Literature DB >> 25475439

Salsalate activates brown adipose tissue in mice.

Andrea D van Dam1, Kimberly J Nahon2, Sander Kooijman2, Susan M van den Berg3, Anish A Kanhai2, Takuya Kikuchi2, Mattijs M Heemskerk4, Vanessa van Harmelen4, Marc Lombès5, Anita M van den Hoek6, Menno P J de Winther3, Esther Lutgens7, Bruno Guigas8, Patrick C N Rensen2, Mariëtte R Boon2.   

Abstract

Salsalate improves glucose intolerance and dyslipidemia in type 2 diabetes patients, but the mechanism is still unknown. The aim of the current study was to unravel the molecular mechanisms involved in these beneficial metabolic effects of salsalate by treating mice with salsalate during and after development of high-fat diet-induced obesity. We found that salsalate attenuated and reversed high-fat diet-induced weight gain, in particular fat mass accumulation, improved glucose tolerance, and lowered plasma triglyceride levels. Mechanistically, salsalate selectively promoted the uptake of fatty acids from glycerol tri[(3)H]oleate-labeled lipoprotein-like emulsion particles by brown adipose tissue (BAT), decreased the intracellular lipid content in BAT, and increased rectal temperature, all pointing to more active BAT. The treatment of differentiated T37i brown adipocytes with salsalate increased uncoupled respiration. Moreover, salsalate upregulated Ucp1 expression and enhanced glycerol release, a dual effect that was abolished by the inhibition of cAMP-dependent protein kinase (PKA). In conclusion, salsalate activates BAT, presumably by directly activating brown adipocytes via the PKA pathway, suggesting a novel mechanism that may explain its beneficial metabolic effects in type 2 diabetes patients.
© 2015 by the American Diabetes Association. Readers may use this article as long as the work is properly cited, the use is educational and not for profit, and the work is not altered.

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Year:  2014        PMID: 25475439     DOI: 10.2337/db14-1125

Source DB:  PubMed          Journal:  Diabetes        ISSN: 0012-1797            Impact factor:   9.461


  17 in total

1.  Artemisinin derivatives prevent obesity by inducing browning of WAT and enhancing BAT function.

Authors:  Ping Lu; Fu-Chuang Zhang; Shu-Wen Qian; Xi Li; Zhao-Meng Cui; Yong-Jun Dang; Qi-Qun Tang
Journal:  Cell Res       Date:  2016-09-16       Impact factor: 25.617

2.  Salsalate (Salicylate) Uncouples Mitochondria, Improves Glucose Homeostasis, and Reduces Liver Lipids Independent of AMPK-β1.

Authors:  Brennan K Smith; Rebecca J Ford; Eric M Desjardins; Alex E Green; Meghan C Hughes; Vanessa P Houde; Emily A Day; Katarina Marcinko; Justin D Crane; Emilio P Mottillo; Christopher G R Perry; Bruce E Kemp; Mark A Tarnopolsky; Gregory R Steinberg
Journal:  Diabetes       Date:  2016-08-23       Impact factor: 9.461

3.  RDH1 suppresses adiposity by promoting brown adipose adaptation to fasting and re-feeding.

Authors:  Charles R Krois; Marta G Vuckovic; Priscilla Huang; Claire Zaversnik; Conan S Liu; Candice E Gibson; Madelyn R Wheeler; Kristin M Obrochta; Jin H Min; Candice B Herber; Airlia C Thompson; Ishan D Shah; Sean P Gordon; Marc K Hellerstein; Joseph L Napoli
Journal:  Cell Mol Life Sci       Date:  2019-02-20       Impact factor: 9.261

Review 4.  The Potential Role of Fatty Acids in Treating Diabetic Neuropathy.

Authors:  Mark A Yorek
Journal:  Curr Diab Rep       Date:  2018-08-25       Impact factor: 4.810

5.  Palmitate induces DNA damage and senescence in human adipocytes in vitro that can be alleviated by oleic acid but not inorganic nitrate.

Authors:  Abbas Ishaq; Tamara Tchkonia; James L Kirkland; Mario Siervo; Gabriele Saretzki
Journal:  Exp Gerontol       Date:  2022-04-04       Impact factor: 4.253

6.  Effect of Treatment with Salsalate, Menhaden Oil, Combination of Salsalate and Menhaden Oil, or Resolvin D1 of C57Bl/6J Type 1 Diabetic Mouse on Neuropathic Endpoints.

Authors:  Matthew S Yorek; Lawrence J Coppey; Hanna Shevalye; Alexander Obrosov; Randy H Kardon; Mark A Yorek
Journal:  J Nutr Metab       Date:  2016-09-28

Review 7.  Induction of thermogenic adipocytes: molecular targets and thermogenic small molecules.

Authors:  No-Joon Song; Seo-Hyuk Chang; Dean Y Li; Claudio J Villanueva; Kye Won Park
Journal:  Exp Mol Med       Date:  2017-07-07       Impact factor: 8.718

8.  Salsalate Activates Skeletal Muscle Thermogenesis and Protects Mice from High-Fat Diet Induced Metabolic Dysfunction.

Authors:  Li Nie; Xin-Lu Yuan; Ke-Tao Jiang; Yu-Hui Jiang; Jin Yuan; Lan Luo; Shi-Wei Cui; Cheng Sun
Journal:  EBioMedicine       Date:  2017-08-04       Impact factor: 8.143

9.  Salsalate ameliorates metabolic disturbances by reducing inflammation in spontaneously hypertensive rats expressing human C-reactive protein and by activating brown adipose tissue in nontransgenic controls.

Authors:  Jaroslava Trnovská; Jan Šilhavý; Ondřej Kuda; Vladimír Landa; Václav Zídek; Petr Mlejnek; Miroslava Šimáková; Hynek Strnad; Vojtěch Škop; Olena Oliyarnyk; Ludmila Kazdová; Martin Haluzík; Michal Pravenec
Journal:  PLoS One       Date:  2017-06-06       Impact factor: 3.240

10.  In vivo and in silico dynamics of the development of Metabolic Syndrome.

Authors:  Yvonne J W Rozendaal; Yanan Wang; Yared Paalvast; Lauren L Tambyrajah; Zhuang Li; Ko Willems van Dijk; Patrick C N Rensen; Jan A Kuivenhoven; Albert K Groen; Peter A J Hilbers; Natal A W van Riel
Journal:  PLoS Comput Biol       Date:  2018-06-07       Impact factor: 4.475

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