© 2016 The Authors. The Journal of Physiology © 2016 The Physiological Society Key points: Hyperammonaemia occurs in hepatic, cardiac and pulmonary diseases with increased muscle concentration of ammonia. We found that ammonia results in reduced skeletal muscle mitochondrial respiration, electron transport chain complex I dysfunction, as well as lower NAD+/NADH ratio and ATP content. During hyperammonaemia, leak of electrons from complex III results in oxidative modification of proteins and lipids. Tricarboxylic acid cycle intermediates are decreased during hyperammonaemia, and providing a cell-permeable ester of αKG reversed the lower TCA cycle intermediate concentrations and increased ATP content. Our observations have high clinical relev...
AbstractThe effects of inborn oxidative phosphorylation (OXPHOS) complex deficiencies or possible ea...
In this chapter we summarize the evidence for a central role of mitochondrial dysfunction in statin-...
Patients with liver disease have reduced urea synthesis capacity resulting in reduced capacity to de...
Background. Skeletal muscle hyperammonemia occurs in cirrhosis and contributes to sarcopenia or loss...
Background. Skeletal muscle hyperammonemia occurs in cirrhosis and contributes to sarcopenia or loss...
Studies from the last decades indicate that increased levels of ammonia contribute to muscle wasting...
Ammonia is an essential intermediate of a number of metabolic pathways in the body, from the mainten...
Hyperammonaemia and hyperethanolaemia are thought to be driving factors behind skeletal muscle myopa...
Hyperammonaemia and hyperethanolaemia are thought to be driving factors behind skeletal muscle myopa...
Hyperammonaemia and hyperethanolaemia are thought to be driving factors behind skeletal muscle myopa...
BACKGROUND/AIMS: It has been proposed that, in acute liver failure, skeletal muscle adapts to become...
Hyperammonaemia and hyperethanolaemia are thought to be driving factors behind skeletal muscle myopa...
Neuromuscular diseases (NMDs) are dysfunctions that involve skeletal muscle and cause incorrect comm...
© 2019 Elsevier Inc. Protein synthesis and autophagy are regulated by cellular ATP content. We teste...
Patients with liver disease have reduced urea synthesis capacity resulting in reduced capacity to de...
AbstractThe effects of inborn oxidative phosphorylation (OXPHOS) complex deficiencies or possible ea...
In this chapter we summarize the evidence for a central role of mitochondrial dysfunction in statin-...
Patients with liver disease have reduced urea synthesis capacity resulting in reduced capacity to de...
Background. Skeletal muscle hyperammonemia occurs in cirrhosis and contributes to sarcopenia or loss...
Background. Skeletal muscle hyperammonemia occurs in cirrhosis and contributes to sarcopenia or loss...
Studies from the last decades indicate that increased levels of ammonia contribute to muscle wasting...
Ammonia is an essential intermediate of a number of metabolic pathways in the body, from the mainten...
Hyperammonaemia and hyperethanolaemia are thought to be driving factors behind skeletal muscle myopa...
Hyperammonaemia and hyperethanolaemia are thought to be driving factors behind skeletal muscle myopa...
Hyperammonaemia and hyperethanolaemia are thought to be driving factors behind skeletal muscle myopa...
BACKGROUND/AIMS: It has been proposed that, in acute liver failure, skeletal muscle adapts to become...
Hyperammonaemia and hyperethanolaemia are thought to be driving factors behind skeletal muscle myopa...
Neuromuscular diseases (NMDs) are dysfunctions that involve skeletal muscle and cause incorrect comm...
© 2019 Elsevier Inc. Protein synthesis and autophagy are regulated by cellular ATP content. We teste...
Patients with liver disease have reduced urea synthesis capacity resulting in reduced capacity to de...
AbstractThe effects of inborn oxidative phosphorylation (OXPHOS) complex deficiencies or possible ea...
In this chapter we summarize the evidence for a central role of mitochondrial dysfunction in statin-...
Patients with liver disease have reduced urea synthesis capacity resulting in reduced capacity to de...