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A polyphenol-rich cranberry extract reverses insulin resistance and hepatic steatosis independently of body weight loss.
Anhê, Fernando F; Nachbar, Renato T; Varin, Thibault V; Vilela, Vanessa; Dudonné, Stéphanie; Pilon, Geneviève; Fournier, Maryse; Lecours, Marc-André; Desjardins, Yves; Roy, Denis; Levy, Emile; Marette, André.
Afiliación
  • Anhê FF; Department of Medicine, Faculty of Medicine, Cardiology Axis of the Québec Heart and Lung Institute, Canada; Institute of Nutrition and Functional Foods, Laval University, Québec, Canada. Electronic address: fernando.forato@criucpq.ulaval.ca.
  • Nachbar RT; Department of Medicine, Faculty of Medicine, Cardiology Axis of the Québec Heart and Lung Institute, Canada. Electronic address: renatotnt.uem@gmail.com.
  • Varin TV; Institute of Nutrition and Functional Foods, Laval University, Québec, Canada. Electronic address: Thibaut.Varin.1@ulaval.ca.
  • Vilela V; Department of Medicine, Faculty of Medicine, Cardiology Axis of the Québec Heart and Lung Institute, Canada. Electronic address: vilelarvanessa@hotmail.com.
  • Dudonné S; Institute of Nutrition and Functional Foods, Laval University, Québec, Canada. Electronic address: Stephanie.Dudonne.1@ulaval.ca.
  • Pilon G; Department of Medicine, Faculty of Medicine, Cardiology Axis of the Québec Heart and Lung Institute, Canada; Institute of Nutrition and Functional Foods, Laval University, Québec, Canada. Electronic address: Genevieve.Pilon@criucpq.ulaval.ca.
  • Fournier M; Research Centre, Sainte-Justine Hospital, Montréal, Québec, Canada. Electronic address: fourniermaryse1@gmail.com.
  • Lecours MA; Research Centre, Sainte-Justine Hospital, Montréal, Québec, Canada. Electronic address: malecours@hotmail.com.
  • Desjardins Y; Institute of Nutrition and Functional Foods, Laval University, Québec, Canada. Electronic address: Yves.Desjardins@fsaa.ulaval.ca.
  • Roy D; Institute of Nutrition and Functional Foods, Laval University, Québec, Canada. Electronic address: Denis.Roy@fsaa.ulaval.ca.
  • Levy E; Research Centre, Sainte-Justine Hospital, Montréal, Québec, Canada. Electronic address: emile.levy@recherche-ste-justine.qc.ca.
  • Marette A; Department of Medicine, Faculty of Medicine, Cardiology Axis of the Québec Heart and Lung Institute, Canada; Institute of Nutrition and Functional Foods, Laval University, Québec, Canada. Electronic address: Andre.Marette@criucpq.ulaval.ca.
Mol Metab ; 6(12): 1563-1573, 2017 12.
Article en En | MEDLINE | ID: mdl-29107524
ABSTRACT

OBJECTIVE:

Previous studies have reported that polyphenol-rich extracts from various sources can prevent obesity and associated gastro-hepatic and metabolic disorders in diet-induced obese (DIO) mice. However, whether such extracts can reverse obesity-linked metabolic alterations remains unknown. In the present study, we aimed to investigate the potential of a polyphenol-rich extract from cranberry (CE) to reverse obesity and associated metabolic disorders in DIO-mice.

METHODS:

Mice were pre-fed either a Chow or a High Fat-High Sucrose (HFHS) diet for 13 weeks to induce obesity and then treated either with CE (200 mg/kg, Chow + CE, HFHS + CE) or vehicle (Chow, HFHS) for 8 additional weeks.

RESULTS:

CE did not reverse weight gain or fat mass accretion in Chow- or HFHS-fed mice. However, HFHS + CE fully reversed hepatic steatosis and this was linked to upregulation of genes involved in lipid catabolism (e.g., PPARα) and downregulation of several pro-inflammatory genes (eg, COX2, TNFα) in the liver. These findings were associated with improved glucose tolerance and normalization of insulin sensitivity in HFHS + CE mice. The gut microbiota of HFHS + CE mice was characterized by lower Firmicutes to Bacteroidetes ratio and a drastic expansion of Akkermansia muciniphila and, to a lesser extent, of Barnesiella spp, as compared to HFHS controls.

CONCLUSIONS:

Taken together, our findings demonstrate that CE, without impacting body weight or adiposity, can fully reverse HFHS diet-induced insulin resistance and hepatic steatosis while triggering A. muciniphila blooming in the gut microbiota, thus underscoring the gut-liver axis as a primary target of cranberry polyphenols.
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Texto completo: 1 Bases de datos: MEDLINE Asunto principal: Resistencia a la Insulina / Extractos Vegetales / Aumento de Peso / Vaccinium macrocarpon / Hígado Graso / Polifenoles Idioma: En Revista: Mol Metab Año: 2017 Tipo del documento: Article

Texto completo: 1 Bases de datos: MEDLINE Asunto principal: Resistencia a la Insulina / Extractos Vegetales / Aumento de Peso / Vaccinium macrocarpon / Hígado Graso / Polifenoles Idioma: En Revista: Mol Metab Año: 2017 Tipo del documento: Article