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Promoting the proliferation of endogenous cardiomyocytes represents a promising strategy for treating cardiac injuries. Identifying key factors that regulate cardiomyocyte proliferation can advance the development of novel therapies for heart regeneration. Here we identify that FOXK1 and FOXK2 act a...
2025-02-13 | MTBLS12191 | MetaboLights
Targeted deletion of skNAC in mice resulted in early embryonic lethality with cardiac defects. In order to investigate the molecular mechanism of the cardiac defect, we designed the microarray comparing gene expression of the mutant E11.5 heart to wild type E11.5 heart. Keywords: genetic modificat...
ORGANISM(S): Mus musculus 
Epigenome profiling of neonatal heart regeneration
Transcriptome profiling of neonatal heart regeneration
The adult mammalian heart has little regenerative capacity after myocardial infarction (MI) while neonatal mouse heart regenerates without scarring or dysfunction. However, the underlying pathways are poorly defined. We sought to derive insights into the pathways regulating neonatal development of t...
ORGANISM(S): Mus musculus 
In this study, we identified a number of genes whose expression are regulated by the Hippo tumor suppressor pathway. To disrupt Hippo signaling in the mouse heart, we inactivated the single mammalian Salv ortholog using a Salv conditional null allele and the Nkx2.5 cre allele that directs cardiac cr...
ORGANISM(S): Mus musculus 
The PIDDosome controls cardiomyocyte polyploidization during postnatal heart development
Single cell ATAC-seq of neonatal heart regeneration
Single cell RNA-seq of neonatal heart regeneration
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