Molecular adaptations underlying the beneficial effects of hydroxytyrosol in the pathogenic alterations induced by a high-fat diet in mouse liver: PPAR-α and Nrf2 activation, and NF-κB down-regulation.
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Hydroxytyrosol and Cytoprotection: A Projection for Clinical InterventionsTargeting Sirt1 in a rat model of high-fat diet-induced non-alcoholic fatty liver disease: Comparison of Gegen Qinlian decoction and resveratrol.A combined docosahexaenoic acid-thyroid hormone protocol upregulates rat liver β-Klotho expression and downstream components of FGF21 signaling as a potential novel approach to metabolic stress conditions.Pharma-Nutritional Properties of Olive Oil Phenols. Transfer of New Findings to Human Nutrition.
P2860
Molecular adaptations underlying the beneficial effects of hydroxytyrosol in the pathogenic alterations induced by a high-fat diet in mouse liver: PPAR-α and Nrf2 activation, and NF-κB down-regulation.
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2017年の論文
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2017年学术文章
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2017年学术文章
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name
Molecular adaptations underlyi ...... on, and NF-κB down-regulation.
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Molecular adaptations underlyi ...... on, and NF-κB down-regulation.
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type
label
Molecular adaptations underlyi ...... on, and NF-κB down-regulation.
@en
Molecular adaptations underlyi ...... on, and NF-κB down-regulation.
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prefLabel
Molecular adaptations underlyi ...... on, and NF-κB down-regulation.
@en
Molecular adaptations underlyi ...... on, and NF-κB down-regulation.
@nl
P2093
P2860
P356
P1433
P1476
Molecular adaptations underlyi ...... ion, and NF-κB down-regulation
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P2093
Alejandra Espinosa
Alfonso Valenzuela
Luis A Videla
Macarena Ortiz
María Catalina Hernandez-Rodas
Miguel Ángel Rincón-Cervera
Rodrigo Valenzuela
P2860
P304
P356
10.1039/C7FO00090A
P577
2017-04-01T00:00:00Z