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PUBMED FOR HANDHELDS

Journal Abstract Search


618 related items for PubMed ID: 24084163

  • 1. Transcriptomic and epigenetic changes in early liver steatosis associated to obesity: effect of dietary methyl donor supplementation.
    Cordero P, Campion J, Milagro FI, Martinez JA.
    Mol Genet Metab; 2013 Nov; 110(3):388-95. PubMed ID: 24084163
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  • 2. Supplementation with methyl donors during lactation to high-fat-sucrose-fed dams protects offspring against liver fat accumulation when consuming an obesogenic diet.
    Cordero P, Milagro FI, Campion J, Martinez JA.
    J Dev Orig Health Dis; 2014 Oct; 5(5):385-95. PubMed ID: 25084068
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  • 3. Dietary supplementation with methyl donors reduces fatty liver and modifies the fatty acid synthase DNA methylation profile in rats fed an obesogenic diet.
    Cordero P, Gomez-Uriz AM, Campion J, Milagro FI, Martinez JA.
    Genes Nutr; 2013 Jan; 8(1):105-13. PubMed ID: 22648174
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  • 4. Shifting to a control diet after a high-fat, high-sucrose diet intake induces epigenetic changes in retroperitoneal adipocytes of Wistar rats.
    Uriarte G, Paternain L, Milagro FI, Martínez JA, Campion J.
    J Physiol Biochem; 2013 Sep; 69(3):601-11. PubMed ID: 23334856
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  • 5. Methionine restriction prevents the progression of hepatic steatosis in leptin-deficient obese mice.
    Malloy VL, Perrone CE, Mattocks DA, Ables GP, Caliendo NS, Orentreich DS, Orentreich N.
    Metabolism; 2013 Nov; 62(11):1651-61. PubMed ID: 23928105
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  • 7. Transcriptomic and epigenetic changes in the hypothalamus are involved in an increased susceptibility to a high-fat-sucrose diet in prenatally stressed female rats.
    Paternain L, Batlle MA, De la Garza AL, Milagro FI, Martínez JA, Campión J.
    Neuroendocrinology; 2012 Nov; 96(3):249-60. PubMed ID: 22986707
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  • 12. Methylation analysis in fatty-acid-related genes reveals their plasticity associated with conjugated linoleic acid and calcium supplementation in adult mice.
    Chaplin A, Palou A, Serra F.
    Eur J Nutr; 2017 Mar; 56(2):879-891. PubMed ID: 26700221
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  • 13. Nicotinamide supplementation induces detrimental metabolic and epigenetic changes in developing rats.
    Li D, Tian YJ, Guo J, Sun WP, Lun YZ, Guo M, Luo N, Cao Y, Cao JM, Gong XJ, Zhou SS.
    Br J Nutr; 2013 Dec; 110(12):2156-64. PubMed ID: 23768418
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  • 14. Maternal methyl donors supplementation during lactation prevents the hyperhomocysteinemia induced by a high-fat-sucrose intake by dams.
    Cordero P, Milagro FI, Campion J, Martinez JA.
    Int J Mol Sci; 2013 Dec 16; 14(12):24422-37. PubMed ID: 24351826
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  • 15. Betaine supplementation prevents fatty liver induced by a high-fat diet: effects on one-carbon metabolism.
    Deminice R, da Silva RP, Lamarre SG, Kelly KB, Jacobs RL, Brosnan ME, Brosnan JT.
    Amino Acids; 2015 Apr 16; 47(4):839-46. PubMed ID: 25577261
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  • 17. Creatine supplementation prevents fatty liver in rats fed choline-deficient diet: a burden of one-carbon and fatty acid metabolism.
    Deminice R, de Castro GS, Francisco LV, da Silva LE, Cardoso JF, Frajacomo FT, Teodoro BG, Dos Reis Silveira L, Jordao AA.
    J Nutr Biochem; 2015 Apr 16; 26(4):391-7. PubMed ID: 25649792
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  • 19. Prevention of diet-induced obesity by dietary isomerized hop extract containing isohumulones, in rodents.
    Yajima H, Noguchi T, Ikeshima E, Shiraki M, Kanaya T, Tsuboyama-Kasaoka N, Ezaki O, Oikawa S, Kondo K.
    Int J Obes (Lond); 2005 Aug 16; 29(8):991-7. PubMed ID: 15852044
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  • 20. Transcriptome analysis of hepatic gene expression and DNA methylation in methionine- and betaine-supplemented geese (Anser cygnoides domesticus).
    Yang Z, Yang HM, Gong DQ, Rose SP, Pirgozliev V, Chen XS, Wang ZY.
    Poult Sci; 2018 Oct 01; 97(10):3463-3477. PubMed ID: 29931118
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