Literature DB >> 21632075

Resveratrol attenuates high-fat diet-induced insulin resistance by influencing skeletal muscle lipid transport and subsarcolemmal mitochondrial β-oxidation.

Lu-Lu Chen1, Hao-Hao Zhang, Juan Zheng, Xiang Hu, Wen Kong, Di Hu, Su-Xing Wang, Ping Zhang.   

Abstract

Although resveratrol (RES) is implicated in the regulation of insulin sensitivity in rodents, the exact mechanism underlying this effect remains unclear. Therefore, we sought to investigate how RES affects skeletal muscle lipid transportation and lipid oxidation of subsarcolemmal (SS) and intermyofibrillar (IMF) mitochondrial populations in high-fat diet (HFD)-induced insulin resistance (IR) rats. Systemic and skeletal muscle insulin sensitivity together with expressions of several genes related to mitochondrial biogenesis and skeletal muscle lipid transportation was studied in rats fed a normal diet, an HFD, and an HFD with intervention of RES for 8 weeks. Citrate synthase (CS), electron transport chain (ETC) activities, and several enzymes for mitochondrial β-oxidation were assessed in SS and IMF mitochondria from tibialis anterior muscle. The HFD-fed rats exhibited obvious systemic and skeletal muscle IR as well as intramuscular lipid accumulation. SIRT1 activity and expression of genes related to mitochondrial biogenesis were greatly declined, whereas the gene for lipid transportation, FAT/CD36, was upregulated (P < .05). Subsarcolemmal but not IMF mitochondria displayed lower CS, ETC, and β-oxidation activities. By contrast, RES treatment protected rats against diet-induced intramuscular lipid accumulation and IR, increased SIRT1 activity and mitochondrial biogenesis, and reverted the decline in SS mitochondrial CS and ETC activities. Importantly, although expression of FAT/CD36 was increased (11%, P < .05), activities of SS mitochondrial β-oxidation enzymes were largely enhanced (41%~67%, P < .05). This study suggests that RES ameliorates insulin sensitivity consistent with an improved balance between skeletal muscle lipid transportation and SS mitochondrial β-oxidation in HFD rats.
Copyright © 2011 Elsevier Inc. All rights reserved.

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Year:  2011        PMID: 21632075     DOI: 10.1016/j.metabol.2011.04.002

Source DB:  PubMed          Journal:  Metabolism        ISSN: 0026-0495            Impact factor:   8.694


  28 in total

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4.  SIRT1 overexpression in skeletal muscle in vivo induces increased insulin sensitivity and enhanced complex I but not complex II-V functions in individual subsarcolemmal and intermyofibrillar mitochondria.

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6.  Sirtuin biology and relevance to diabetes treatment.

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7.  Resveratrol Protects Against Renal Damage via Attenuation of Inflammation and Oxidative Stress in High-Fat-Diet-Induced Obese Mice.

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8.  SIRT1 attenuates high glucose-induced insulin resistance via reducing mitochondrial dysfunction in skeletal muscle cells.

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Authors:  Ming-Ming Cao; Xi Lu; Guo-Dong Liu; Ying Su; Yan-Bo Li; Jin Zhou
Journal:  Exp Ther Med       Date:  2017-10-30       Impact factor: 2.447

10.  Submaximal ADP-stimulated respiration is impaired in ZDF rats and recovered by resveratrol.

Authors:  Brennan K Smith; Christopher G R Perry; Eric A F Herbst; Ian R Ritchie; Marie-Soleil Beaudoin; Jeffrey C Smith; P Darrell Neufer; David C Wright; Graham P Holloway
Journal:  J Physiol       Date:  2013-09-30       Impact factor: 5.182

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