Skeletal muscle development occurs asynchronously and it has been proposed to be dependent upon the generation of temporally distinct populations of myogenic cells. This long-held hypothesis has not been tested directly due to the inability to isolate and analyze purified populations of myoblasts derived from specific stages of prenatal development. Using a mouse strain with the GFP reporter gene targeted into the Myf5 locus, a cell-sorting method was developed for isolating embryonic and fetal myoblasts. The two types of myoblasts show an intrinsic difference in fusion ability, proliferation, differentiation and response to TGF\u3b2, TPA and BMP-4 in vitro. Microarray and quantitative PCR were used to identify differentially expressed gene...
In this review we discuss the recent findings concerning the mechanisms that restrict somitic cells ...
During vertebrate development, successive phases of embryonic and fetal myogenesis lead to the forma...
Human embryonic stem cells (hESCs) have the potential to differentiate to all adult somatic cells. T...
Skeletal muscle development occurs asynchronously and it has been proposed to be dependent upon the ...
AbstractSkeletal muscle development occurs asynchronously and it has been proposed to be dependent u...
An important but largely unmet challenge in understanding the mechanisms that govern the formation o...
Human embryonic stem cell (hESC)-derived skeletal muscle progenitors (SMP)-defined as PAX7-expressin...
INTRODUCTION: The differentiation of myoblasts into skeletal muscle is accompanied by drastic change...
The development of myogenic cells is mainly determined by expression of two myogenic factors, Myf5 a...
AbstractMyf5 is a member of the muscle-specific determination genes and plays a critical role in ske...
The spatial and temporal expression pattern of the muscle regulatory gene Myf-6 (MRF4/herculin) has ...
AbstractThe four myogenic basic helix-loop-helix proteins, MyoD, myogenin, Myf-5, and MRF4, can each...
International audienceMyogenesis is a highly regulated multi-step process involving myoblast prolife...
Skeletal muscle is a heterogeneous tissue composed of individual muscle fibers, diversified in size,...
Myogenesis is initiated by myoblast differentiation and fusion to form myotubes and muscle fibres. A...
In this review we discuss the recent findings concerning the mechanisms that restrict somitic cells ...
During vertebrate development, successive phases of embryonic and fetal myogenesis lead to the forma...
Human embryonic stem cells (hESCs) have the potential to differentiate to all adult somatic cells. T...
Skeletal muscle development occurs asynchronously and it has been proposed to be dependent upon the ...
AbstractSkeletal muscle development occurs asynchronously and it has been proposed to be dependent u...
An important but largely unmet challenge in understanding the mechanisms that govern the formation o...
Human embryonic stem cell (hESC)-derived skeletal muscle progenitors (SMP)-defined as PAX7-expressin...
INTRODUCTION: The differentiation of myoblasts into skeletal muscle is accompanied by drastic change...
The development of myogenic cells is mainly determined by expression of two myogenic factors, Myf5 a...
AbstractMyf5 is a member of the muscle-specific determination genes and plays a critical role in ske...
The spatial and temporal expression pattern of the muscle regulatory gene Myf-6 (MRF4/herculin) has ...
AbstractThe four myogenic basic helix-loop-helix proteins, MyoD, myogenin, Myf-5, and MRF4, can each...
International audienceMyogenesis is a highly regulated multi-step process involving myoblast prolife...
Skeletal muscle is a heterogeneous tissue composed of individual muscle fibers, diversified in size,...
Myogenesis is initiated by myoblast differentiation and fusion to form myotubes and muscle fibres. A...
In this review we discuss the recent findings concerning the mechanisms that restrict somitic cells ...
During vertebrate development, successive phases of embryonic and fetal myogenesis lead to the forma...
Human embryonic stem cells (hESCs) have the potential to differentiate to all adult somatic cells. T...