Targeting acid sphingomyelinase reduces cardiac ceramide accumulation in the post-ischemic heart

Martina Klevstig1, Marcus Ståhlman1, Annika Lundqvist1

  • 1Department of Molecular and Clinical Medicine, Wallenberg Laboratory, Institute of Medicine, Sahlgrenska Academy at University of Gothenburg, 413 45 Gothenburg, Sweden.

Insights

Ceramide accumulation in the heart is linked to reduced function during ischemia. While acid sphingomyelinase mediates this, reducing ceramides did not improve heart function or survival in mice.

Area of Science:

  • Cardiovascular Biology
  • Lipid Metabolism
  • Ischemic Heart Disease Pathogenesis

Background:

  • Ceramide accumulation is observed in acute myocardial ischemia.
  • The precise role of ceramides in ischemic heart disease pathogenesis remains unclear.
  • Understanding ceramide pathways is crucial for potential therapeutic interventions.

Purpose of the Study:

  • To elucidate the mechanisms of ceramide accumulation in the ischemic heart.
  • To investigate whether reducing ceramide accumulation improves cardiac function post-ischemia.
  • To determine the role of acid sphingomyelinase in hypoxia-induced ceramide accumulation.

Main Methods:

  • Analysis of myocardial left ventricle biopsies from patients with chronic ischemia.
  • Utilizing cultured HL-1 cardiomyocytes to study ceramide synthesis pathways.
  • Employing acid sphingomyelinase-deficient (Smpd1(+/-)) mice subjected to induced myocardial infarction.

Main Results:

  • Higher ceramide levels correlated with reduced heart function in human biopsies.
  • Acid sphingomyelinase activity, not neutral sphingomyelinase or de novo synthesis, drove hypoxia-induced ceramide accumulation in cardiomyocytes.
  • Reduced cardiac ceramide accumulation in Smpd1(+/-) mice post-myocardial infarction did not improve cardiac function or survival.

Conclusions:

  • Cardiac ceramide accumulation following ischemia is primarily mediated by acid sphingomyelinase.
  • Targeting ceramide accumulation may not be a viable therapeutic strategy for ischemic heart disease.
  • Further research is needed to understand the complex role of ceramides in cardiac ischemia.