UCP1 expression in human brown adipose tissue is inversely associated with cardiometabolic risk factors

Author:

Kwok T’ng Choong1,Ramage Lynne E1,Kelman Alexandra1,Suchacki Karla J1,Gray Calum2ORCID,Boyle Luke D1,Semple Scott I12,MacGillivray Tom2,MacNaught Gillian3,Patel Dilip3,van Beek Edwin J R12,Semple Robert K1ORCID,Wakelin Sonia J4,Stimson Roland H1ORCID

Affiliation:

1. University/BHF Centre for Cardiovascular Science, University of Edinburgh, Queen's Medical Research Institute , 47 Little France Crescent, Edinburgh EH16 4TJ , United Kingdom

2. Edinburgh Imaging Facility, Queen's Medical Research Institute , 47 Little France Crescent, Edinburgh EH16 4TJ , United Kingdom

3. Department of Radiology, Royal Infirmary of Edinburgh , 51 Little France Crescent, Edinburgh EH16 4SA, Scotland , United Kingdom

4. Department of Surgery, Royal Infirmary of Edinburgh , 51 Little France Crescent, Edinburgh EH16 4SA, Scotland , United Kingdom

Abstract

Abstract Objective Brown adipose tissue (BAT) is a therapeutic target for obesity. 18F-fluorodeoxyglucose positron emission tomography (18F-FDG PET) is commonly used to quantify human BAT mass and activity. Detectable 18F-FDG uptake by BAT is associated with reduced prevalence of cardiometabolic disease. However, 18F-FDG uptake may not always be a reliable marker of BAT thermogenesis, for example, insulin resistance may reduce glucose uptake. Uncoupling protein 1 (UCP1) is the key thermogenic protein in BAT. Therefore, we hypothesised that UCP1 expression may be altered in individuals with cardiometabolic risk factors. Methods We quantified UCP1 expression as an alternative marker of thermogenic capacity in BAT and white adipose tissue (WAT) samples (n = 53) and in differentiated brown and white pre-adipocytes (n = 85). Results UCP1 expression in BAT, but not in WAT or brown/white differentiated pre-adipocytes, was reduced with increasing age, obesity, and adverse cardiometabolic risk factors such as fasting glucose, insulin, and blood pressure. However, UCP1 expression in BAT was preserved in obese subjects of <40 years of age. To determine if BAT activity was also preserved in vivo, we undertook a case-control study, performing 18F-FDG scanning during mild cold exposure in young (mean age ∼22 years) normal weight and obese volunteers. 18F-FDG uptake by BAT and BAT volume were similar between groups, despite increased insulin resistance. Conclusion 18F-FDG uptake by BAT and UCP1 expression are preserved in young obese adults. Older subjects retain precursor cells with the capacity to form new thermogenic adipocytes. These data highlight the therapeutic potential of BAT mass expansion and activation in obesity.

Funder

Medical Research Council

Chief Scientist Office

British Heart Foundation

Wellcome Trust

Publisher

Oxford University Press (OUP)

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