New findingsWhat is the central question of this study? Does improved metabolic health and insulin sensitivity following a weight-loss and fitness intervention in sedentary, obese women alter exercise-associated fuel metabolism and incomplete mitochondrial fatty acid oxidation (FAO), as tracked by blood acylcarnitine patterns? What is the main finding and its importance? Despite improved fitness and blood sugar control, indices of incomplete mitochondrial FAO increased in a similar manner in response to a fixed load acute exercise bout; this indicates that intramitochondrial muscle FAO is inherently inefficient and is tethered directly to ATP turnover. With insulin resistance or type 2 diabetes mellitus, mismatches between mitochondrial fat...
We investigated the link between enhancement of insulin sensitivity (SI) (by hyperinsulinemic-euglyc...
Fat and carbohydrate are the primary fuel sources for mitochondrial ATP production in human skeletal...
AIMS/HYPOTHESIS: Mitochondrial dysfunction has been postulated to underlie muscular fat accumulation...
BACKGROUND: Exercise is an extreme physiological challenge for skeletal muscle energy metabolism and...
BACKGROUND: Exercise is an extreme physiological challenge for skeletal muscle energy metabolism and...
Skeletal muscle mitochondrial dysfunction, evidenced by incomplete beta oxidation and accumulation o...
Background: Acylcarnitine (AC) transport dysfunction into the mitochondrial matrix is one of the pat...
Skeletal muscle mitochondrial dysfunction, evidenced by incomplete beta oxidation and accumulation o...
Exercise is an extreme physiological challenge for skeletal muscle energy metabolism and has notable...
Abstract Background Acylcarnitine (AC) transport dysfunction into the mitochondrial matrix is one of...
This thesis investigated the impact of sodium acetate infusion on muscle fuel metabolism during low ...
© 2015, National Academy of Sciences. All rights reserved. The correlations between intramyocellular...
Muscle fatty acid (FA) metabolism is impaired in obesity and insulin resistance, reflected by reduce...
Aims/hypothesis: We sought to determine putative relationships among improved mitochondrial respirat...
Impaired skeletal muscle fatty acid oxidation has been suggested to contribute to insulin resistance...
We investigated the link between enhancement of insulin sensitivity (SI) (by hyperinsulinemic-euglyc...
Fat and carbohydrate are the primary fuel sources for mitochondrial ATP production in human skeletal...
AIMS/HYPOTHESIS: Mitochondrial dysfunction has been postulated to underlie muscular fat accumulation...
BACKGROUND: Exercise is an extreme physiological challenge for skeletal muscle energy metabolism and...
BACKGROUND: Exercise is an extreme physiological challenge for skeletal muscle energy metabolism and...
Skeletal muscle mitochondrial dysfunction, evidenced by incomplete beta oxidation and accumulation o...
Background: Acylcarnitine (AC) transport dysfunction into the mitochondrial matrix is one of the pat...
Skeletal muscle mitochondrial dysfunction, evidenced by incomplete beta oxidation and accumulation o...
Exercise is an extreme physiological challenge for skeletal muscle energy metabolism and has notable...
Abstract Background Acylcarnitine (AC) transport dysfunction into the mitochondrial matrix is one of...
This thesis investigated the impact of sodium acetate infusion on muscle fuel metabolism during low ...
© 2015, National Academy of Sciences. All rights reserved. The correlations between intramyocellular...
Muscle fatty acid (FA) metabolism is impaired in obesity and insulin resistance, reflected by reduce...
Aims/hypothesis: We sought to determine putative relationships among improved mitochondrial respirat...
Impaired skeletal muscle fatty acid oxidation has been suggested to contribute to insulin resistance...
We investigated the link between enhancement of insulin sensitivity (SI) (by hyperinsulinemic-euglyc...
Fat and carbohydrate are the primary fuel sources for mitochondrial ATP production in human skeletal...
AIMS/HYPOTHESIS: Mitochondrial dysfunction has been postulated to underlie muscular fat accumulation...