Literature DB >> 31386566

A single day of high-fat diet feeding induces lipid accumulation and insulin resistance in brown adipose tissue in mice.

Eline N Kuipers1,2, Ntsiki M Held3, Wietse In Het Panhuis1,2, Melanie Modder1,2, Philip M M Ruppert4, Sander Kersten4, Sander Kooijman1,2, Bruno Guigas5,6, Riekelt H Houtkooper3, Patrick C N Rensen1,2, Mariëtte R Boon1,2.   

Abstract

Brown adipose tissue (BAT) catabolizes glucose and fatty acids to produce heat and thereby contributes to energy expenditure. Long-term high-fat diet (HFD) feeding results in so-called 'whitening' of BAT characterized by increased lipid deposition, mitochondrial dysfunction, and reduced fat oxidation. The aim of the current study was to unravel the rate and related mechanisms by which HFD induces BAT whitening and insulin resistance. Wild-type mice were fed a HFD for 0, 1, 3, or 7 days. Within 1 day of HFD, BAT weight and lipid content were increased. HFD also immediately reduced insulin-stimulated glucose uptake by BAT, indicating rapid induction of insulin resistance. This was accompanied by a tendency toward a reduced uptake of triglyceride-derived fatty acids by BAT. Mitochondrial mass and Ucp1 expression were unaltered, whereas after 3 days of HFD, markers of mitochondrial dynamics suggested induction of a more fused mitochondrial network. Additionally, HFD also increased macrophage markers in BAT after 3 days of HFD. Counterintuitively, the switch to HFD was accompanied by an acute rise in core body temperature. We showed that a single day of HFD feeding is sufficient to induce the first signs of whitening and insulin resistance in BAT, which reduces the uptake of glucose and triglyceride-derived fatty acids. BAT whitening and insulin resistance are likely sustained by reduced mitochondrial oxidation due to changes in mitochondrial dynamics and macrophage infiltration, respectively. Likely, the switch to HFD swiftly induces thermogenesis in other metabolic organs, which allows attenuation of BAT thermogenesis.

Entities:  

Keywords:  brown adipose tissue; high-fat diet; lipid accumulation; macrophage; mitochondrial dynamics

Mesh:

Substances:

Year:  2019        PMID: 31386566     DOI: 10.1152/ajpendo.00123.2019

Source DB:  PubMed          Journal:  Am J Physiol Endocrinol Metab        ISSN: 0193-1849            Impact factor:   4.310


  9 in total

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5.  Maternal Roux-en-Y gastric bypass surgery reduces lipid deposition and increases UCP1 expression in the brown adipose tissue of male offspring.

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Authors:  Somaya Z Mansour; Enas M Moustafa; Fatma S M Moawed
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8.  Comprehensive proteomics and functional annotation of mouse brown adipose tissue.

Authors:  Jing Li; Juan Li; Wei-Gang Zhao; Hai-Dan Sun; Zheng-Guang Guo; Xiao-Yan Liu; Xiao-Yue Tang; Zhu-Fang She; Tao Yuan; Shuai-Nan Liu; Quan Liu; Yong Fu; Wei Sun
Journal:  PLoS One       Date:  2020-05-06       Impact factor: 3.240

9.  The mechanisms underlying olanzapine-induced insulin resistance via the brown adipose tissue and the therapy in rats.

Authors:  Jing Wang; Qian Wu; Yuan Zhou; Liangyu Yu; Lixiu Yu; Yahui Deng; Chuyue Tu; Weiyong Li
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  9 in total

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