Insulin-stimulated glucose uptake in skeletal muscle, adipose tissue and liver: a positron emission tomography study

Author:

Honka Miikka-Juhani1,Latva-Rasku Aino1,Bucci Marco2,Virtanen Kirsi A13,Hannukainen Jarna C1,Kalliokoski Kari K1,Nuutila Pirjo14

Affiliation:

1. 1Turku PET Centre, University of Turku, Turku, Finland

2. 2Turku PET Centre, Åbo Akademi University, Turku, Finland

3. 3Turku PET Centre, Institute of Public Health and Clinical Nutrition, University of Eastern Finland, Kuopio, Finland

4. 4Department of Endocrinology, Turku University Hospital, Turku, Finland

Abstract

Objective Insulin resistance is reflected by the rates of reduced glucose uptake (GU) into the key insulin-sensitive tissues, skeletal muscle, liver and adipose tissue. It is unclear whether insulin resistance occurs simultaneously in all these tissues or whether insulin resistance is tissue specific. Design and methods We measured GU in skeletal muscle, adipose tissue and liver and endogenous glucose production (EGP), in a single session using 18F-fluorodeoxyglucose with positron emission tomography (PET) and euglycemic–hyperinsulinemic clamp. The study population consisted of 326 subjects without diabetes from the CMgene study cohort. Results Skeletal muscle GU less than 33 µmol/kg tissue/min and subcutaneous adipose tissue GU less than 11.5 µmol/kg tissue/min characterized insulin-resistant individuals. Men had considerably worse insulin suppression of EGP compared to women. By using principal component analysis (PCA), BMI inversely and skeletal muscle, adipose tissue and liver GU positively loaded on same principal component explaining one-third of the variation in these measures. The results were largely similar when liver GU was replaced by EGP in PCA. Liver GU and EGP were positively associated with aging. Conclusions We have provided threshold values, which can be used to identify tissue-specific insulin resistance. In addition, we found that insulin resistance measured by GU was only partially similar across all insulin-sensitive tissues studied, skeletal muscle, adipose tissue and liver and was affected by obesity, aging and gender.

Publisher

Bioscientifica

Subject

Endocrinology,General Medicine,Endocrinology, Diabetes and Metabolism

Reference42 articles.

1. physiological increase in the hepatic glycogen level does not affect the response of net hepatic glucose uptake to insulin of and https org;American Journal Physiology Endocrinology Metabolism

2. Association Diagnosis and classification of diabetes mellitus Supplement;American Diabetes Diabetes Care

3. Introduction

4. The impact of organokines on insulin resistance, inflammation, and atherosclerosis;Endocrinology and Metabolism,2016

5. Graphical evaluation of blood-to-brain transfer constants from multiple-time uptake data. Generalizations;Journal of Cerebral Blood Flow and Metabolism,1985

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