<div><p>Background</p><p>Heart failure is associated with changes in cardiac energy metabolism. Glucose metabolism in particular is thought to be important in the pathogenesis of heart failure. We examined the effects of persistent overexpression of phosphoglycerate mutase 2 (Pgam2), a glycolytic enzyme, on cardiac energy metabolism and function.</p><p>Methods and Results</p><p>Transgenic mice constitutively overexpressing Pgam2 in a heart-specific manner were generated, and cardiac energy metabolism and function were analyzed. Cardiac function at rest was normal. The uptake of analogs of glucose or fatty acids and the phosphocreatine/βATP ratio at rest were normal. A comprehensive metabolomic analysis revealed an increase in the levels of ...
In heart failure, myocardial overload causes vast metabolic changes that impair cardiac energy produ...
BACKGROUND: Energy metabolism and substrate selection are key aspects of correct myocardial mechanic...
In heart failure, myocardial overload causes vast metabolic changes that impair cardiac energy produ...
BACKGROUND: Heart failure is associated with changes in cardiac energy metabolism. Glucose metabolis...
Heart failure is associated with changes in cardiac energy metabolism. Glucose metabolism in particu...
Glycolytic metabolism is closely involved in physiological homeostasis and pathophysiological states...
Summary: A healthy heart adapts to changes in nutrient availability and energy demands. In metabolic...
Models de ratolí; Glucòlisi; Diabetis mellitusModelos de ratón; Glucólisis; Diabetes mellitusMouse m...
Background The timing and consequences of alternations in substrate utilization in heart failure (HF...
Objective: Cardiac glucose metabolism is critical to normal and pathological function. The significa...
Although enhanced cGMP signaling can prevent hypertrophy, mechanisms underlying this cardioprotectiv...
Abstract. The healthy heart adapts to changes in nutrient availability and energy demands. In metab...
Background-—Increased glucose transporter 1 (GLUT1) expression and glucose utilization that accompan...
Background-—Increased glucose transporter 1 (GLUT1) expression and glucose utilization that accompan...
honors thesisCollege of EngineeringBiomedical EngineeringE. Dale AbelLifelong over-expression of GLU...
In heart failure, myocardial overload causes vast metabolic changes that impair cardiac energy produ...
BACKGROUND: Energy metabolism and substrate selection are key aspects of correct myocardial mechanic...
In heart failure, myocardial overload causes vast metabolic changes that impair cardiac energy produ...
BACKGROUND: Heart failure is associated with changes in cardiac energy metabolism. Glucose metabolis...
Heart failure is associated with changes in cardiac energy metabolism. Glucose metabolism in particu...
Glycolytic metabolism is closely involved in physiological homeostasis and pathophysiological states...
Summary: A healthy heart adapts to changes in nutrient availability and energy demands. In metabolic...
Models de ratolí; Glucòlisi; Diabetis mellitusModelos de ratón; Glucólisis; Diabetes mellitusMouse m...
Background The timing and consequences of alternations in substrate utilization in heart failure (HF...
Objective: Cardiac glucose metabolism is critical to normal and pathological function. The significa...
Although enhanced cGMP signaling can prevent hypertrophy, mechanisms underlying this cardioprotectiv...
Abstract. The healthy heart adapts to changes in nutrient availability and energy demands. In metab...
Background-—Increased glucose transporter 1 (GLUT1) expression and glucose utilization that accompan...
Background-—Increased glucose transporter 1 (GLUT1) expression and glucose utilization that accompan...
honors thesisCollege of EngineeringBiomedical EngineeringE. Dale AbelLifelong over-expression of GLU...
In heart failure, myocardial overload causes vast metabolic changes that impair cardiac energy produ...
BACKGROUND: Energy metabolism and substrate selection are key aspects of correct myocardial mechanic...
In heart failure, myocardial overload causes vast metabolic changes that impair cardiac energy produ...