Sort   by:  
 Page size 
The mammalian heart has poor regenerative capacity following injury. In contrast, certain lower vertebrates such as zebrafish retain a robust capacity for regeneration into adult life. Here we use an integrated approach to identify evolutionary conserved regenerative miRNA-dependant regulatory circu...
ORGANISM(S): Danio rerio 
The mammalian heart has poor regenerative capacity following injury. In contrast, certain lower vertebrates such as zebrafish retain a robust capacity for regeneration into adult life. Here we use an integrated approach to identify evolutionary conserved regenerative miRNA-dependant regulatory circu...
ORGANISM(S): Mus musculus 
The mammalian heart has poor regenerative capacity following injury. In contrast, certain lower vertebrates such as zebrafish retain a robust capacity for regeneration into adult life. Here we use an integrated approach to identify evolutionary conserved regenerative miRNA-dependant regulatory circu...
ORGANISM(S): Danio rerio 
Neonatal mouse cardiomyocytes (NMC) were cultured in normoxia (21% O2) or hypoxia (3% O2) with and without a lentiviral shRNA-mediated knockdown of Hif1-alpha. Total RNA was extracted from NMC using RNeasy kit, cDNA was synthesized using GeneChip WT cDNA Synthesis and Amplification kit (Affymetrix 9...
ORGANISM(S): Mus musculus 
We systematically identified, annotated and characterised the mouse long non-coding transcriptome during myocardial infarction, revealing hundreds of novel heart specific lncRNAs with unique functional and regulatory characteristics. 2 conditions, 4 biological replicates per condition
ORGANISM(S): Mus musculus 
The mammalian heart has poor regenerative capacity following injury. In contrast, certain lower vertebrates such as zebrafish retain a robust capacity for regeneration into adult life. Here we use an integrated approach to identify evolutionary conserved regenerative miRNA-dependant regulatory circu...
ORGANISM(S): Mus musculus 
Sort   by:  
 Page size