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Single-cell RNA-sequencing reveals the effects of right ventricular volume overload on cardiomyocyte proliferation via immune responses

GSE255054 Mus musculus Expression profiling by high throughput sequencing 4 samples Submitted 2024/12/06 Platform GPL24247
Summary
Background: Right ventricular volume overload (RVVO) is one of the most important hemodynamic characteristics in children with congenital heart diseases (CHDs) and heart failure, and cardiomyocyte (CM) proliferation is a vital factor for improving cardiac performance. However, whether and how RVVO reboots CM proliferation remains elusive. Methods and Results: We first created a prepubertal RVVO mouse model by an abdominal- aorta- and inferior- vena- cava- fistula (ACF) surgery on postnatal day 7(P7). Then we performed bulk RNA-seq on RVs of RVVO mice on P14, which showed that the top 30 enriched gene ontology(GO) terms of upregulated genes were associated with cell proliferation and that cell cycle was the fourth top enriched Kyoto Encyclopedia of Genes and Genomes (KEGG) pathway terms. Immunofluorescence staining confirmed the results, showing significantly increased numbers of phosphorylated histone 3/Aurora B-positive CMs in RVs with RVVO when compared to those in control RVs. Single RNA-seq performed on P21 further confirmed the results, showing increased percentage of CMs, with five sub-functional CMs, in which immature CMs increased while mature CMs decreased. In addition, RNA-seq/flow cytometry demonstrated that RVVO induced an immune response. Inhibiting the immune response with cyclosporin A(CsA) caused the gene expression profile of RVVO mice to shift towards that of sham mice, with a significant decrease in cell cycle associated genes’ enrichment. Conclusions: RVVO temporarily reboots prepubertal CM proliferation via immune responses. This study may provide an opportunity to create a novel paradigm to treat pediatric CHDs or heart failure in considering the importance of RVVO and CM proliferation in CHDs or heart failure.
Published in
Right ventricular volume overload reboots cardiomyocyte proliferation via immune responses
Zhou C, Hu Y, Dong Z et al. · Journal of translational medicine 2024 · PMID 39609689 · doi:10.1186/s12967-024-05839-8
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Also filed as BioProject PRJNA1073434 and SRA study SRP488158. Searching any of these in the dataset finder brings you back here.

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