental in determining the function of genes in the pathophysiology...
Mouse transgenesis has been instrumental in determining the function of genes in the pathophysiology...
Mouse transgenesis has been instrumental in determining the function of genes in the pathophysiology...
Mouse transgenesis has been instrumental in determining the function of genes in the pathophysiology...
Genetic modification of almost any species is now possible using approaches based on targeted nuclea...
Genetic modification of almost any species is now possible using approaches based on targeted nuclea...
Genetic modification of almost any species is now possible using approaches based on targeted nuclea...
Genetic engineered mice are instrumental for analysis of gene function in health and disease. Here t...
Gene targeting by sequence-specific nucleases in one-cell embryos provides an expedited mutagenesis ...