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PUBMED FOR HANDHELDS

Journal Abstract Search


113 related items for PubMed ID: 30236873

  • 1. Maternal fructose induces gender-dependent changes in both LXRα promoter methylation and cholesterol metabolism in progeny.
    Rodrigo S, Fauste E, de la Cuesta M, Rodríguez L, Álvarez-Millán JJ, Panadero MI, Otero P, Bocos C.
    J Nutr Biochem; 2018 Nov; 61():163-172. PubMed ID: 30236873
    [Abstract] [Full Text] [Related]

  • 2. Fructose only in pregnancy provokes hyperinsulinemia, hypoadiponectinemia, and impaired insulin signaling in adult male, but not female, progeny.
    Rodríguez L, Panadero MI, Roglans N, Otero P, Rodrigo S, Álvarez-Millán JJ, Laguna JC, Bocos C.
    Eur J Nutr; 2016 Mar; 55(2):665-674. PubMed ID: 25808117
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  • 3. Maternal Fructose Intake Increases Liver H2 S Synthesis but Exarcebates its Fructose-Induced Decrease in Female Progeny.
    Fauste E, Rodrigo S, Aguirre R, Donis C, Rodríguez L, Álvarez-Millán JJ, Panadero MI, Otero P, Bocos C.
    Mol Nutr Food Res; 2020 Sep; 64(18):e2000628. PubMed ID: 32754997
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  • 4. Liquid fructose in pregnancy exacerbates fructose-induced dyslipidemia in adult female offspring.
    Rodríguez L, Panadero MI, Rodrigo S, Roglans N, Otero P, Álvarez-Millán JJ, Laguna JC, Bocos C.
    J Nutr Biochem; 2016 Jun; 32():115-22. PubMed ID: 27142744
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  • 5. Maternal fructose intake aggravates the harmful effects of a Western diet in rat male descendants impacting their cholesterol metabolism.
    Fauste E, Panadero MI, Pérez-Armas M, Donis C, López-Laiz P, Sevillano J, Sánchez-Alonso MG, Ramos-Álvarez MP, Otero P, Bocos C.
    Food Funct; 2024 Jun 04; 15(11):6147-6163. PubMed ID: 38767501
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  • 6. Maternal fructose consumption down-regulates Lxra expression via miR-206-mediated regulation.
    Yamazaki M, Munetsuna E, Yamada H, Ando Y, Mizuno G, Fujii R, Nouchi Y, Kageyama I, Teshigawara A, Ishikawa H, Suzuki K, Shimono Y, Hashimoto S, Ohashi K.
    J Nutr Biochem; 2020 Aug 04; 82():108386. PubMed ID: 32388164
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  • 7. Liver-specific Lxr inhibition represses reverse cholesterol transport in cholesterol-fed mice.
    Nishida T, Ayaori M, Arakawa J, Suenaga Y, Shiotani K, Uto-Kondo H, Komatsu T, Nakaya K, Endo Y, Sasaki M, Ikewaki K.
    Atherosclerosis; 2024 Oct 04; 397():117578. PubMed ID: 38797615
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  • 8. LXRα Regulates Hepatic ChREBPα Activity and Lipogenesis upon Glucose, but Not Fructose Feeding in Mice.
    Fan Q, Nørgaard RC, Bindesbøll C, Lucas C, Dalen KT, Babaie E, Itkonen HM, Matthews J, Nebb HI, Grønning-Wang LM.
    Nutrients; 2017 Jun 29; 9(7):. PubMed ID: 28661453
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  • 12. Early Life Exposure to Fructose Alters Maternal, Fetal and Neonatal Hepatic Gene Expression and Leads to Sex-Dependent Changes in Lipid Metabolism in Rat Offspring.
    Clayton ZE, Vickers MH, Bernal A, Yap C, Sloboda DM.
    PLoS One; 2015 Jun 29; 10(11):e0141962. PubMed ID: 26562417
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  • 13. Decreased H3K9 acetylation level of LXRα mediated dexamethasone-induced placental cholesterol transport dysfunction.
    Huang W, Zhou J, Zhang G, Zhang Y, Wang H.
    Biochim Biophys Acta Mol Cell Biol Lipids; 2019 Dec 29; 1864(12):158524. PubMed ID: 31513924
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  • 14. Pregnancy Is Enough to Provoke Deleterious Effects in Descendants of Fructose-Fed Mothers and Their Fetuses.
    Fauste E, Panadero MI, Donis C, Otero P, Bocos C.
    Nutrients; 2021 Oct 19; 13(10):. PubMed ID: 34684668
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  • 15. Maternal fructose consumption downregulates hippocampal catalase expression via DNA methylation in rat offspring.
    Mizuno G, Munetsuna E, Yamada H, Yamazaki M, Ando Y, Hattori Y, Kageyama I, Teshigawara A, Nouchi Y, Fujii R, Ishikawa H, Suzuki K, Hashimoto S, Ohashi K, Shimono Y.
    Nutr Res; 2021 Aug 19; 92():40-48. PubMed ID: 34274553
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  • 16. PPARγ overexpression regulates cholesterol metabolism in human L02 hepatocytes.
    Han T, Lv Y, Wang S, Hu T, Hong H, Fu Z.
    J Pharmacol Sci; 2019 Jan 19; 139(1):1-8. PubMed ID: 30554802
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