Skeletal muscle is a highly adaptive tissue, capable of altering muscle fiber size, functional capacity and metabolism in response to physiological stimuli. However, pathological conditions such as cancer growth compromise the mechanisms that regulate muscle homeostasis, resulting in loss of muscle mass, functional impairment and compromised metabolism. This tumor-induced condition is characterized by enhanced muscle protein breakdown and amino acids release that sustain liver gluconeogenesis and tissue protein synthesis. Proteolysis is controlled by the two most important cellular degradation systems, the ubiquitin proteasome and autophagy lysosome. These systems are carefully regulated by different signalling pathways that determine prote...
Loss of skeletal muscle is a major factor in the poor survival of patients with cancer cachexia. Thi...
Cachexia is a muscle-wasting syndrome that contributes significantly to morbidity and mortality of m...
Alterations in amino acid and protein metabolism particularly in skeletal muscle are a key feature o...
Muscle protein wasting in cancer cachexia is a critical problem. The underlying mechanisms are still...
Muscle protein wasting in cancer cachexia is a critical problem. The underlying mechanisms are still...
Cancer cachexia is a complex wasting condition associated with the loss of skeletal muscle and fat m...
Background: Cancer cachexia occurs in approximately 80% of cancer patients and is a key contributor ...
Abstract Background Cancer cachexia occurs in approximately 80% of cancer patients and is a key cont...
Muscle protein degradation is thought to play a major role in muscle atrophy in cancer cachexia. To ...
The ubiquitin-proteasome proteolytic pathway plays a major role in degradation of myofibrillar prote...
Skeletal muscle adapts its mass as consequence of physical activity, metabolism and hormones. Catabo...
BACKGROUND: Experimental models of cancer cachexia have indicated that inflammation induces muscle-p...
AbstractSkeletal muscle adapts its mass as consequence of physical activity, metabolism and hormones...
Cancer cachexia is a debilitating paraneoplastic disease commonly seen in patients with advanced can...
Physical activity is, among other things, characterized by an increased quality of life and several ...
Loss of skeletal muscle is a major factor in the poor survival of patients with cancer cachexia. Thi...
Cachexia is a muscle-wasting syndrome that contributes significantly to morbidity and mortality of m...
Alterations in amino acid and protein metabolism particularly in skeletal muscle are a key feature o...
Muscle protein wasting in cancer cachexia is a critical problem. The underlying mechanisms are still...
Muscle protein wasting in cancer cachexia is a critical problem. The underlying mechanisms are still...
Cancer cachexia is a complex wasting condition associated with the loss of skeletal muscle and fat m...
Background: Cancer cachexia occurs in approximately 80% of cancer patients and is a key contributor ...
Abstract Background Cancer cachexia occurs in approximately 80% of cancer patients and is a key cont...
Muscle protein degradation is thought to play a major role in muscle atrophy in cancer cachexia. To ...
The ubiquitin-proteasome proteolytic pathway plays a major role in degradation of myofibrillar prote...
Skeletal muscle adapts its mass as consequence of physical activity, metabolism and hormones. Catabo...
BACKGROUND: Experimental models of cancer cachexia have indicated that inflammation induces muscle-p...
AbstractSkeletal muscle adapts its mass as consequence of physical activity, metabolism and hormones...
Cancer cachexia is a debilitating paraneoplastic disease commonly seen in patients with advanced can...
Physical activity is, among other things, characterized by an increased quality of life and several ...
Loss of skeletal muscle is a major factor in the poor survival of patients with cancer cachexia. Thi...
Cachexia is a muscle-wasting syndrome that contributes significantly to morbidity and mortality of m...
Alterations in amino acid and protein metabolism particularly in skeletal muscle are a key feature o...