Purpose of review: To describe the most relevant recent observations concerning the molecular mechanisms behind myostatin-induced muscle wasting. Recent findings: The main theme of this review is to summarize the biology and function of myostatin. Myostatin is a secreted growth factor that negatively regulates muscle growth. While inactivation of myostatin leads to muscle growth in vivo, excess levels of myostatin induces cachectic-like muscle wasting. Molecular analyses reveal that excess levels of myostatin induce Atrogin-1 expression by reducing Akt phosphorylation and thereby increasing FoxO1 activity. Recent findings have further speculated that myostatin may also play a role in cardiac cachexia. Summary: As myostatin is a potent...
Purpose of review: To highlight recent breakthroughs and controversies in the use of myoblast models...
The molecular mechanisms underlying skeletal muscle maintenance involve interplay between multiple s...
Increasing size and strength of skeletal muscle represents a promising therapeutic strategy for musc...
Myostatin was identified more than 20 years ago as a negative regulator of muscle mass in mice and c...
Myostatin, a Transforming Growth Factor-beta (TGF-β) superfamily member, has been well characterised...
PURPOSE OF REVIEW: Many situations cause muscle atrophy. When severe, muscle atrophy is associated w...
Myostatin is a member of the transforming growth factor (TGF)-β superfamily. It is expressed by anim...
# The Author(s) 2012. This article is published with open access at Springerlink.com Abstract Recent...
Cachexia in chronic heart failure (HF) is a major clinicalproblem that is still underestimated for i...
PURPOSE OF REVIEW: The review is focused on the unexpected role of myogenic regulatory factor 4 (MR...
Myostatin, a member of TGF-β superfamily, is a potent negative regulator of skeletal muscle growth a...
Copyright © 2015 Domiziana Costamagna et al.This is an open access article distributed under the Cre...
International audienceMyostatin is a member of the TGF beta family which plays a major role in negat...
PURPOSE OF REVIEW: The purpose of this study is to discuss the involvement of bone and morphogen...
Myostatin is a powerful negative regulator of skeletal muscle mass in mammalian species. It plays a ...
Purpose of review: To highlight recent breakthroughs and controversies in the use of myoblast models...
The molecular mechanisms underlying skeletal muscle maintenance involve interplay between multiple s...
Increasing size and strength of skeletal muscle represents a promising therapeutic strategy for musc...
Myostatin was identified more than 20 years ago as a negative regulator of muscle mass in mice and c...
Myostatin, a Transforming Growth Factor-beta (TGF-β) superfamily member, has been well characterised...
PURPOSE OF REVIEW: Many situations cause muscle atrophy. When severe, muscle atrophy is associated w...
Myostatin is a member of the transforming growth factor (TGF)-β superfamily. It is expressed by anim...
# The Author(s) 2012. This article is published with open access at Springerlink.com Abstract Recent...
Cachexia in chronic heart failure (HF) is a major clinicalproblem that is still underestimated for i...
PURPOSE OF REVIEW: The review is focused on the unexpected role of myogenic regulatory factor 4 (MR...
Myostatin, a member of TGF-β superfamily, is a potent negative regulator of skeletal muscle growth a...
Copyright © 2015 Domiziana Costamagna et al.This is an open access article distributed under the Cre...
International audienceMyostatin is a member of the TGF beta family which plays a major role in negat...
PURPOSE OF REVIEW: The purpose of this study is to discuss the involvement of bone and morphogen...
Myostatin is a powerful negative regulator of skeletal muscle mass in mammalian species. It plays a ...
Purpose of review: To highlight recent breakthroughs and controversies in the use of myoblast models...
The molecular mechanisms underlying skeletal muscle maintenance involve interplay between multiple s...
Increasing size and strength of skeletal muscle represents a promising therapeutic strategy for musc...