Context: Mitochondrial dysfunction has been proposed as an underlying mechanism in the pathogenesis of insulin resistance and type 2 diabetes mellitus. Objective: To determine whether mitochondrial dysfunction plays a role in the free fatty acid (FFA)-induced impairment in insulin action in skeletal muscle of healthy subjects. Design: Eleven lean normal glucose tolerant individuals received 8 h lipid and saline infusion on separate days with a euglycemic insulin clamp during the last 2 h. Vastus lateralis muscle biopsies were performed at baseline and after 6 h lipid or saline infusion. Inner mitochondrial membrane potential (\u3c8m) and mitochondrial mass were determined ex vivo by confocal microscopy. Results: Compared with saline infusio...
Mitochondrial dysfunction in skeletal muscle has been suggested to underlie the development of insul...
Aims/hypothesis: Physical inactivity, low mitochondrial function, increased intramyocellular lipid (...
Context: Type 2 familial partial lipodystrophy (FPLD) is an autosomal-dominant lamin A/C-related dis...
OBJECTIVE-Type 2 diabetes and insulin resistance have been associated with mitochondrial dysfunction...
Insulin resistance condition is associated to the development of several syndromes, such as obesity,...
Context: First-degree relatives of patients with type 2 diabetes (FH+) have been shown to have decre...
Context:Animal studies revealed that medium-chain fatty acids (MCFA), due to their metabolic charact...
Increased plasma levels of free fatty acids (FFA) occur in states of insulin resistance such as obes...
BACKGROUND: Sustained fuel excess triggers low-grade inflammation that can drive mitochondrial dysfu...
Background: Sustained fuel excess triggers low-grade inflammation that can drive mitochondrial dysfu...
Context:Conflicting data exist on mitochondrial function and physical activity in type 2 diabetes me...
International audienceCONTEXT/OBJECTIVE: The aim of this study was to evaluate the regulation of the...
Skeletal muscle insulin resistance is a key contributor to the pathophysiology of type 2 diabetes. R...
Insulin resistance, “a relative impairment in the ability of insulin to exert its effects on glucose...
Mitochondrial dysfunction in skeletal muscle has been suggested to underlie the development of insul...
Aims/hypothesis: Physical inactivity, low mitochondrial function, increased intramyocellular lipid (...
Context: Type 2 familial partial lipodystrophy (FPLD) is an autosomal-dominant lamin A/C-related dis...
OBJECTIVE-Type 2 diabetes and insulin resistance have been associated with mitochondrial dysfunction...
Insulin resistance condition is associated to the development of several syndromes, such as obesity,...
Context: First-degree relatives of patients with type 2 diabetes (FH+) have been shown to have decre...
Context:Animal studies revealed that medium-chain fatty acids (MCFA), due to their metabolic charact...
Increased plasma levels of free fatty acids (FFA) occur in states of insulin resistance such as obes...
BACKGROUND: Sustained fuel excess triggers low-grade inflammation that can drive mitochondrial dysfu...
Background: Sustained fuel excess triggers low-grade inflammation that can drive mitochondrial dysfu...
Context:Conflicting data exist on mitochondrial function and physical activity in type 2 diabetes me...
International audienceCONTEXT/OBJECTIVE: The aim of this study was to evaluate the regulation of the...
Skeletal muscle insulin resistance is a key contributor to the pathophysiology of type 2 diabetes. R...
Insulin resistance, “a relative impairment in the ability of insulin to exert its effects on glucose...
Mitochondrial dysfunction in skeletal muscle has been suggested to underlie the development of insul...
Aims/hypothesis: Physical inactivity, low mitochondrial function, increased intramyocellular lipid (...
Context: Type 2 familial partial lipodystrophy (FPLD) is an autosomal-dominant lamin A/C-related dis...