Gene modification within the murine genome has become a powerful and invaluable tool to investigate development. One example of the utility of such technology is providing a method by which researchers can follow cells throughout development via the introduced genetic modifications.Fil: Pascottini, Osvaldo Bogado. University of Chicago; Estados UnidosFil: Goszczynski, Daniel Estanislao. University of Chicago; Estados Unidos. Consejo Nacional de Investigaciones Científicas y Técnicas; ArgentinaFil: Nguyen, Alexandra L.. University of Chicago; Estados Unido
In a mutant ES cells↔ wild-type embryo chimera, ES cells behave more like epiblastcells. They can co...
Recent progress in genetics has been in part due to progress in embryo technology, as new developmen...
Embryogenesis is a fascinating mystery. How a single fertilized egg, the zygote, reads out its genet...
Cell proliferation and differentiation are tightly regulated processes required for the proper devel...
Abstract: This study was performed to determine the capability of embryonic stem (ES) cells at late ...
One of the most powerful tools used to gain insight into complex developmental processes is the anal...
In this issue of Stem Cell Reports, Hamanaka et al. (2018) describe the generation of chimeric mice ...
Chimeras are widely acknowledged as the gold standard for assessing stem cell pluripotency, based on...
Gene targeting in embryonic stem (ES) cells remains best practice for introducing complex mutations ...
Blastocyst injection and morula aggregation are commonly used to evaluate stem cell pluripotency bas...
Contents: Many reports described cell lines derived in domestic species, which presented several imp...
This article has been adapted, with permission, from a paper originally published in Médecine/ Scien...
Embryonic chimerism is generally used in basic research and in vivo diagnosis of undifferentiated em...
The aim of this study was to examine the factors, which influence the chimeraforming potential of mo...
Fertilized mouse zygotes can reprogram somatic cells to a pluripotent state. Human zygotes might the...
In a mutant ES cells↔ wild-type embryo chimera, ES cells behave more like epiblastcells. They can co...
Recent progress in genetics has been in part due to progress in embryo technology, as new developmen...
Embryogenesis is a fascinating mystery. How a single fertilized egg, the zygote, reads out its genet...
Cell proliferation and differentiation are tightly regulated processes required for the proper devel...
Abstract: This study was performed to determine the capability of embryonic stem (ES) cells at late ...
One of the most powerful tools used to gain insight into complex developmental processes is the anal...
In this issue of Stem Cell Reports, Hamanaka et al. (2018) describe the generation of chimeric mice ...
Chimeras are widely acknowledged as the gold standard for assessing stem cell pluripotency, based on...
Gene targeting in embryonic stem (ES) cells remains best practice for introducing complex mutations ...
Blastocyst injection and morula aggregation are commonly used to evaluate stem cell pluripotency bas...
Contents: Many reports described cell lines derived in domestic species, which presented several imp...
This article has been adapted, with permission, from a paper originally published in Médecine/ Scien...
Embryonic chimerism is generally used in basic research and in vivo diagnosis of undifferentiated em...
The aim of this study was to examine the factors, which influence the chimeraforming potential of mo...
Fertilized mouse zygotes can reprogram somatic cells to a pluripotent state. Human zygotes might the...
In a mutant ES cells↔ wild-type embryo chimera, ES cells behave more like epiblastcells. They can co...
Recent progress in genetics has been in part due to progress in embryo technology, as new developmen...
Embryogenesis is a fascinating mystery. How a single fertilized egg, the zygote, reads out its genet...