We have developed a gene trap vector that transduces an EGFP-neo fusion gene (Eno) to monitor the expression of trapped genes in living cells and embryos. Upon in vitro differentiation, most gene-trapped embryonic stem (ES) cell clones exhibited detectable green fluorescence in various specialized cell types, which can be followed in the live culture in real time. Populations of ES cell-derived cardiomyocytes, smooth muscle cells, vascular endothelial cells, and hematopoietic cells were readily recognized by their distinctive morphologies coupled with unique activities, allowing efficient screening for clones with trapped genes expressed in cardiovascular lineages. Applying G418 selection in parallel differentiation cultures further increas...
Summary: We describe a multistep method for endogenous tagging of transcriptionally silent genes in ...
We have established a CGR8 embryonic stem (ES) cell clone (MLC2ECFP) which expresses the enhanced cy...
AbstractHuman embryonic stem (ES) cells are pluripotent cell lines that have been derived from the i...
We have developed a gene trap vector that transduces an EGFP-neo fusion gene (Eno) to monitor the ex...
AbstractWe have developed anin vitrogene trap screen for novel murine genes that allows one to deter...
We have developed a large-scale, expression-based gene trap strategy to perform genome-wide function...
Objective To label embryonic stem (ES) cells with enhanced green fluorescent protein (EGFP) on the h...
Human embryonic stem (HuES) cells represent a new potential tool for cell-therapy and gene-therapy a...
Abstract Background The mechanism involved in the maintenance and differentiation of embryonic stem ...
The differentiation of pluripotent stem cells involves transition through a series of specific cell ...
<div><p>The differentiation of pluripotent stem cells involves transition through a series of specif...
International audienceEmbryonic stem (ES) cells are pluripotent cells derived from blastocyst-stage ...
The differentiation of pluripotent stem cells involves transition through a series of specific cell ...
We have used different gene trap vectors and in vitro preselection of embryonic stem (ES) cells for ...
It is critical to gain knowledge in the underlying mechanisms that control human cardiovascular de...
Summary: We describe a multistep method for endogenous tagging of transcriptionally silent genes in ...
We have established a CGR8 embryonic stem (ES) cell clone (MLC2ECFP) which expresses the enhanced cy...
AbstractHuman embryonic stem (ES) cells are pluripotent cell lines that have been derived from the i...
We have developed a gene trap vector that transduces an EGFP-neo fusion gene (Eno) to monitor the ex...
AbstractWe have developed anin vitrogene trap screen for novel murine genes that allows one to deter...
We have developed a large-scale, expression-based gene trap strategy to perform genome-wide function...
Objective To label embryonic stem (ES) cells with enhanced green fluorescent protein (EGFP) on the h...
Human embryonic stem (HuES) cells represent a new potential tool for cell-therapy and gene-therapy a...
Abstract Background The mechanism involved in the maintenance and differentiation of embryonic stem ...
The differentiation of pluripotent stem cells involves transition through a series of specific cell ...
<div><p>The differentiation of pluripotent stem cells involves transition through a series of specif...
International audienceEmbryonic stem (ES) cells are pluripotent cells derived from blastocyst-stage ...
The differentiation of pluripotent stem cells involves transition through a series of specific cell ...
We have used different gene trap vectors and in vitro preselection of embryonic stem (ES) cells for ...
It is critical to gain knowledge in the underlying mechanisms that control human cardiovascular de...
Summary: We describe a multistep method for endogenous tagging of transcriptionally silent genes in ...
We have established a CGR8 embryonic stem (ES) cell clone (MLC2ECFP) which expresses the enhanced cy...
AbstractHuman embryonic stem (ES) cells are pluripotent cell lines that have been derived from the i...