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Sarcopenia: Ammonia metabolism and hepatic encephalopathy
by
Jindal, Ankur
, Jagdish, Rakesh Kumar
in
Amino acids
/ Ammonia
/ Autophagy
/ Cytokines
/ Enzymes
/ Hepatic encephalopathy
/ Insulin
/ Insulin-like growth factors
/ Kinases
/ Liver cirrhosis
/ Liver diseases
/ Liver transplants
/ Metabolism
/ Mortality
/ Musculoskeletal system
/ Pathophysiology
/ Protein synthesis
/ Proteins
/ Reactive oxygen species
/ Review
/ Sarcopenia
/ Testosterone
/ Tumor necrosis factor-TNF
/ 내과학
2019
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Sarcopenia: Ammonia metabolism and hepatic encephalopathy
by
Jindal, Ankur
, Jagdish, Rakesh Kumar
in
Amino acids
/ Ammonia
/ Autophagy
/ Cytokines
/ Enzymes
/ Hepatic encephalopathy
/ Insulin
/ Insulin-like growth factors
/ Kinases
/ Liver cirrhosis
/ Liver diseases
/ Liver transplants
/ Metabolism
/ Mortality
/ Musculoskeletal system
/ Pathophysiology
/ Protein synthesis
/ Proteins
/ Reactive oxygen species
/ Review
/ Sarcopenia
/ Testosterone
/ Tumor necrosis factor-TNF
/ 내과학
2019
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Sarcopenia: Ammonia metabolism and hepatic encephalopathy
by
Jindal, Ankur
, Jagdish, Rakesh Kumar
in
Amino acids
/ Ammonia
/ Autophagy
/ Cytokines
/ Enzymes
/ Hepatic encephalopathy
/ Insulin
/ Insulin-like growth factors
/ Kinases
/ Liver cirrhosis
/ Liver diseases
/ Liver transplants
/ Metabolism
/ Mortality
/ Musculoskeletal system
/ Pathophysiology
/ Protein synthesis
/ Proteins
/ Reactive oxygen species
/ Review
/ Sarcopenia
/ Testosterone
/ Tumor necrosis factor-TNF
/ 내과학
2019
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Journal Article
Sarcopenia: Ammonia metabolism and hepatic encephalopathy
2019
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Overview
Sarcopenia (loss of muscle mass and/or strength) frequently complicates liver cirrhosis and adversely affects the quality of life; cirrhosis related liver decompensation and significantly decreases wait-list and post-liver transplantation survival. The main therapeutic strategies to improve or reverse sarcopenia include dietary interventions (supplemental calorie and protein intake), increased physical activity (supervised resistance and endurance exercises), hormonal therapy (testosterone), and ammonia lowering agents (L-ornithine L-aspartate, branch chain amino acids) as well as mechanistic approaches that target underlying molecular and metabolic abnormalities. Besides other factors, hyperammonemia has recently gained attention and increase sarcopenia by various mechanisms including increased expression of myostatin, increased phosphorylation of eukaryotic initiation factor 2a, cataplerosis of α ketoglutarate, mitochondrial dysfunction, increased reactive oxygen species that decrease protein synthesis and increased autophagy-mediated proteolysis. Sarcopenia contributes to frailty and increases the risk of minimal and overt hepatic encephalopathy.
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