Literature DB >> 23207798

Functional imaging of brown fat in mice with 18F-FDG micro-PET/CT.

Xukui Wang1, Laurie J Minze, Zheng-Zheng Shi.   

Abstract

Brown adipose tissue (BAT) differs from white adipose tissue (WAT) by its discrete location and a brown-red color due to rich vascularization and high density of mitochondria. BAT plays a major role in energy expenditure and non-shivering thermogenesis in newborn mammals as well as the adults (1). BAT-mediated thermogenesis is highly regulated by the sympathetic nervous system, predominantly via β adrenergic receptor (2, 3). Recent studies have shown that BAT activities in human adults are negatively correlated with body mass index (BMI) and other diabetic parameters (4-6). BAT has thus been proposed as a potential target for anti-obesity/anti-diabetes therapy focusing on modulation of energy balance (6-8). While several cold challenge-based positron emission tomography (PET) methods are established for detecting human BAT (9-13), there is essentially no standardized protocol for imaging and quantification of BAT in small animal models such as mice. Here we describe a robust PET/CT imaging method for functional assessment of BAT in mice. Briefly, adult C57BL/6J mice were cold treated under fasting conditions for a duration of 4 hours before they received one dose of (18)F-Fluorodeoxyglucose (FDG). The mice were remained in the cold for one additional hour post FDG injection, and then scanned with a small animal-dedicated micro-PET/CT system. The acquired PET images were co-registered with the CT images for anatomical references and analyzed for FDG uptake in the interscapular BAT area to present BAT activity. This standardized cold-treatment and imaging protocol has been validated through testing BAT activities during pharmacological interventions, for example, the suppressed BAT activation by the treatment of β-adrenoceptor antagonist propranolol (14, 15), or the enhanced BAT activation by β3 agonist BRL37344 (16). The method described here can be applied to screen for drugs/compounds that modulate BAT activity, or to identify genes/pathways that are involved in BAT development and regulation in various preclinical and basic studies.

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Year:  2012        PMID: 23207798      PMCID: PMC3537196          DOI: 10.3791/4060

Source DB:  PubMed          Journal:  J Vis Exp        ISSN: 1940-087X            Impact factor:   1.355


  16 in total

Review 1.  Brown adipose tissue: function and physiological significance.

Authors:  Barbara Cannon; Jan Nedergaard
Journal:  Physiol Rev       Date:  2004-01       Impact factor: 37.312

2.  "USA-Fat": prevalence is related to ambient outdoor temperature-evaluation with 18F-FDG PET/CT.

Authors:  Christian Cohade; Karen A Mourtzikos; Richard L Wahl
Journal:  J Nucl Med       Date:  2003-08       Impact factor: 10.057

Review 3.  The beta-adrenergic receptors and the control of adipose tissue metabolism and thermogenesis.

Authors:  S Collins; R S Surwit
Journal:  Recent Prog Horm Res       Date:  2001

Review 4.  The role and importance of brown adipose tissue in energy homeostasis.

Authors:  Aaron M Cypess; C Ronald Kahn
Journal:  Curr Opin Pediatr       Date:  2010-08       Impact factor: 2.856

5.  Registration of [18F]FDG microPET and small-animal MRI.

Authors:  Douglas J Rowland; Joel R Garbow; Richard Laforest; Abraham Z Snyder
Journal:  Nucl Med Biol       Date:  2005-08       Impact factor: 2.408

6.  A novel approach for reduction of brown fat uptake on FDG PET.

Authors:  A Agrawal; N Nair; N S Baghel
Journal:  Br J Radiol       Date:  2009-02-02       Impact factor: 3.039

7.  Cold-activated brown adipose tissue in healthy men.

Authors:  Wouter D van Marken Lichtenbelt; Joost W Vanhommerig; Nanda M Smulders; Jamie M A F L Drossaerts; Gerrit J Kemerink; Nicole D Bouvy; Patrick Schrauwen; G J Jaap Teule
Journal:  N Engl J Med       Date:  2009-04-09       Impact factor: 91.245

8.  Functional brown adipose tissue in healthy adults.

Authors:  Kirsi A Virtanen; Martin E Lidell; Janne Orava; Mikael Heglind; Rickard Westergren; Tarja Niemi; Markku Taittonen; Jukka Laine; Nina-Johanna Savisto; Sven Enerbäck; Pirjo Nuutila
Journal:  N Engl J Med       Date:  2009-04-09       Impact factor: 91.245

9.  Thermogenesis is beta3- but not beta1-adrenergically mediated in rat brown fat cells, even after cold acclimation.

Authors:  J Zhao; B Cannon; J Nedergaard
Journal:  Am J Physiol       Date:  1998-12

10.  High incidence of metabolically active brown adipose tissue in healthy adult humans: effects of cold exposure and adiposity.

Authors:  Masayuki Saito; Yuko Okamatsu-Ogura; Mami Matsushita; Kumiko Watanabe; Takeshi Yoneshiro; Junko Nio-Kobayashi; Toshihiko Iwanaga; Masao Miyagawa; Toshimitsu Kameya; Kunihiro Nakada; Yuko Kawai; Masayuki Tsujisaki
Journal:  Diabetes       Date:  2009-04-28       Impact factor: 9.461

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2.  Determining Glucose Metabolism Kinetics Using 18F-FDG Micro-PET/CT.

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Journal:  J Vis Exp       Date:  2017-05-02       Impact factor: 1.355

3.  An Adipose Tissue Atlas: An Image-Guided Identification of Human-like BAT and Beige Depots in Rodents.

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4.  Gene Regulation and Targeted Therapy in Gastric Cancer Peritoneal Metastasis: Radiological Findings from Dual Energy CT and PET/CT.

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Journal:  J Vis Exp       Date:  2018-01-22       Impact factor: 1.355

5.  Fluorescence Imaging of Interscapular Brown Adipose Tissue in Living Mice.

Authors:  Douglas R Rice; Alexander G White; W Matthew Leevy; Bradley D Smith
Journal:  J Mater Chem B       Date:  2015-03-07       Impact factor: 6.331

6.  Adrenergic pathway activation enhances brown adipose tissue metabolism: a [¹⁸F]FDG PET/CT study in mice.

Authors:  M Reza Mirbolooki; Sanjeev Kumar Upadhyay; Cristian C Constantinescu; Min-Liang Pan; Jogeshwar Mukherjee
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7.  High-fat feeding-induced hyperinsulinemia increases cardiac glucose uptake and mitochondrial function despite peripheral insulin resistance.

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8.  Effects of lobeglitazone, a novel thiazolidinedione, on adipose tissue remodeling and brown and beige adipose tissue development in db/db mice.

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9.  Activation of brown adipose tissue in diet-induced thermogenesis is GC-C dependent.

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10.  Sex-dependent effects of forced exercise in the body composition of adolescent rats.

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