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May 3, 20260 citations

Running rich: how excess fatty acid oxidation drains the cardiac engine.

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SCSteven M. ClaypoolCKCarla M Koehler

Key Result

Unregulated fatty acid oxidation in acetyl-CoA carboxylase-deficient mice depleted linoleic acid stores, leading to cardiolipin deficiency, mitochondrial dysfunction, and heart failure.

Key Points

  • To evaluate how unregulated fatty acid oxidation affects cardiac function and leads to heart failure.
  • Study of acetyl-CoA carboxylase-deficient mice to assess fatty acid oxidation effects.
  • Analysis of cardiac health and metabolic pathways in the context of cardiolipin synthesis.
  • ACC-deficient mice exhibited cardiolipin deficiency linked to excessive fatty acid oxidation.
  • Mitochondrial dysfunction was observed, correlating with dilated cardiomyopathy and heart failure.

Structured PICO

P
Population
Acetyl-CoA carboxylase-deficient (ACC-deficient) mice
I
Intervention
Acetyl-CoA carboxylase (ACC) deficiency leading to unregulated fatty acid oxidation
O
Outcome
Cardiac damage, cardiolipin deficiency, mitochondrial dysfunction, dilated cardiomyopathy, and heart failure

Excessive and unregulated fatty acid oxidation in the heart can deplete linoleic acid stores, leading to cardiolipin deficiency, mitochondrial dysfunction, and heart failure.

Abstract

Fatty acid oxidation (FAO) provides the healthy heart with 60%-90% of its ATP, with the remainder coming from metabolism of glucose. Metabolic flexibility is key to heart function, ensuring an uninterrupted source of fuel. In heart failure, a shift from FAO to glucose-dependent metabolism occurs as disease progresses, supporting the widely held notion that fat is the optimal substrate in the heart. In this issue of the JCI, Kim et al. challenge this assumption. In studies of acetyl-CoA carboxylase-deficient (ACC-deficient) mice, they found that unregulated use of fat as a substrate led to cardiac damage. ACC-deficient mice developed cardiolipin deficiency as a result of excessive FAO depleting stores of linoleic acid, which is used as a substrate for cardiolipin maturation. The resulting mitochondrial dysfunction was associated with dilated cardiomyopathy and heart failure in these mice. The findings highlight potential for development of therapeutic strategies that balance energy sources and replenish cardiolipin levels.

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Cite This Study

Claypool et al. (2026) conducted an editorial in Heart failure. Acetyl-CoA carboxylase deficiency was evaluated. Unregulated fatty acid oxidation in acetyl-CoA carboxylase-deficient mice depleted linoleic acid stores, leading to cardiolipin deficiency, mitochondrial dysfunction, and heart failure.

synapsesocial.com/papers/69f6e5618071d4f1bdfc608dhttps://doi.org/10.1172/jci204459
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