Abstract Background Muscle atrophy and weakness are adverse effects of high dose or the sustained usage of glucocorticoids. Loss of mitochondria and degradation of protein are highly correlated with muscle dysfunction. The deacetylase sirtuin 1 (SIRT1) plays a vital role in muscle remodelling. The current study was designed to identify myricanol as a SIRT1 activator, which could protect skeletal muscle against dexamethasone‐induced wasting. Methods The dexamethasone‐induced atrophy in C2C12 myotubes was evaluated by expression of myosin heavy chain, muscle atrophy F‐box (atrogin‐1), and muscle ring finger 1 (MuRF1), using western blots. The mitochondrial content and oxygen consumption were assessed by MitoTracker staining and extracellular ...
Muscle plasticity is a key element in human health and disease. Exercise is an important element tha...
Skeletal muscle atrophy results from various conditions including high levels of glucocorticoids, an...
Dexamethasone-induced muscle atrophy is due to an increase in protein breakdown and a decrease in pr...
Background/Aims: Skeletal muscle atrophy is an important health issue and can impose tremendous econ...
The proteolytic autophagy system is involved in a major regulatory pathway in dexamethasone (Dex)-in...
Increasing size and strength of skeletal muscle represents a promising therapeutic strategy for musc...
SummarySkeletal muscle atrophy occurs as a side effect of treatment with synthetic glucocorticoids s...
Glucocorticoids mediate muscle atrophy in many catabolic states. Myostatin expression, a negative re...
Glucocorticoids are the drugs most commonly used to manage inflammatory diseases. However, they are ...
High levels of glucocorticoids result in muscle wasting and weakness. β-hydroxy-β-methylbutyrate (HM...
Skeletal muscle atrophy occurs as a side effect of treatment with synthetic glucocorticoids such as ...
SIRT1 is a metabolic sensor and regulator in various mammalian tissues and functions to counteract m...
Glucocorticoids mediate muscle atrophy in many catabolic states. Myostatin expression, a negative re...
<div><p>Dexamethasone-induced muscle atrophy is due to an increase in protein breakdown and a decrea...
Myostatin, a member of the TGF-β superfamily of secreted proteins, is expressed primarily in skeleta...
Muscle plasticity is a key element in human health and disease. Exercise is an important element tha...
Skeletal muscle atrophy results from various conditions including high levels of glucocorticoids, an...
Dexamethasone-induced muscle atrophy is due to an increase in protein breakdown and a decrease in pr...
Background/Aims: Skeletal muscle atrophy is an important health issue and can impose tremendous econ...
The proteolytic autophagy system is involved in a major regulatory pathway in dexamethasone (Dex)-in...
Increasing size and strength of skeletal muscle represents a promising therapeutic strategy for musc...
SummarySkeletal muscle atrophy occurs as a side effect of treatment with synthetic glucocorticoids s...
Glucocorticoids mediate muscle atrophy in many catabolic states. Myostatin expression, a negative re...
Glucocorticoids are the drugs most commonly used to manage inflammatory diseases. However, they are ...
High levels of glucocorticoids result in muscle wasting and weakness. β-hydroxy-β-methylbutyrate (HM...
Skeletal muscle atrophy occurs as a side effect of treatment with synthetic glucocorticoids such as ...
SIRT1 is a metabolic sensor and regulator in various mammalian tissues and functions to counteract m...
Glucocorticoids mediate muscle atrophy in many catabolic states. Myostatin expression, a negative re...
<div><p>Dexamethasone-induced muscle atrophy is due to an increase in protein breakdown and a decrea...
Myostatin, a member of the TGF-β superfamily of secreted proteins, is expressed primarily in skeleta...
Muscle plasticity is a key element in human health and disease. Exercise is an important element tha...
Skeletal muscle atrophy results from various conditions including high levels of glucocorticoids, an...
Dexamethasone-induced muscle atrophy is due to an increase in protein breakdown and a decrease in pr...