Brown Adipose Tissue Energy Metabolism in Humans

被引:237
作者
Carpentier, Andre C. [1 ]
Blondin, Denis P. [2 ]
Virtanen, Kirsi A. [3 ,4 ]
Richard, Denis [5 ]
Haman, Francois [6 ]
Turcotte, Eric E. [7 ]
机构
[1] Univ Sherbrooke, Ctr Rech CHUS, Dept Med, Div Endocrinol, Sherbrooke, PQ, Canada
[2] Univ Ottawa, Fac Med, Ottawa, ON, Canada
[3] Turku Univ Hosp, Turku PET Ctr, Turku, Finland
[4] Univ Eastern Finland, Inst Publ Hlth & Clin Nutr, Kuopio, Finland
[5] Univ Laval, Inst Univ Cardiol & Pneumol Quebec, Ctr Rech, Quebec City, PQ, Canada
[6] Univ Ottawa, Fac Hlth Sci, Ottawa, ON, Canada
[7] Univ Sherbrooke, Ctr Rech CHUS, Dept Nucl Med & Radiobiol, Sherbrooke, PQ, Canada
基金
加拿大健康研究院; 芬兰科学院; 加拿大自然科学与工程研究理事会;
关键词
brown adipose tissue; energy metabolism; obesity; type; 2; diabetes; molecular imaging; positron emission tomography; tracer methods; COLD-INDUCED THERMOGENESIS; DIET-INDUCED THERMOGENESIS; CHRONIC ADRENERGIC-STIMULATION; IMPROVES INSULIN SENSITIVITY; GREEN TEA EXTRACT; FATTY-ACID UPTAKE; GLUCOSE-UPTAKE; WEIGHT-LOSS; ADULT HUMANS; ACTIVATED BROWN;
D O I
10.3389/fendo.2018.00447
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
The demonstration ofmetabolically active brown adipose tissue (BAT) in humans primarily using positron emission tomography coupled to computed tomography (PET/CT) with the glucose tracer 18-fluorodeoxyglucose (18FDG) has renewed the interest of the scientific and medical community in the possible role of BAT as a target for the prevention and treatment of obesity and type 2 diabetes (T2D). Here, we offer a comprehensive review of BAT energy metabolism in humans. Considerable advances in methods to measure BAT energy metabolism, including nonesterified fatty acids (NEFA), chylomicron-triglycerides (TG), oxygen, Krebs cycle rate, and intracellular TG have led to very good quantification of energy substrate metabolism per volume of active BAT in vivo. These studies have also shown that intracellular TG are likely the primary energy source of BAT upon activation by cold. Current estimates of BAT's contribution to energy expenditure range at the lower end of what would be potentially clinically relevant if chronically sustained. Yet, 18FDG PET/CT remains the gold-standard defining method to quantify total BAT volume of activity, used to calculate BAT's total energy expenditure. Unfortunately, BAT glucose metabolism better reflects BAT's insulin sensitivity and blood flow. It is now clear that most glucose taken up by BAT does not fuel mitochondrial oxidative metabolism and that BAT glucose uptake can therefore be disconnected from thermogenesis. Furthermore, BAT thermogenesis is efficiently recruited upon repeated cold exposure, doubling to tripling its total oxidative capacity, with reciprocal reduction of muscle thermogenesis. Recent data suggest that total BAT volume may be much larger than the typically observed 50-150ml with 18FDG PET/CT. Therefore, the current estimates of total BAT thermogenesis, largely relying on total BAT volume using 18FDG PET/CT, may underestimate the true contribution of BAT to total energy expenditure. Quantification of the contribution of BAT to energy expenditure begs for the development of more integrated whole body in vivo methods.
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页数:21
相关论文
共 256 条
[1]   Cold-induced activity of brown adipose tissue in young lean men of South-Asian and European origin [J].
Admiraal, W. M. ;
Verberne, H. J. ;
Karamat, F. A. ;
Soeters, M. R. ;
Hoekstra, J. B. L. ;
Holleman, F. .
DIABETOLOGIA, 2013, 56 (10) :2231-2237
[2]   Combining 123I-Metaiodobenzylguanidine SPECT/CT and 18F-FDG PET/CT for the Assessment of Brown Adipose Tissue Activity in Humans During Cold Exposure [J].
Admiraal, Wanda M. ;
Holleman, Frits ;
Bahler, Lonneke ;
Soeters, Maarten R. ;
Hoekstra, Joost B. ;
Verberne, Hein J. .
JOURNAL OF NUCLEAR MEDICINE, 2013, 54 (02) :208-212
[3]   Health Effects of Overweight and Obesity in 195 Countries over 25 Years [J].
Afshin, Ashkan ;
Forouzanfar, Mohammad H. ;
Reitsma, Marissa B. ;
Sur, Patrick ;
Estep, Kara ;
Lee, Alex ;
Marczak, Laurie ;
Mokdad, Ali H. ;
Moradi-Lakeh, Maziar ;
Naghavi, Mohsen ;
Salama, Joseph S. ;
Vos, Theo ;
Abate, Kalkidan H. ;
Abbafati, Cristiana ;
Ahmed, Muktar B. ;
Al-Aly, Ziyad ;
Alkerwi, Ala'a ;
Al-Raddadi, Rajaa ;
Amare, Azmeraw T. ;
Amberbir, Alemayehu ;
Amegah, Adeladza K. ;
Amini, Erfan ;
Amrock, Stephen M. ;
Anjana, Ranjit M. ;
Arnlov, Johan ;
Asayesh, Hamid ;
Banerjee, Amitava ;
Barac, Aleksandra ;
Baye, Estifanos ;
Bennett, Derrick A. ;
Beyene, Addisu S. ;
Biadgilign, Sibhatu ;
Biryukov, Stan ;
Bjertness, Espen ;
Boneya, Dube J. ;
Campos-Nonato, Ismael ;
Carrero, Juan J. ;
Cecilio, Pedro ;
Cercy, Kelly ;
Ciobanu, Liliana G. ;
Cornaby, Leslie ;
Damtew, Solomon A. ;
Dandona, Lalit ;
Dandona, Rakhi ;
Dharmaratne, Samath D. ;
Duncan, Bruce B. ;
Eshrati, Babak ;
Esteghamati, Alireza ;
Feigin, Valery L. ;
Fernandes, Joao C. .
NEW ENGLAND JOURNAL OF MEDICINE, 2017, 377 (01) :13-27
[4]   BROWN ADIPOSE TISSUE AND HEAT PRODUCTION IN NEWBORN INFANT [J].
AHERNE, W ;
HULL, D .
JOURNAL OF PATHOLOGY AND BACTERIOLOGY, 1966, 91 (01) :223-&
[5]   Exercise-induced 'browning' of adipose tissues [J].
Aldiss, Peter ;
Betts, James ;
Sale, Craig ;
Pope, Mark ;
Budge, Helen ;
Symonds, Michael E. .
METABOLISM-CLINICAL AND EXPERIMENTAL, 2018, 81 :63-70
[6]   Challenges in beta(3)-adrenoceptor agonist drug development [J].
Arch, Jonathan R. S. .
THERAPEUTIC ADVANCES IN ENDOCRINOLOGY AND METABOLISM, 2011, 2 (02) :59-64
[7]   EXERCISE DURING INTERMITTENT COLD-EXPOSURE PREVENTS ACCLIMATION TO COLD RATS [J].
ARNOLD, J ;
RICHARD, D .
JOURNAL OF PHYSIOLOGY-LONDON, 1987, 390 :45-54
[8]   EXERCISE SUPPRESSION OF THERMOREGULATORY THERMOGENESIS IN WARM-ACCLIMATED AND COLD-ACCLIMATED RATS [J].
ARNOLD, J ;
LEBLANC, J ;
COTE, J ;
LALONDE, J ;
RICHARD, D .
CANADIAN JOURNAL OF PHYSIOLOGY AND PHARMACOLOGY, 1986, 64 (07) :922-926
[9]   CT Hounsfield Units of Brown Adipose Tissue Increase with Activation: Preclinical and Clinical Studies [J].
Baba, Shingo ;
Jacene, Heather A. ;
Engles, James M. ;
Honda, Hiroshi ;
Wahl, Richard L. .
JOURNAL OF NUCLEAR MEDICINE, 2010, 51 (02) :246-250
[10]   βAR signaling required for diet-induced thermogenesis and obesity resistance [J].
Bachman, ES ;
Dhillon, H ;
Zhang, CY ;
Cinti, S ;
Bianco, AC ;
Kobilka, BK ;
Lowell, BB .
SCIENCE, 2002, 297 (5582) :843-845