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PUBMED FOR HANDHELDS

Journal Abstract Search


197 related items for PubMed ID: 23041606

  • 1. Metabolic impacts of high dietary exposure to persistent organic pollutants in mice.
    Ibrahim MM, Fjære E, Lock EJ, Frøyland L, Jessen N, Lund S, Vidal H, Ruzzin J.
    Toxicol Lett; 2012 Nov 23; 215(1):8-15. PubMed ID: 23041606
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  • 2. Chronic consumption of farmed salmon containing persistent organic pollutants causes insulin resistance and obesity in mice.
    Ibrahim MM, Fjære E, Lock EJ, Naville D, Amlund H, Meugnier E, Le Magueresse Battistoni B, Frøyland L, Madsen L, Jessen N, Lund S, Vidal H, Ruzzin J.
    PLoS One; 2011 Nov 23; 6(9):e25170. PubMed ID: 21966444
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  • 3. Dietary capsaicin reduces obesity-induced insulin resistance and hepatic steatosis in obese mice fed a high-fat diet.
    Kang JH, Goto T, Han IS, Kawada T, Kim YM, Yu R.
    Obesity (Silver Spring); 2010 Apr 23; 18(4):780-7. PubMed ID: 19798065
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  • 4. Fish oil and argan oil intake differently modulate insulin resistance and glucose intolerance in a rat model of dietary-induced obesity.
    Samane S, Christon R, Dombrowski L, Turcotte S, Charrouf Z, Lavigne C, Levy E, Bachelard H, Amarouch H, Marette A, Haddad PS.
    Metabolism; 2009 Jul 23; 58(7):909-19. PubMed ID: 19394055
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  • 5. Temporal and dietary fat content-dependent islet adaptation to high-fat feeding-induced glucose intolerance in mice.
    Winzell MS, Magnusson C, Ahrén B.
    Metabolism; 2007 Jan 23; 56(1):122-8. PubMed ID: 17161234
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  • 6. Macronutrient composition determines accumulation of persistent organic pollutants from dietary exposure in adipose tissue of mice.
    Myrmel LS, Fjære E, Midtbø LK, Bernhard A, Petersen RK, Sonne SB, Mortensen A, Hao Q, Brattelid T, Liaset B, Kristiansen K, Madsen L.
    J Nutr Biochem; 2016 Jan 23; 27():307-16. PubMed ID: 26507541
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  • 7. A novel soluble β-1,3-D-glucan salecan reduces adiposity and improves glucose tolerance in high-fat diet-fed mice.
    Zhang Y, Xia L, Pang W, Wang T, Chen P, Zhu B, Zhang J.
    Br J Nutr; 2013 Jan 28; 109(2):254-62. PubMed ID: 22716316
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  • 8. Effects of pyridoxamine (K-163) on glucose intolerance and obesity in high-fat diet C57BL/6J mice.
    Hagiwara S, Gohda T, Tanimoto M, Ito T, Murakoshi M, Ohara I, Yamazaki T, Matsumoto M, Horikoshi S, Funabiki K, Tomino Y.
    Metabolism; 2009 Jul 28; 58(7):934-45. PubMed ID: 19427656
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  • 10. Amylin improves the effect of leptin on insulin sensitivity in leptin-resistant diet-induced obese mice.
    Kusakabe T, Ebihara K, Sakai T, Miyamoto L, Aotani D, Yamamoto Y, Yamamoto-Kataoka S, Aizawa-Abe M, Fujikura J, Hosoda K, Nakao K.
    Am J Physiol Endocrinol Metab; 2012 Apr 15; 302(8):E924-31. PubMed ID: 22275759
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  • 12. Effect of chronic p,p'-dichlorodiphenyldichloroethylene (DDE) exposure on high fat diet-induced alterations in glucose and lipid metabolism in male C57BL/6H mice.
    Howell GE, Mulligan C, Meek E, Chambers JE.
    Toxicology; 2015 Feb 03; 328():112-22. PubMed ID: 25541407
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  • 13. A mixture of cod and scallop protein reduces adiposity and improves glucose tolerance in high-fat fed male C57BL/6J mice.
    Tastesen HS, Rønnevik AK, Borkowski K, Madsen L, Kristiansen K, Liaset B.
    PLoS One; 2014 Feb 03; 9(11):e112859. PubMed ID: 25390887
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  • 14. JTT-130, a novel intestine-specific inhibitor of microsomal triglyceride transfer protein, suppresses high fat diet-induced obesity and glucose intolerance in Sprague-Dawley rats.
    Hata T, Mera Y, Tadaki H, Kuroki Y, Kawai T, Ohta T, Kakutani M.
    Diabetes Obes Metab; 2011 May 03; 13(5):446-54. PubMed ID: 21255216
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  • 15. Partial leptin deficiency favors diet-induced obesity and related metabolic disorders in mice.
    Begriche K, Lettéron P, Abbey-Toby A, Vadrot N, Robin MA, Bado A, Pessayre D, Fromenty B.
    Am J Physiol Endocrinol Metab; 2008 May 03; 294(5):E939-51. PubMed ID: 18349116
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