Red wine polyphenol extracts (polyphenols) ameliorate cardiovascular and metabolic disorders associated with obesity. Previously, we demonstrated that the alpha isoform of estrogen receptor (ERα) triggers the vascular protection of polyphenols. Here, we investigated the contribution of ERα on the effects of polyphenols on cardiovascular and metabolic alterations associated with obesity. We used ovariectomized wild type or ERα-deficient mice receiving standard (SD) or western (WD) diets, or SD and WD containing polyphenols (SD+polyphenols and WD+polyphenols, respectively) over a 12-week period. Body weight was measured during treatment. Echocardiography examination was performed before sacrifice. Blood and tissues were sampled for biochemica...
International audienceBACKGROUND: Obesity is associated with increased risks for development of card...
Estrogen receptor alpha (ERα) is a major regulator of metabolic processes in obesity. In this study ...
Graduation date: 2015Access restricted to the OSU Community, at author's request, from Sept. 5, 2014...
Red wine polyphenol extracts improve cardiovascular and metabolic disorders linked to obesity. Their...
<p>Red wine polyphenol extracts improve cardiovascular and metabolic disorders linked to obesity. Th...
Red wine polyphenols compounds (RWPC) are known to protect against deleterious effects of cardiac an...
Red wine polyphenol compounds (RWPC) exert paradoxical effects depending on the dose on post-ischemi...
Epidemiological studies report an inverse association between dietary flavonoid consumption and mort...
BACKGROUND: A greater reduction in cardiovascular risk and vascular protection associated with diet ...
A greater reduction in cardiovascular risk and vascular protection associated with diet rich in poly...
BackgroundObesity is associated with increased risks for development of cardiovascular diseases. Epi...
International audienceBACKGROUND: A greater reduction in cardiovascular risk and vascular protection...
Epidemiological studies have reported a greater reduction in cardiovascular risk and metabolic disor...
Estrogen receptor α (ERα) and estrogen receptor β (ERβ) play important roles in cardiovascular disea...
Red wine polyphenol compounds (RWPC) exert paradoxical effects depending on the dose on post-ischemi...
International audienceBACKGROUND: Obesity is associated with increased risks for development of card...
Estrogen receptor alpha (ERα) is a major regulator of metabolic processes in obesity. In this study ...
Graduation date: 2015Access restricted to the OSU Community, at author's request, from Sept. 5, 2014...
Red wine polyphenol extracts improve cardiovascular and metabolic disorders linked to obesity. Their...
<p>Red wine polyphenol extracts improve cardiovascular and metabolic disorders linked to obesity. Th...
Red wine polyphenols compounds (RWPC) are known to protect against deleterious effects of cardiac an...
Red wine polyphenol compounds (RWPC) exert paradoxical effects depending on the dose on post-ischemi...
Epidemiological studies report an inverse association between dietary flavonoid consumption and mort...
BACKGROUND: A greater reduction in cardiovascular risk and vascular protection associated with diet ...
A greater reduction in cardiovascular risk and vascular protection associated with diet rich in poly...
BackgroundObesity is associated with increased risks for development of cardiovascular diseases. Epi...
International audienceBACKGROUND: A greater reduction in cardiovascular risk and vascular protection...
Epidemiological studies have reported a greater reduction in cardiovascular risk and metabolic disor...
Estrogen receptor α (ERα) and estrogen receptor β (ERβ) play important roles in cardiovascular disea...
Red wine polyphenol compounds (RWPC) exert paradoxical effects depending on the dose on post-ischemi...
International audienceBACKGROUND: Obesity is associated with increased risks for development of card...
Estrogen receptor alpha (ERα) is a major regulator of metabolic processes in obesity. In this study ...
Graduation date: 2015Access restricted to the OSU Community, at author's request, from Sept. 5, 2014...