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July 23, 2007Circulation531 citationsOpen Access

Metabolic Mechanisms in Heart Failure

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HAHouman AshrafianMFMichael FrenneauxLOLionel H. Opie

Key Result

Metabolic modulators may optimize myocardial substrate utilization to improve cardiac function and exercise performance beyond standard care in heart failure.

Key Points

  • Investigate the relationship between metabolic mechanisms and heart failure progression, focusing on insulin resistance and energetic perturbations.
  • Review of cellular mechanisms and pathophysiology related to metabolism in heart failure.
  • Discussion of therapies focusing on neurohumoral antagonism, diuretics, and exercise.
  • Consideration of novel metabolic modulators to enhance cardiac function.
  • Heart failure is connected to altered metabolism, leading to a cycle of worsening heart function.
  • Therapies targeting neurohumoral activation can mitigate metabolic changes and improve outcomes.
  • Metabolic modulators may optimize myocardial substrate utilization, enhancing performance beyond standard care.

Structured PICO

P
Population
Patients with heart failure
I
Intervention
Metabolic-based therapies (including metabolic modulators, intense neurohumoral antagonism, limitation of diuretics, correction of hypokalemia, exercise, and diet)

Heart failure may induce a self-perpetuating cycle of metabolic derangements, including insulin resistance and altered substrate utilization, highlighting metabolic modulation as a potential therapeutic target.

Abstract

Although neurohumoral antagonism has successfully reduced heart failure morbidity and mortality, the residual disability and death rate remains unacceptably high. Though abnormalities of myocardial metabolism are associated with heart failure, recent data suggest that heart failure may itself promote metabolic changes such as insulin resistance, in part through neurohumoral activation. A detrimental self-perpetuating cycle (heart failure --> altered metabolism --> heart failure) that promotes the progression of heart failure may thus be postulated. Accordingly, we review the cellular mechanisms and pathophysiology of altered metabolism and insulin resistance in heart failure. It is hypothesized that the ensuing detrimental myocardial energetic perturbations result from neurohumoral activation, increased adverse free fatty acid metabolism, decreased protective glucose metabolism, and in some cases insulin resistance. The result is depletion of myocardial ATP, phosphocreatine, and creatine kinase with decreased efficiency of mechanical work. On the basis of the mechanisms outlined, appropriate therapies to mitigate aberrant metabolism include intense neurohumoral antagonism, limitation of diuretics, correction of hypokalemia, exercise, and diet. We also discuss more novel mechanistic-based therapies to ameliorate metabolism and insulin resistance in heart failure. For example, metabolic modulators may optimize myocardial substrate utilization to improve cardiac function and exercise performance beyond standard care. The ultimate success of metabolic-based therapy will be manifest by its capacity further to lessen the residual mortality in heart failure.

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Cite This Study

Ashrafian et al. (2007) conducted a review in Heart failure. Metabolic modulators was evaluated. Metabolic modulators may optimize myocardial substrate utilization to improve cardiac function and exercise performance beyond standard care in heart failure.

synapsesocial.com/papers/6a638d23df208cc29fc1a1b7https://doi.org/10.1161/circulationaha.107.702795
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