17(R)-Resolvin D1 protects against sickle cell-related inflammatory cardiomyopathy in humanized mice

Enrica Federti1, Domenico Mattoscio2, Antonio Recchiuti2

  • 1Department of Engineering for Innovative Medicine, University of Verona and Azienda Ospedaliera Universitaria Integrata Verona, Verona, Italy.

Blood
|February 10, 2025
PubMed

Insights

This study shows that unresolved inflammation contributes to heart damage in sickle cell disease (SCD) during vaso-occlusive crises (VOCs). Treatment with 17(R)-resolvin D1 (17R-RvD1) protected against this damage in mice.

Area of Science:

  • Cardiovascular Biology
  • Hematology
  • Pharmacology

Background:

  • Cardiovascular disease is a leading cause of death in adults with sickle cell disease (SCD).
  • The mechanisms linking SCD to cardiomyopathy, potentially involving myocardial ischemia during vaso-occlusive crises (VOCs), are not fully understood.
  • Unresolved inflammation may play a role in SCD-related cardiac remodeling.

Purpose of the Study:

  • To investigate the role of inflammation in SCD cardiomyopathy using a mouse model.
  • To examine the protective effects of 17(R)-resolvin D1 (17R-RvD1) on cardiac remodeling induced by hypoxia/reoxygenation (H/R) stress, mimicking VOCs.

Main Methods:

  • Humanized sickle cell (SS) mice were subjected to H/R stress to simulate VOCs.
  • Integrated omics approaches were used to analyze cardiac responses.
  • Mice were treated with 17R-RvD1, and its effects on inflammatory, profibrotic, proangiogenic, and apoptotic pathways were assessed.
  • Cardiac remodeling markers and fibrosis were evaluated post-H/R stress.

Main Results:

  • H/R stress induced a neutrophil-driven hypertrophic response and profibrotic signaling in SS mice, linked to unresolved inflammation.
  • 17R-RvD1 modulated the miRNAome, inhibited NF-κB activation, and protected against H/R-induced activation of PDGF and TGF-β1/Smad2-3 pathways.
  • 17R-RvD1 reduced hypoxia-inducible factor-dependent proangiogenic signaling and decreased the proapoptotic cell signature.
  • 17R-RvD1 treatment led to reduced expression of galectin-3, procollagen C-proteinase enhancer-1, endothelin-1, and decreased perivascular fibrosis.

Conclusions:

  • Unresolved inflammation is a key factor in pathological heart remodeling in SCD mice subjected to H/R stress.
  • 17R-RvD1 demonstrates significant protective effects against H/R-induced cardiac maladaptive remodeling in SCD.
  • These findings provide novel evidence for the therapeutic potential of 17R-RvD1 in mitigating cardiovascular complications of SCD.

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