Brown adipose tissue dynamics in wild-type and UCP1-knockout mice: in vivo insights with magnetic resonance

被引:41
作者
Grimpo, Kirsten [1 ]
Voelker, Maximilian N. [2 ]
Heppe, Eva N. [1 ]
Braun, Steve [2 ]
Heverhagen, Johannes T. [3 ]
Heldmaier, Gerhard [1 ]
机构
[1] Univ Marburg, Dept Anim Physiol, Fac Biol, D-35043 Marburg, Germany
[2] Univ Marburg, Fac Med, Dept Diagnost Radiol, D-35043 Marburg, Germany
[3] Inselspital Bern, Univ Hosp, Inst Diagnost Intervent & Paediat Radiol, CH-3010 Bern, Switzerland
关键词
lipid metabolism; nonshivering thermogenesis; phosphorus spectroscopy; proton spectroscopy; ultra-high field; uncoupling protein 1; COLD-ACCLIMATED RATS; INDUCED NONSHIVERING THERMOGENESIS; MITOCHONDRIAL UNCOUPLING PROTEIN; BETA-ADRENERGIC STIMULATION; FATTY-ACID RELEASE; OB-OB MICE; DJUNGARIAN HAMSTER; BLOOD-FLOW; OXYGEN-CONSUMPTION; LIPOPROTEIN-LIPASE;
D O I
10.1194/jlr.M042895
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
We used noninvasive magnetic resonance imaging (MRI) and magnetic resonance spectroscopy to compare interscapular brown adipose tissue (iBAT) of wild-type (WT) and uncoupling protein 1 (UCP1)-knockout mice lacking UCP1-mediated nonshivering thermogenesis (NST). Mice were sequentially acclimated to an ambient temperature of 30 degrees C, 18 degrees C, and 5 degrees C. We detected a remodeling of iBAT and a decrease in its lipid content in all mice during cold exposure. Ratios of energy-rich phosphates (ATP/ADP, phosphocreatine/ATP) in iBAT were maintained stable during noradrenergic stimulation of thermogenesis in cold-and warm-adapted mice and no difference between the genotypes was observed. As free fatty acids (FFAs) serve as fuel for thermogenesis and activate UCP1 for uncoupling of oxidative phosphorylation, brown adipose tissue is considered to be a main acceptor and consumer of FFAs. We measured a major loss of FFAs from iBAT during noradrenergic stimulation of thermogenesis. This mobilization of FFAs was observed in iBAT of WT mice as well as in mice lacking UCP1. The high turnover and the release of FFAs from iBAT suggests an enhancement of lipid metabolism, which in itself contributes to the sympathetically activated NST and which is independent from uncoupled respiration mediated by UCP1.(jlr) Our study demonstrates that MRI, besides its potential for visualizing and quantification of fat tissue, is a valuable tool for monitoring functional in vivo processes like lipid and phosphate metabolism during NST.
引用
收藏
页码:398 / 409
页数:12
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