Evidence has emerged that the failing heart increases utilization of ketone bodies. We sought to determine whether this fuel shift is adaptive. Mice rendered incapable of oxidizing the ketone body 3-hydroxybutyrate (3OHB) in the heart exhibited worsened heart failure in response to fasting or a pressure overload/ischemic insult compared with WT controls. Increased delivery of 3OHB ameliorated pathologic cardiac remodeling and dysfunction in mice and in a canine pacing model of progressive heart failure. 3OHB was shown to enhance bioenergetic thermodynamics of isolated mitochondria in the context of limiting levels of fatty acids. These results indicate that the heart utilizes 3OHB as a metabolic stress defense and suggest that strategies ai...
The heart is metabolically flexible. Under physiological conditions, it mainly uses lipids and gluco...
Extrahepatic tissues which oxidise ketone bodies also have the capacity to accumulate them under par...
Aims: Upregulation of ketone body (β-hydroxybutyrate, βHB) utilization has been documented in human ...
Evidence has emerged that the failing heart increases utilization of ketone bodies. We sought to det...
Background Significant evidence indicates that the failing heart is energy starved. During the devel...
Cardiovascular disease is currently the foremost cause of death within the United States. Heart fail...
During evolution of adverse ventricular remodeling that culminates in cardiomyopathy and congestive ...
Objective: Exploitation of protective metabolic pathways within injured myocardium still remains an ...
Accumulating evidence suggests that the failing heart reverts energy metabolism toward increased uti...
The increased metabolic activity of the heart as a pump involves a high demand of mitochondrial aden...
\u3cp\u3eThe shift in substrate preference away from fatty acid oxidation (FAO) towards increased gl...
BACKGROUND: Accumulating evidence suggests that the failing heart reprograms fuel metabolism toward ...
Background Heart failure is responsible for approximately 65% of deaths in patients with type 2 diab...
The heart is metabolically flexible. Under physiological conditions, it mainly uses lipids and gluco...
The shift in substrate preference away from fatty acid oxidation (FAO) towards increased glucose uti...
The heart is metabolically flexible. Under physiological conditions, it mainly uses lipids and gluco...
Extrahepatic tissues which oxidise ketone bodies also have the capacity to accumulate them under par...
Aims: Upregulation of ketone body (β-hydroxybutyrate, βHB) utilization has been documented in human ...
Evidence has emerged that the failing heart increases utilization of ketone bodies. We sought to det...
Background Significant evidence indicates that the failing heart is energy starved. During the devel...
Cardiovascular disease is currently the foremost cause of death within the United States. Heart fail...
During evolution of adverse ventricular remodeling that culminates in cardiomyopathy and congestive ...
Objective: Exploitation of protective metabolic pathways within injured myocardium still remains an ...
Accumulating evidence suggests that the failing heart reverts energy metabolism toward increased uti...
The increased metabolic activity of the heart as a pump involves a high demand of mitochondrial aden...
\u3cp\u3eThe shift in substrate preference away from fatty acid oxidation (FAO) towards increased gl...
BACKGROUND: Accumulating evidence suggests that the failing heart reprograms fuel metabolism toward ...
Background Heart failure is responsible for approximately 65% of deaths in patients with type 2 diab...
The heart is metabolically flexible. Under physiological conditions, it mainly uses lipids and gluco...
The shift in substrate preference away from fatty acid oxidation (FAO) towards increased glucose uti...
The heart is metabolically flexible. Under physiological conditions, it mainly uses lipids and gluco...
Extrahepatic tissues which oxidise ketone bodies also have the capacity to accumulate them under par...
Aims: Upregulation of ketone body (β-hydroxybutyrate, βHB) utilization has been documented in human ...