Cardiac immune cell infiltration associates with abnormal lipid metabolism

Vincenza Cifarelli1,2, Ondrej Kuda3, Kui Yang1,4

  • 1Department of Medicine, Washington University School of Medicine, St. Louis, MO, United States.

Insights

CD36 deficiency impairs heart lipid metabolism and causes immune cell infiltration, revealing a non-homeostatic state. This highlights potential risks for cardiac remodeling and disease in individuals with CD36 variations.

Area of Science:

  • Cardiovascular Biology
  • Metabolic Disease
  • Immunology

Background:

  • CD36 facilitates long-chain fatty acid (FA) uptake in the heart, impacting energy metabolism.
  • While targeted for obesity-associated heart disease, CD36 deficiency has complex effects on myocardial fuel flexibility and repair.
  • Previous work indicated chronic subclinical inflammation in CD36 knockout mice.

Purpose of the Study:

  • To investigate heart lipid metabolism and inflammation in CD36-deficient mice.
  • To assess the impact of CD36 deficiency on cardiac homeostasis and stress response.
  • To explore the potential of non-invasive immune cell monitoring for risk assessment in CD36-related heart conditions.

Main Methods:

  • Analysis of lipid metabolism (triglycerides, plasmalogens, cardiolipins, acylcarnitines, arachidonic acid) in unchallenged CD36-/- mice.
  • Assessment of lipid remodeling following an overnight fast.
  • Positron emission tomography (PET) imaging using 64Cu-AMD3100 and 68Ga-DOTA-ECL1i to detect neutrophil and pro-inflammatory monocyte/macrophage infiltration.
  • Examination of hearts from cardiomyocyte-specific CD36-deficient mice.

Main Results:

  • CD36-/- hearts exhibit abnormal metabolism and remodeling of various lipid classes.
  • Significant immune cell infiltration (neutrophils, pro-inflammatory monocytes/macrophages) was detected in unchallenged CD36-/- hearts.
  • Immune cell infiltration was also observed in hearts with cardiomyocyte-specific CD36 deficiency.

Conclusions:

  • CD36 deficiency leads to a non-homeostatic cardiac state characterized by altered lipid metabolism and chronic inflammation.
  • The observed immune cell infiltration suggests compromised myocardial repair and stress response.
  • Non-invasive monitoring of immune cells in humans with CD36 deficiency may predict risks of impaired heart remodeling and disease.

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