CONTEXT: The mechanisms responsible for dietary fat-induced insulin resistance of skeletal muscle and its microvasculature are only partially understood. OBJECTIVE: To determine the impact of high-fat overfeeding on postprandial glucose fluxes, muscle insulin signaling, and muscle microvascular eNOS content and activation. DESIGN: Fifteen non-obese volunteers consumed a high-fat (64%) high-energy (+47%) diet for 7 days. Experiments were performed before and after the diet. Stable isotope tracers were used to determine glucose fluxes in response to carbohydrate plus protein ingestion. Muscle insulin signaling was determined as well as the content and activation state of muscle microvascular eNOS. RESULTS: High-fat overfeeding impaired postpr...
Understanding human physiological responses to high‐fat energy excess (HFEE) may help combat the dev...
Obesity is undoubtedly caused by a chronic positive energy balance. However, the early metabolic an...
International audienceBACKGROUND: Increased myocardial partitioning of dietary fatty acids (DFA) and...
Context The mechanisms responsible for dietary fat-induced insulin resistance of skeletal muscle and...
BACKGROUND: Mitochondrial dysfunction and increased oxidative stress are associated with obesity and...
Objective: In mice fed a high-fat diet, impairment of insulin signaling in endothelium is an early p...
Context: In animal models of obesity, chronic inflammation and dysregulated extracellular matrix rem...
The main aim of this thesis was to increase our understanding of the metabolic responses associated ...
Background: Dietary fat quality may influence skeletal muscle lipid processing and fat accumulation,...
Context:Animal studies revealed that medium-chain fatty acids (MCFA), due to their metabolic charact...
This is the author accepted manuscript. The final version is available from Oxford University Press ...
Objective:To determine insulin sensitivity and skeletal muscle fatty acid (FA) handling at baseline ...
International audienceCONTEXT/OBJECTIVE: The aim of this study was to evaluate the regulation of the...
Understanding human physiological responses to high‐fat energy excess (HFEE) may help combat the dev...
Obesity is undoubtedly caused by a chronic positive energy balance. However, the early metabolic an...
International audienceBACKGROUND: Increased myocardial partitioning of dietary fatty acids (DFA) and...
Context The mechanisms responsible for dietary fat-induced insulin resistance of skeletal muscle and...
BACKGROUND: Mitochondrial dysfunction and increased oxidative stress are associated with obesity and...
Objective: In mice fed a high-fat diet, impairment of insulin signaling in endothelium is an early p...
Context: In animal models of obesity, chronic inflammation and dysregulated extracellular matrix rem...
The main aim of this thesis was to increase our understanding of the metabolic responses associated ...
Background: Dietary fat quality may influence skeletal muscle lipid processing and fat accumulation,...
Context:Animal studies revealed that medium-chain fatty acids (MCFA), due to their metabolic charact...
This is the author accepted manuscript. The final version is available from Oxford University Press ...
Objective:To determine insulin sensitivity and skeletal muscle fatty acid (FA) handling at baseline ...
International audienceCONTEXT/OBJECTIVE: The aim of this study was to evaluate the regulation of the...
Understanding human physiological responses to high‐fat energy excess (HFEE) may help combat the dev...
Obesity is undoubtedly caused by a chronic positive energy balance. However, the early metabolic an...
International audienceBACKGROUND: Increased myocardial partitioning of dietary fatty acids (DFA) and...