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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.
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.
Abstract:
Cardiovascular disease has been recognized as the main cause of death in adults with sickle cell disease (SCD). Although the exact mechanism linking SCD to cardiomyopathy remains elusive, a possible role of subclinical acute transient myocardial ischemia during acute sickle cell-related vaso-occlusive crises (VOCs) has been suggested. We approached SCD cardiomyopathy by integrated omics using humanized SS mice exposed to hypoxia/reoxygenation (H/R; 10 hours hypoxia followed by 3 hours reoxygenation) stress, mimicking acute VOCs. In sickle cell (SS) mice exposed to H/R, a neutrophil-driven cardiac hypertrophic response is initiated by cardiac proinflammatory pathways, intersecting proteins and micro RNA involved in profibrotic signaling. This response may be facilitated by local unresolved inflammation. We then examined the effect of 17(R)-resolvin D1 (17R-RvD1), a member of the specialized proresolving lipid mediator superfamily, administration on H/R-activated profibrotic and proangiogenic pathways. In SS mice, we found that 17R-RvD1 (1) modulates miRNAome; (2) prevents the activation of NF-κB p65; (3) protects against the H/R-induced activation of both platelet derived growth factor receptor and transforming growth factor (TGF)-β1/Smad2-3 canonical pathways; (4) reduces the expression of hypoxia-inducible factor-dependent proangiogenic signaling; and (5) decreases the H/R-induced proapoptotic cell signature. The protective role of 17R-RvD1 against H/R-induced maladaptive heart remodeling was supported by the reduction of galectin-3, procollagen C-proteinase enhancer-1, and endothelin-1 expression and perivascular fibrosis in SS mice at 3 days after H/R stress compared with vehicle-treated SS animals. Collectively, our data support the novel role of unresolved inflammation in pathologic heart remodeling in SCD mice in response to H/R stress. Our study provides new evidence for protective effects of 17R-RvD1 against SCD-related cardiovascular disease.
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