Apoptosis has been implicated in the regulation of denervation-induced muscle atrophy. However, the activation of apoptotic signal transduction during muscle denervation has not been fully elucidated. The present study examined the apoptotic responses to denervation in rat gastrocnemius muscle. Following 14 days of denervation, the extent of apoptotic DNA fragmentation as determined by a cytosolic nucleosome ELISA was increased by 100% in the gastrocnemius muscle. RT-PCR and immunoblot analyses indicated that Bax was dramatically upregulated while Bcl-2 was modestly increased; however, the Bax/Bcl-2 ratio was significantly increased in denervated muscles relative to control muscles. Analyses of ELISA and immunoblots from mitochondria-free c...
Denervation leads to the activation of the catabolic pathways, such as the ubiquitin-proteasome and ...
Inhibitors of differentiation (Id) proteins are repressors of myogenic regulatory factors and have b...
Inhibitors of differentiation (Id) proteins are repressors of myogenic regulatory factors and have b...
Apoptosis has been implicated in mediating denervation-induced muscle wasting. In this study we dete...
Apoptosis is a tightly regulated biological process that plays an important role in coordinating cel...
Apoptosis is a well-conserved cellular destructive event which has been implicated in a variety of d...
Denervation of skeletal muscle is followed by the progressive loss of tissue mass and impairment of ...
Apoptosis is a well-conserved cellular destructive event which has been implicated in a variety of d...
Apoptosis occurs in normal tissues and in many pathological conditions, and is regulated by a variet...
Critical illness myopathy (CIM) is associated with severe muscle atrophy and fatigue in affected pat...
This brief review discusses an exciting area in skeletal muscle research, namely the role of apoptos...
In mononuclear cells, apoptosis leads to DNA fragmentation and cell destruction, regardless of the a...
Denervation results in a series of changes in skeletal muscle. To elucidate the molecular basis unde...
Apoptosis is necessary for maintaining the integrity of proliferative tissues, such as epithelial ce...
Apoptosis is necessary for maintaining the integrity of proliferative tissues, such as epithelial ce...
Denervation leads to the activation of the catabolic pathways, such as the ubiquitin-proteasome and ...
Inhibitors of differentiation (Id) proteins are repressors of myogenic regulatory factors and have b...
Inhibitors of differentiation (Id) proteins are repressors of myogenic regulatory factors and have b...
Apoptosis has been implicated in mediating denervation-induced muscle wasting. In this study we dete...
Apoptosis is a tightly regulated biological process that plays an important role in coordinating cel...
Apoptosis is a well-conserved cellular destructive event which has been implicated in a variety of d...
Denervation of skeletal muscle is followed by the progressive loss of tissue mass and impairment of ...
Apoptosis is a well-conserved cellular destructive event which has been implicated in a variety of d...
Apoptosis occurs in normal tissues and in many pathological conditions, and is regulated by a variet...
Critical illness myopathy (CIM) is associated with severe muscle atrophy and fatigue in affected pat...
This brief review discusses an exciting area in skeletal muscle research, namely the role of apoptos...
In mononuclear cells, apoptosis leads to DNA fragmentation and cell destruction, regardless of the a...
Denervation results in a series of changes in skeletal muscle. To elucidate the molecular basis unde...
Apoptosis is necessary for maintaining the integrity of proliferative tissues, such as epithelial ce...
Apoptosis is necessary for maintaining the integrity of proliferative tissues, such as epithelial ce...
Denervation leads to the activation of the catabolic pathways, such as the ubiquitin-proteasome and ...
Inhibitors of differentiation (Id) proteins are repressors of myogenic regulatory factors and have b...
Inhibitors of differentiation (Id) proteins are repressors of myogenic regulatory factors and have b...