AIMS/HYPOTHESIS: Mitochondrial dysfunction has been postulated to underlie muscular fat accumulation, leading to muscular insulin sensitivity and ultimately type 2 diabetes mellitus. Here we re-interpret previously published data on [(13)C]acetate recovery in breath gas obtained during exercise in type 2 diabetic patients and control individuals. METHODS: When infusing [(13)C]palmitate to estimate fat oxidation, part of the label is lost in exchange reactions of the tricarboxylic acid (TCA) cycle. To correct for this loss of label, an acetate recovery factor (ARF) has previously been used, assuming that 100% of the exogenously provided acetate will enter the TCA cycle. The recovery of acetate in breath gas depends on the TCA cycle activity,...
International audienceInsulin resistance in type 2 diabetes (T2D) is associated with intramuscular l...
OBJECTIVE-Mitochondrial dysfunction and fat accumulation in skeletal muscle (increased intramyocellu...
OBJECTIVE: Several lines of evidence support a potential role of skeletal muscle mitochondrial dysfu...
AIMS/HYPOTHESIS: Mitochondrial dysfunction has been postulated to underlie muscular fat accumulation...
AIMS/HYPOTHESIS: We previously showed that type 2 diabetic patients are characterised by compromised...
Context: Conflicting data exist on mitochondrial function and physical activity in type 2 diabetes m...
AIMS/HYPOTHESIS: Disturbances in substrate source metabolism and, more particularly, in fatty acid m...
Context: Conflicting data exist on mitochondrial function and physical activity in type 2 diabetes m...
Aims/hypothesis: Mitochondrial dysfunction and increased intramyocellular lipid (IMCL) content have ...
International audienceInsulin resistance in type 2 diabetes (T2D) is associated with intramuscular l...
OBJECTIVE-Mitochondrial dysfunction and fat accumulation in skeletal muscle (increased intramyocellu...
OBJECTIVE: Several lines of evidence support a potential role of skeletal muscle mitochondrial dysfu...
AIMS/HYPOTHESIS: Mitochondrial dysfunction has been postulated to underlie muscular fat accumulation...
AIMS/HYPOTHESIS: We previously showed that type 2 diabetic patients are characterised by compromised...
Context: Conflicting data exist on mitochondrial function and physical activity in type 2 diabetes m...
AIMS/HYPOTHESIS: Disturbances in substrate source metabolism and, more particularly, in fatty acid m...
Context: Conflicting data exist on mitochondrial function and physical activity in type 2 diabetes m...
Aims/hypothesis: Mitochondrial dysfunction and increased intramyocellular lipid (IMCL) content have ...
International audienceInsulin resistance in type 2 diabetes (T2D) is associated with intramuscular l...
OBJECTIVE-Mitochondrial dysfunction and fat accumulation in skeletal muscle (increased intramyocellu...
OBJECTIVE: Several lines of evidence support a potential role of skeletal muscle mitochondrial dysfu...