Search Results - "Milagro, F."

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  1. 1

    Fatty acids, epigenetic mechanisms and chronic diseases: a systematic review by González-Becerra, K, Ramos-Lopez, O, Barrón-Cabrera, E, Riezu-Boj, J I, Milagro, F I, Martínez-López, E, Martínez, J A

    Published in Lipids in health and disease (15-10-2019)
    “…Chronic illnesses like obesity, type 2 diabetes (T2D) and cardiovascular diseases, are worldwide major causes of morbidity and mortality. These pathological…”
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  2. 2

    Editorial Special Issue: 2021 consortium for trans-pyrenean investigations on obesity and diabetes by Milagro, F. I., Capel, F., Carpéné, C.

    Published in Journal of Physiology and Biochemistry (01-05-2023)
    “…This Special Issue of the Journal of Physiology and Biochemistry contains 7 contributions that have been elaborated in the context of the mini-network…”
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  3. 3

    Reshaping faecal gut microbiota composition by the intake of trans-resveratrol and quercetin in high-fat sucrose diet-fed rats by Etxeberria, U., Arias, N., Boqué, N., Macarulla, M.T., Portillo, M.P., Martínez, J.A., Milagro, F.I.

    Published in The Journal of nutritional biochemistry (01-06-2015)
    “…Diet-induced obesity is associated to an imbalance in the normal gut microbiota composition. Resveratrol and quercetin, widely known for their health…”
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  4. 4
  5. 5

    Therapeutic perspectives of epigenetically active nutrients by Remely, M, Lovrecic, L, Garza, A L, Migliore, L, Peterlin, B, Milagro, F I, Martinez, A J, Haslberger, A G

    Published in British journal of pharmacology (01-06-2015)
    “…Many nutrients are known for a wide range of activities in prevention and alleviation of various diseases. Recently, their potential role in regulating human…”
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  6. 6

    Individuality and epigenetics in obesity by Campión, J, Milagro, F.I, Martínez, J.A

    Published in Obesity reviews (01-07-2009)
    “…Excessive weight gain arises from the interactions among environmental factors, genetic predisposition and the individual behavior. However, it is becoming…”
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  7. 7

    Dietary supplementation with methyl donors reduces fatty liver and modifies the fatty acid synthase DNA methylation profile in rats fed an obesogenic diet by Cordero, P, Gomez-Uriz, A. M, Campion, J, Milagro, F. I, Martinez, J. A

    Published in Genes & nutrition (01-01-2013)
    “…Non-alcoholic fatty liver disease (NAFLD) is one of the first hepatic manifestations of metabolic syndrome, whose progression can lead to cirrhosis and hepatic…”
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  8. 8

    Dietary factors, epigenetic modifications and obesity outcomes: Progresses and perspectives by Milagro, F.I., Mansego, M.L., De Miguel, C., Martínez, J.A.

    Published in Molecular aspects of medicine (01-07-2013)
    “…Nutritional factors play a life-long role in human health. Indeed, there is growing evidence that one of the mechanisms by which nutrients and bioactive…”
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  9. 9

    Resveratrol attenuates steatosis in obese Zucker rats by decreasing fatty acid availability and reducing oxidative stress by Gómez-Zorita, S., Fernández-Quintela, A., Macarulla, M. T., Aguirre, L., Hijona, E., Bujanda, L., Milagro, F., Martínez, J. A., Portillo, M. P.

    Published in British journal of nutrition (28-01-2012)
    “…Non-alcoholic fatty liver disease (NAFLD) is one of the most common manifestations of chronic liver disease worldwide. The aim of the present study was to…”
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  10. 10

    Effect of hypoxia on caveolae-related protein expression and insulin signaling in adipocytes by Varela-Guruceaga, M., Milagro, F.I., Martínez, J.A., de Miguel, C.

    Published in Molecular and cellular endocrinology (15-09-2018)
    “…Obesity is characterized by hypertrophy and hyperplasia of adipose tissue, which have been related to the development of hypoxia and insulin resistance. On the…”
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  11. 11

    PTPRS and PER3 methylation levels are associated with childhood obesity: results from a genome‐wide methylation analysis by Samblas, M., Milagro, F. I., Mansego, M. L., Marti, A., Martinez, J. A.

    Published in Pediatric obesity (01-03-2018)
    “…Summary Background The global prevalence of childhood overweight and obesity has increased in the last years. Epigenetic dysregulation affecting gene…”
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  12. 12

    Adherence to Mediterranean diet is associated with methylation changes in inflammation-related genes in peripheral blood cells by Arpón, A., Riezu-Boj, J. I., Milagro, F. I., Marti, A, Razquin, C., Martínez-González, M. A., Corella, D., Estruch, R., Casas, R., Fitó, M., Ros, E., Salas-Salvadó, J., Martínez, J. A.

    Published in Journal of physiology and biochemistry (01-08-2016)
    “…Epigenetic processes, including DNA methylation, might be modulated by environmental factors such as the diet, which in turn have been associated with the…”
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  13. 13

    DNA methylation of miRNA coding sequences putatively associated with childhood obesity by Mansego, M.L., Garcia‐Lacarte, M., Milagro, F.I., Marti, A., Martinez, J.A.

    Published in Pediatric obesity (01-02-2017)
    “…Summary Background Epigenetic mechanisms may be involved in obesity onset and its consequences. The aim of the present study was to evaluate whether DNA…”
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  14. 14

    TNF-alpha promoter methylation in peripheral white blood cells: Relationship with circulating TNFα, truncal fat and n-6 PUFA intake in young women by Hermsdorff, H.H., Mansego, M.L., Campión, J., Milagro, F.I., Zulet, M.A., Martínez, J.A.

    Published in Cytokine (Philadelphia, Pa.) (01-10-2013)
    “…•Women with high truncal fat had lower methylation in some CpG sites of TNFα gene.•The CpG13 methylation level was negatively correlated with plasma TNFα…”
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  15. 15

    Differential lipid metabolism outcomes associated with ADRB2 gene polymorphisms in response to two dietary interventions in overweight/obese subjects by Ramos-Lopez, O., Riezu-Boj, J.I., Milagro, F.I., Goni, L., Cuervo, M., Martinez, J.A.

    “…A precise nutrigenetic management of hypercholesterolemia involves the understanding of the interactions between the individual's genotype and dietary intake…”
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  16. 16

    Regulatory roles of miR-155 and let-7b on the expression of inflammation-related genes in THP-1 cells: effects of fatty acids by Marques-Rocha, J.L., Garcia-Lacarte, M., Samblas, M., Bressan, J., Martínez, J.A., Milagro, F.I.

    Published in Journal of physiology and biochemistry (01-11-2018)
    “…The main aim of this investigation was to study the regulatory roles of let-7b and miR-155-3p on the expression of inflammation-associated genes in monocytes,…”
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  17. 17

    Involvement of autophagy in the beneficial effects of resveratrol in hepatic steatosis treatment. A comparison with energy restriction by Milton-Laskibar, I, Aguirre, L, Etxeberria, U, Milagro, F I, Martínez, J A, Portillo, María P

    Published in Food & function (15-08-2018)
    “…Autophagy eliminates damaged cellular components. In the liver, it has been proposed that it mediates the breakdown of lipid droplets. This study aimed to…”
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  18. 18

    High fat diet-induced obesity modifies the methylation pattern of leptin promoter in rats by Milagro, F. I., Campión, J., García-Díaz, D. F., Goyenechea, E., Paternain, L., Martínez, J. A.

    Published in Journal of physiology and biochemistry (01-03-2009)
    “…Leptin is an adipokine involved in body weight and food intake regulation whose promoter region presents CpG islands that could be subject to dynamic…”
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  19. 19

    Circadian Expression of Adiponectin and Its Receptors in Human Adipose Tissue by Gómez-Abellán, P, Gómez-Santos, C, Madrid, J. A, Milagro, F. I, Campion, J, Martínez, J. A, Ordovás, J. M, Garaulet, M

    Published in Endocrinology (Philadelphia) (01-01-2010)
    “…Adiponectin is one of the most clinically relevant cytokines associated with obesity. However, circadian rhythmicity of adiponectin in human adipose tissue…”
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  20. 20

    Supplementation with methyl donors during lactation to high-fat-sucrose-fed dams protects offspring against liver fat accumulation when consuming an obesogenic diet by Cordero, P, Milagro, F I, Campion, J, Martinez, J A

    “…Methyl donor supplementation has been reported to prevent obesity-induced liver fat accumulation in adult rats. We hypothesized that this protection could be…”
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