Muscle growth during embryogenesis is the result of a balance between the proliferation of myoblasts and their differentiation into mature, contractile fibers. Fibroblast growth factors (FGFs) are potent stimulators of myoblast proliferation and inhibitors of myoblast differentiationin vitro.However, it is not clear at present if FGFs and their receptors regulate this processin vivo,partially because no FGF receptor was known to be expressed by myoblasts during embryogenesis. In this study, we have used quail/chick grafting and BrdU labeling techniques to demonstrate that a recently cloned avian FGF receptor, FREK, is expressed by replicating skeletal muscle myoblasts, while differentiated muscle cells no longer express this receptor. In th...
<div><p>A number of growth factors determine the proliferation of myoblasts and therefore the number...
AbstractLimb muscles of vertebrates are derived from migratory dermomyotomal cells which emanate fro...
AbstractThe identities of extracellular growth factors that regulate skeletal muscle development in ...
AbstractMuscle growth during embryogenesis is the result of a balance between the proliferation of m...
AbstractMuscle growth during embryogenesis is the result of a balance between the proliferation of m...
AbstractSkeletal muscle development involves an initial period of myoblast replication followed by a...
Analysis of whether Fibroblast Growth Factors (FGFs) are important regulators of myoblast developmen...
AbstractSkeletal muscle development involves an initial period of myoblast replication followed by a...
The eighteen members of the FGF family are expressed in a specific spatiotemporal pattern during dev...
Skeletal muscle development can be modeled using primary myocytes or established myocyte lines. Thes...
Skeletal muscle development can be modeled using primary myocytes or established myocyte lines. Thes...
Limb muscles derive from pax3 expressing precursor cells that migrate from the hypaxial somite into ...
Limb muscles derive from pax3 expressing precursor cells that migrate from the hypaxial somite into ...
In vertebrates, muscle precursor cells delaminate and migrate from the somites into the limb, where ...
A number of growth factors determine the proliferation of myoblasts and therefore the number of ulti...
<div><p>A number of growth factors determine the proliferation of myoblasts and therefore the number...
AbstractLimb muscles of vertebrates are derived from migratory dermomyotomal cells which emanate fro...
AbstractThe identities of extracellular growth factors that regulate skeletal muscle development in ...
AbstractMuscle growth during embryogenesis is the result of a balance between the proliferation of m...
AbstractMuscle growth during embryogenesis is the result of a balance between the proliferation of m...
AbstractSkeletal muscle development involves an initial period of myoblast replication followed by a...
Analysis of whether Fibroblast Growth Factors (FGFs) are important regulators of myoblast developmen...
AbstractSkeletal muscle development involves an initial period of myoblast replication followed by a...
The eighteen members of the FGF family are expressed in a specific spatiotemporal pattern during dev...
Skeletal muscle development can be modeled using primary myocytes or established myocyte lines. Thes...
Skeletal muscle development can be modeled using primary myocytes or established myocyte lines. Thes...
Limb muscles derive from pax3 expressing precursor cells that migrate from the hypaxial somite into ...
Limb muscles derive from pax3 expressing precursor cells that migrate from the hypaxial somite into ...
In vertebrates, muscle precursor cells delaminate and migrate from the somites into the limb, where ...
A number of growth factors determine the proliferation of myoblasts and therefore the number of ulti...
<div><p>A number of growth factors determine the proliferation of myoblasts and therefore the number...
AbstractLimb muscles of vertebrates are derived from migratory dermomyotomal cells which emanate fro...
AbstractThe identities of extracellular growth factors that regulate skeletal muscle development in ...