Galectin-3 interferes with tissue repair and promotes cardiac dysfunction and comorbidities in a genetic heart

Fani Vlachou1, Aimilia Varela2, Konstantina Stathopoulou1

  • 1Center of Basic Research, Biomedical Research Foundation Academy of Athens, 11527, Athens, Greece.

Insights

Galectin-3 drives heart failure by promoting cardiac fibrosis and inflammation. Inhibiting galectin-3 improves heart function and reduces fibrosis, establishing it as a therapeutic target for heart failure and associated lung conditions.

Area of Science:

  • Cardiovascular Biology
  • Immunology
  • Genetics

Background:

  • Galectin-3 is a biomarker for heart failure (HF) linked to myocardial fibrosis.
  • Its causal role in HF pathogenesis is debated in some cardiac injury models.

Purpose of the Study:

  • To investigate the causal role of galectin-3 in progressive heart failure using desmin-deficient mice.
  • To evaluate the therapeutic potential of galectin-3 inhibition in HF and associated comorbidities.

Main Methods:

  • Utilized desmin-deficient (des-/-) mice, a model of progressive HF with galectin-3 overexpression.
  • Assessed cardiac function and fibrosis following genetic ablation or pharmacological inhibition of galectin-3.
  • Monitored mice over 12 months, analyzing cardiac repair, fibroblast and macrophage functions, and lung pathology.

Main Results:

  • Genetic or pharmacological inhibition of galectin-3 improved cardiac function and reduced fibrosis in des-/- mice.
  • Galectin-3 deficiency ameliorated systolic dysfunction and preserved diastolic function, particularly in older mice.
  • Absence of galectin-3 modulated macrophage-fibroblast interactions, suppressed pro-fibrotic gene expression, and enhanced fibroblast proliferation.
  • Galectin-3 absence partially normalized lung compliance, mitigating emphysema-like comorbidities.

Conclusions:

  • Galectin-3 causally contributes to cardiac remodeling, inflammation, and failure by influencing cardiac fibroblast and macrophage functions.
  • Pharmacological inhibition of galectin-3 is effective in ameliorating cardiac pathology, identifying it as a viable therapeutic target for HF.
  • Targeting galectin-3 offers potential benefits for treating associated comorbidities, including pulmonary defects.

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