Acute myocardial infarction in a patient with MELAS syndrome: a possible link?

Joseph Cosma1,2, Alessandro Russo3, Sofia Schino3

  • 1Department of Cardiology, Tor Vergata University of Rome, Rome, Italy - josephcosma1990@gmail.com.

Insights

Mitochondrial encephalomyopathy, lactic acidosis, and stroke (MELAS) syndrome, often caused by an MT-TL1 gene mutation, can lead to heart problems. This case suggests a potential link between MELAS and coronary artery disease development.

Area of Science:

  • Genetics and Molecular Biology
  • Cardiology
  • Neurology

Background:

  • Mitochondrial encephalomyopathy, lactic acidosis, and stroke (MELAS) syndrome is a mitochondrial disorder typically caused by the m.3243A>G mutation in the MT-TL1 gene, affecting mitochondrial protein synthesis.
  • This mutation leads to Complex I deficiency, impaired oxidative phosphorylation, and subsequent multi-organ dysfunction, particularly affecting high-energy-demand cells like neurons and myocytes.
  • MELAS syndrome presents with a heterogeneous clinical spectrum, including neurological deficits, lactic acidosis, stroke-like episodes, and various cardiac manifestations.

Observation:

  • This report details a 55-year-old male MELAS patient with no prior cardiovascular risk factors who experienced a non-ST-segment elevation myocardial infarction (NSTEMI).
  • Coronary angioplasty was performed, and echocardiography revealed left ventricular hypertrophy and hypokinesis.
  • Cardiac involvement in MELAS is common, with left ventricular hypertrophy being the most frequent phenotype, alongside arrhythmias and Wolff-Parkinson-White syndrome.

Findings:

  • While a direct link between MELAS and atherosclerosis is not established, recent in vitro studies suggest mitochondrial dysfunction may promote LDL oxidation and endothelial dysfunction.
  • The patient's presentation of NSTEMI and subsequent cardiac findings in the context of MELAS syndrome raises questions about the syndrome's role in coronary artery disease pathogenesis.
  • This case highlights the potential, though unconfirmed, contribution of MELAS syndrome to the development of coronary artery disease.

Implications:

  • The findings suggest a potential, yet unproven, pathogenetic link between MELAS syndrome and coronary artery disease, warranting further investigation.
  • Understanding the interplay between mitochondrial disorders and atherosclerosis could lead to novel therapeutic strategies for affected patients.
  • Further research is crucial to elucidate the mechanisms underlying mitochondrial dysfunction-induced atherosclerosis and its clinical relevance in MELAS patients.

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