Open access · OA
via OpenAlex
Dysfunction of Mitochondria in Human Skeletal Muscle in Type 2 Diabetes
David E. Kelley, Jing He, Elizabeth V. Menshikova, Vladimir B. Ritov
Diabetes · 2002 · ▲ 2,313 citations
Abstract
Skeletal muscle is strongly dependent on oxidative phosphorylation for energy production. Because the insulin resistance of skeletal muscle in type 2 diabetes and obesity entails dysregulation of the oxidation of both carbohydrate and lipid fuels, the current study was undertaken to examine the potential contribution of perturbation of mitochondrial function. Vastus lateralis muscle was obtained by percutaneous biopsy during fasting conditions from lean (n = 10) and obese (n = 10) nondiabetic volunteers and from volunteers with type 2 diabetes (n = 10). The activity of rotenone-sensitive NADH:O(2) oxidoreductase, reflecting the overall activity of the respiratory chain, was measured in a mitochondrial fraction by a novel method based on providing access for NADH to intact mitochondria via alamethicin, a channel-forming antibiotic. Creatine kinase and citrate synthase activities were measured as markers of myocyte and mitochondria content, respectively. Activity of rotenone-sensitive NADH:O(2) oxidoreductase was normalized to creatine kinase activity, as was citrate synthase activity. NADH:O(2) oxidoreductase activity was lowest in type 2 diabetic subjects and highest in the lean volunteers (lean 0.95 +/- 0.17, obese 0.76 +/- 0.30, type 2 diabetes 0.56 +/- 0.14 units/mU creatine kinase; P < 0.005). Also, citrate synthase activity was reduced in type 2 diabetic patients (lean 3.10 +/- 0.74, obese 3.24 +/- 0.82, type 2 diabetes 2.48 +/- 0.47 units/mU creatine kinase; P < 0.005). As measured by electron microscopy, skeletal muscle mitochondria were smaller in type 2 diabetic and obese subjects than in muscle from lean volunteers (P < 0.01). We conclude that there is an impaired bioenergetic capacity of skeletal muscle mitochondria in type 2 diabetes, with some impairment also present in obesity.
◌ CITATION ONLY
Full text is not openly licensed for redistribution here. Read it at the source:
Provenance
- Source
- OpenAlex
- DOI
- 10.2337/diabetes.51.10.2944
- Canonical
- link ↗
- Fetched
- 2026-06-10 MST
Cite this
APA
Kelley, D.E., He, J., Menshikova, E.V., & Ritov, V.B. (2002). Dysfunction of Mitochondria in Human Skeletal Muscle in Type 2 Diabetes. <em>Diabetes</em>. https://doi.org/10.2337/diabetes.51.10.2944
Vancouver
Kelley DE, He J, Menshikova EV, Ritov VB. Dysfunction of Mitochondria in Human Skeletal Muscle in Type 2 Diabetes. Diabetes. 2002. doi:10.2337/diabetes.51.10.2944.
BibTeX
@article{david2002Dysfun,
title = {Dysfunction of Mitochondria in Human Skeletal Muscle in Type 2 Diabetes},
author = {David E. Kelley and Jing He and Elizabeth V. Menshikova and Vladimir B. Ritov},
journal = {Diabetes},
year = {2002},
doi = {10.2337/diabetes.51.10.2944},
}
Research neighborhood
References, citing works, and semantically nearest findings. Click a node to open it.
Related findings
Diabetologia 2007
Open access · CC-BY
Patients with type 2 diabetes have normal mitochondrial function in skeletal muscle
Cell Metabolism 2019
Open access · OA
Epigenetics in Human Obesity and Type 2 Diabetes
Biological Chemistry 2012
Open access · OA
Integration of cellular bioenergetics with mitochondrial quality control and autophagy
Frontiers in Physiology 2018
Open access · CC-BY
Acetylation of Mitochondrial Proteins in the Heart: The Role of SIRT3
Journal of Endocrinology 2016
Open access · CC-BY
Insulin resistance and sarcopenia: mechanistic links between common co-morbidities
Molecular Metabolism 2022
Open access · CC-BY