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March 19, 2026International Journal of Molecular Sciences2 citationsOpen Access

Lipotoxicity in Diabetic Cardiomyopathy: Molecular Basis and Emerging Therapeutic Targets

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YHYue HanXCXinyi ChenOFOveena Fonseka

Key Result

Cardiac lipotoxicity drives the onset and progression of diabetic cardiomyopathy through lipid overload, reactive oxygen species generation, and mitochondrial dysfunction.

Key Points

  • Investigate the role of cardiac lipotoxicity in the development and progression of diabetic cardiomyopathy and heart failure.
  • Reviewed existing literature on diabetic cardiomyopathy and its connection to cardiac lipotoxicity.
  • Analyzed mechanisms of lipid metabolism and its transcriptional regulation in heart tissue.
  • Integrated evidence on the role of reactive oxygen species and mitochondrial dysfunction in DbCM.
  • Lipotoxicity is a significant factor in the onset and progression of diabetic cardiomyopathy.
  • Imbalance in lipid handling leads to accumulation of toxic lipid intermediates like diacylglycerols and ceramides.
  • Increased reactive oxygen species generation is linked to mitochondrial dysfunction and inflammatory pathways contributing to heart failure.

PICO

P
Population
Diabetic cardiomyopathy

Abstract

Diabetic cardiomyopathy (DbCM) is an important contributor to heart failure (HF) in diabetes, occurring independently of other cardiovascular risk factors. Accumulating evidence demonstrates that cardiac lipotoxicity is a key driver of the onset and progression of DbCM and HF. Myocardial lipid homeostasis is coordinated by multiple transcriptional regulations, signaling pathway activation, and endoplasmic reticulum-mediated management involved in lipid metabolism. In DbCM, unbalanced fatty acid (FA) influx, handling, storage, and utilization initiates lipid overload, accumulation of toxic lipid intermediates (e.g., diacylglycerols and ceramides), and activation of maladaptive response. Notably, these lipid intermediates amplify reactive oxygen species (ROS) generation, which serves as a critical link between lipotoxic signaling and mitochondrial dysfunction by promoting electron leak, mitochondrial damage, and activation of inflammatory and cell-death pathways. These processes converge on adverse remodeling and contractile impairment, accelerating DbCM progression. This review integrates mechanistic and translational evidence linking dysregulated lipid handling to DbCM and discusses the potential therapeutic strategies that target lipid abnormalities.

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Cite This Study

Han et al. (2026) conducted a review in Diabetic cardiomyopathy. Cardiac lipotoxicity drives the onset and progression of diabetic cardiomyopathy through lipid overload, reactive oxygen species generation, and mitochondrial dysfunction.

synapsesocial.com/papers/69bb92ae496e729e62980387https://doi.org/10.3390/ijms27062740
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