Obesity, sedentary lifestyle and aging are associated with mitochondrial dysfunction and impaired insulin sensitivity. Acute exercise increases insulin sensitivity in skeletal muscle; however, whether mitochondria are involved in these processes remains unclear. The aim of this study was to investigate the effects of insulin stimulation at rest and after acute exercise on skeletal muscle mitochondrial respiratory function (JO2) and hydrogen peroxide emission (JH2O2), and the associations with insulin sensitivity in obese, sedentary men. Nine men (means ± SD: 57 ± 6 years; BMI 33 ± 5 kg.m2) underwent hyperinsulinemic-euglycemic clamps in two separate trials 1–3 weeks apart: one under resting conditions, and another 1 hour after high-intensit...
A high-fat diet leads to an accumulation of lipid in skeletal muscle, and the development of both mi...
Extracted text; Considerable debate exists about whether alterations in mitochondrial respiratory ca...
Obesity-linked insulin resistance is mainly due to fatty acid overload in non-adipose tissues, parti...
Obesity, sedentary lifestyle and aging are associated with mitochondrial dysfunction and impaired in...
Mitochondrial H2O2 has been causally linked to diet-induced insulin resistance, although it remains ...
Metabolic stresses associated with disease, ageing, and exercise increase the levels of reactive oxy...
KEY POINTS: We determined if bed rest increased mitochondrially derived reactive oxygen species and ...
CONTEXT: Exercise training improves glycemic control and increases mitochondrial content and respira...
<div><p>Lower skeletal muscle mitochondrial oxidative phosphorylation capacity (OXPHOS) and intramyo...
International audienceAims/hypothesis Physical inactivity has broad implications forhuman disease in...
The skeletal muscle in our body is a major site for bioenergetics and metabolism during exercise. Ca...
Background: Obesity and aging are associated with increased oxidative stress, activation of stress a...
Lower skeletal muscle mitochondrial oxidative phosphorylation capacity (OXPHOS) and intramyocellular...
ABSTRACTThe skeletal muscle in our body is a major site for bioenergetics and metabolism during exer...
It remains unclear whether high-intensity interval exercise (HIIE) elicits distinct molecular respon...
A high-fat diet leads to an accumulation of lipid in skeletal muscle, and the development of both mi...
Extracted text; Considerable debate exists about whether alterations in mitochondrial respiratory ca...
Obesity-linked insulin resistance is mainly due to fatty acid overload in non-adipose tissues, parti...
Obesity, sedentary lifestyle and aging are associated with mitochondrial dysfunction and impaired in...
Mitochondrial H2O2 has been causally linked to diet-induced insulin resistance, although it remains ...
Metabolic stresses associated with disease, ageing, and exercise increase the levels of reactive oxy...
KEY POINTS: We determined if bed rest increased mitochondrially derived reactive oxygen species and ...
CONTEXT: Exercise training improves glycemic control and increases mitochondrial content and respira...
<div><p>Lower skeletal muscle mitochondrial oxidative phosphorylation capacity (OXPHOS) and intramyo...
International audienceAims/hypothesis Physical inactivity has broad implications forhuman disease in...
The skeletal muscle in our body is a major site for bioenergetics and metabolism during exercise. Ca...
Background: Obesity and aging are associated with increased oxidative stress, activation of stress a...
Lower skeletal muscle mitochondrial oxidative phosphorylation capacity (OXPHOS) and intramyocellular...
ABSTRACTThe skeletal muscle in our body is a major site for bioenergetics and metabolism during exer...
It remains unclear whether high-intensity interval exercise (HIIE) elicits distinct molecular respon...
A high-fat diet leads to an accumulation of lipid in skeletal muscle, and the development of both mi...
Extracted text; Considerable debate exists about whether alterations in mitochondrial respiratory ca...
Obesity-linked insulin resistance is mainly due to fatty acid overload in non-adipose tissues, parti...