Cardiac mesenchymal stromal cells are a source of adipocytes in arrhythmogenic cardiomyopathy
E Sommariva1, S Brambilla2, C Carbucicchio3
1Vascular Biology and Regenerative Medicine Unit, Centro Cardiologico Monzino IRCCS, via Parea 4, Milan 20138, Italy esommariva@ccfm.it.
Insights
Cardiac mesenchymal stromal cells contribute to fat buildup in arrhythmogenic cardiomyopathy (ACM). ACM C-MSC show increased adipogenesis due to PKP2 deficiency, offering a new tool for studying this genetic heart disorder.
Area of Science:
- Cardiology
- Genetics
- Cell Biology
Background:
- Arrhythmogenic cardiomyopathy (ACM) is a genetic heart disorder characterized by myocardial fibro-adipose replacement, arrhythmias, and sudden death.
- The specific cell type and molecular mechanisms driving this adipogenic substitution in ACM remain unclear.
- Cardiac mesenchymal stromal cells (C-MSC) are abundant in the heart and can differentiate into adipocytes, but their role in ACM is unknown.
Purpose of the Study:
- To investigate the contribution of C-MSC to the excess adipocytes observed in ACM patients.
- To determine if C-MSC from ACM patients exhibit altered adipogenic potential compared to controls.
Main Methods:
- Analysis of explanted heart sections from ACM patients to identify differentiating cells.
- Isolation and culture of C-MSC from endomyocardial biopsies of ACM and non-ACM (control) patients.
- Assessment of C-MSC differentiation, gene expression (adipogenic, cell cycle, anti-adipogenic), and protein expression (PKP2) in vitro.
Main Results:
- Mesenchymal cells were identified as the source of adipocytes in ACM hearts.
- ACM C-MSC showed increased lipid droplet accumulation and higher expression of adipogenic genes compared to controls.
- Lower expression of plakophilin (PKP2) protein was observed in ACM C-MSC, and this deficiency was linked to increased lipid accumulation and altered gene expression.
Conclusions:
- Cardiac mesenchymal stromal cells play a significant role in the adipogenic substitution seen in arrhythmogenic cardiomyopathy.
- C-MSC from ACM patients recapitulate key features of ACM adipogenesis in vitro.
- ACM C-MSC represent a valuable, patient-specific in vitro model for future research into the mechanisms of this genetic heart disease.
Aim:
Arrhythmogenic cardiomyopathy (ACM) is a genetic disorder mainly due to mutations in desmosomal genes, characterized by progressive fibro-adipose replacement of the myocardium, arrhythmias, and sudden death. It is still unclear which cell type is responsible for fibro-adipose substitution and which molecular mechanisms lead to this structural change. Cardiac mesenchymal stromal cells (C-MSC) are the most abundant cells in the heart, with propensity to differentiate into several cell types, including adipocytes, and their role in ACM is unknown. The aim of the present study was to investigate whether C-MSC contributed to excess adipocytes in patients with ACM.
Methods And Results:
We found that, in ACM patients' explanted heart sections, cells actively differentiating into adipocytes are of mesenchymal origin. Therefore, we isolated C-MSC from endomyocardial biopsies of ACM and from not affected by arrhythmogenic cardiomyopathy (NON-ACM) (control) patients. We found that both ACM and control C-MSC express desmosomal genes, with ACM C-MSC showing lower expression of plakophilin (PKP2) protein vs.
Controls:
Arrhythmogenic cardiomyopathy C-MSC cultured in adipogenic medium accumulated more lipid droplets than controls. Accordingly, the expression of adipogenic genes was higher in ACM vs. NON-ACM C-MSC, while expression of cell cycle and anti-adipogenic genes was lower. Both lipid accumulation and transcription reprogramming were dependent on PKP2 deficiency.
Conclusions:
Cardiac mesenchymal stromal cells contribute to the adipogenic substitution observed in ACM patients' hearts. Moreover, C-MSC from ACM patients recapitulate the features of ACM adipogenesis, representing a novel, scalable, patient-specific in vitro tool for future mechanistic studies.
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