Lipoxins Regulate Intercalated Disk-Associated Signaling and Immune Remodeling in Dilated Cardiomyopathy
Abstract:
We investigated whether pro-resolving lipid mediators of the lipoxin family can attenuate fibrosis and inflammation in muscle LIM protein knockout (MLP ko ) mice, a model of dilated cardiomyopathy (DCM). Male and female MLP ko mice received either vehicle or a mix of lipoxin-A 4 and lipoxin-B 4 three times per week for six weeks. Cardiac function was assessed using echocardiography, and fibrosis and DCM-associated cardiac signaling was evaluated through histology, immunofluorescence and immunoblot analyses. Flow cytometry and RNA sequencing (RNAseq) was performed to identify changes in cardiac gene expression and characterize macrophage subpopulations, respectively. Flow cytometry showed increased inflammatory CD11c + M1-like macrophages and reduction of CD206 + M2-like macrophages in MLP ko hearts compared to wild-type controls. Lipoxin treatment partially reversed the macrophage imbalance and showed mild improvements in cardiac physiology in MLP ko males. RNAseq analyses revealed sex-dependent alterations in the expression of pro-fibrotic and inflammation-related genes, suggesting changes in extracellular matrix (ECM) integrity and composition, and to the adaptive immune response. Intriguingly, several ECM proteins showed unexpected localizations at cardiac intercalated disks, which are known to be involved in DCM etiology. Further analysis identified lipoxin-dependent reduction in the DCM-associated expression of intercalated disk components only in lipoxin-treated MLP ko males. Lipoxins also modulated key cardiac signaling pathways in a sex-specific manner, including Erk1/2 and PKCα-linked Ankrd1/Carp1, which is associated with DCM development in MLP ko mice. While lipoxins do not directly reverse cardiac dysfunction or fibrosis in MLP ko mice, they may provide sex-specific protective effects by modulating DCM-related cardiac signaling pathways and by influencing immune-cell populations.
Insights
Lipoxins may offer sex-specific protection against dilated cardiomyopathy (DCM) by modulating cardiac signaling and immune cells in muscle LIM protein knockout mice. Further research is needed to confirm these findings in heart disease treatment.
Area of Science:
- Cardiovascular Research
- Immunology
- Pharmacology
Background:
- Muscle LIM protein knockout (MLPko) mice serve as a model for dilated cardiomyopathy (DCM).
- Inflammation and fibrosis are key pathological features of DCM.
- Lipoxins are pro-resolving lipid mediators with potential anti-inflammatory properties.
Purpose of the Study:
- To investigate the effects of lipoxin treatment on fibrosis and inflammation in MLPko mice.
- To assess the impact of lipoxins on cardiac function and signaling pathways in a DCM model.
- To explore sex-specific responses to lipoxin therapy in this model.
Main Methods:
- MLPko mice (male and female) received lipoxin A4/B4 mix or vehicle for six weeks.
- Cardiac function was assessed via echocardiography.
- Histology, immunofluorescence, immunoblotting, flow cytometry, and RNA sequencing (RNAseq) were used to evaluate cardiac pathology, immune cell populations, and gene expression.
Main Results:
- Lipoxin treatment partially reversed macrophage imbalance (M1/M2 ratio) in MLPko hearts and showed mild physiological improvements in males.
- RNAseq revealed sex-dependent alterations in pro-fibrotic and inflammation-related genes, impacting extracellular matrix (ECM) and adaptive immunity.
- Lipoxins reduced DCM-associated expression of intercalated disk components in a sex-specific manner in MLPko males, modulating cardiac signaling pathways like Erk1/2 and PKCα.
Conclusions:
- Lipoxins do not fully reverse cardiac dysfunction or fibrosis in MLPko mice.
- Lipoxins may offer sex-specific protective effects in DCM by modulating cardiac signaling and immune cell populations.
- The findings highlight the potential of lipoxins as a therapeutic strategy for DCM, with distinct effects based on sex.
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