AbstractMurine embryonic stem (ES) cells can be committed to neural differentiation with high efficiency in culture through the use of feeder- and serum-free media. This system is proving to be an excellent model to study processes involved in ES cell commitment to neural cell fate. We used this approach to generate neurogenic embryoid bodies (NEBs) in a serum-free culture system to perform proteomic analysis of soluble fractions and identify early changes in protein expression as ES cells differentiate. Ten candidate proteins were altered significantly in expression levels. One of the most significant alterations was for the small heat shock protein Hsp25. Three species of Hsp25 are detected in ES cells, and this expression pattern changes...
Deriving specific neural cells from embryonic stem cells (ESCs) is a promising approach for cell rep...
SummaryThe advent of reprogramming and its impact on stem cell biology has renewed interest in linea...
BACKGROUND: Recent studies have shown that embryonic stem (ES) cells globally express most genes in ...
Murine embryonic stem (ES) cells can be committed to neural differentiation with high efficiency in ...
AbstractMurine embryonic stem (ES) cells can be committed to neural differentiation with high effici...
During recent years, increased efforts have focused on elucidating the pluripotency and self-renewal...
Gene expression analyses of embryonic stem cells (ESCs) will help to uncover or further define signa...
Directed differentiation of embryonic stem (ES) cells has enormous potential to derive a wide variet...
Understanding neurogenesis and neural cell differentiation presents a unique challenge for treatment...
Embryonic stem cells are a unique cell population capable both of self-renewal and of differentiatio...
In search for alternative methods for developmental toxicity testing, we investigated whether embryo...
Differentiation of trophoblast cells is a critical process for the proper establishment of the place...
In search for alternative methods for developmental toxicity testing, we investigated whether embryo...
Embryonic stem cells (ESCs) are of immense interest as they can proliferate indefinitely in vitro an...
Mouse embryonic brain development involves sequential differentiation of multipotent progenitors int...
Deriving specific neural cells from embryonic stem cells (ESCs) is a promising approach for cell rep...
SummaryThe advent of reprogramming and its impact on stem cell biology has renewed interest in linea...
BACKGROUND: Recent studies have shown that embryonic stem (ES) cells globally express most genes in ...
Murine embryonic stem (ES) cells can be committed to neural differentiation with high efficiency in ...
AbstractMurine embryonic stem (ES) cells can be committed to neural differentiation with high effici...
During recent years, increased efforts have focused on elucidating the pluripotency and self-renewal...
Gene expression analyses of embryonic stem cells (ESCs) will help to uncover or further define signa...
Directed differentiation of embryonic stem (ES) cells has enormous potential to derive a wide variet...
Understanding neurogenesis and neural cell differentiation presents a unique challenge for treatment...
Embryonic stem cells are a unique cell population capable both of self-renewal and of differentiatio...
In search for alternative methods for developmental toxicity testing, we investigated whether embryo...
Differentiation of trophoblast cells is a critical process for the proper establishment of the place...
In search for alternative methods for developmental toxicity testing, we investigated whether embryo...
Embryonic stem cells (ESCs) are of immense interest as they can proliferate indefinitely in vitro an...
Mouse embryonic brain development involves sequential differentiation of multipotent progenitors int...
Deriving specific neural cells from embryonic stem cells (ESCs) is a promising approach for cell rep...
SummaryThe advent of reprogramming and its impact on stem cell biology has renewed interest in linea...
BACKGROUND: Recent studies have shown that embryonic stem (ES) cells globally express most genes in ...