AbstractThe adult human myocardium is incapable of regeneration; yet, the zebrafish (Danio rerio) can regenerate damaged myocardium. Similar to the zebrafish heart, hearts of neonatal, but not adult mice are capable of myocardial regeneration. We performed a proteomics analysis of adult zebrafish hearts and compared their protein expression profile to hearts from neonatal and adult mice. Using difference in-gel electrophoresis (DIGE), there was little overlap between the proteome from adult mouse (>8weeks old) and adult zebrafish (18months old) hearts. Similarly, there was a significant degree of mismatch between the protein expression in neonatal and adult mouse hearts. Enrichment analysis of the selected proteins revealed over-expression ...
Aims: the adult zebrafish heart regenerates spontaneously after injury and has been used to study th...
Cardiovascular disease remains the leading cause of mortality worldwide. Cardiomyocytes are irrevers...
AbstractZebrafish heart regeneration relies on the capacity of cardiomyocytes to proliferate upon in...
The adult human myocardium is incapable of regeneration; yet, the zebrafish (Danio rerio) can regene...
Adult zebrafish have the remarkable ability to regenerate their heart upon injury, a process that in...
Abstract Cardiovascular disease is the leading cause of death worldwide. Compared to other organs su...
The adult mammalian heart is a non-regenerative organ that fails to recover neither functionally nor...
Gaining cellular and molecular insights into heart development and regeneration will likely provide ...
The adult mammalian heart has an extremely limited capacity for regeneration. As a consequence, isch...
Failure to properly repair damaged due to myocardial infarction is a major cause of heart failure. I...
AbstractThe adult mammalian heart was once believed to be a post-mitotic organ without any capacity ...
In humans, myocardial infarction results in ventricular remodeling, progressing ultimately to cardia...
Mammalian hearts cannot regenerate. In contrast, zebrafish hearts regenerate even when up to 20% of ...
Tissue homeostasis is perturbed by stressful events, which can lead to organ dysfunction and failure...
The adult mammalian heart was once believed to be a post-mitotic organ without any capacity for rege...
Aims: the adult zebrafish heart regenerates spontaneously after injury and has been used to study th...
Cardiovascular disease remains the leading cause of mortality worldwide. Cardiomyocytes are irrevers...
AbstractZebrafish heart regeneration relies on the capacity of cardiomyocytes to proliferate upon in...
The adult human myocardium is incapable of regeneration; yet, the zebrafish (Danio rerio) can regene...
Adult zebrafish have the remarkable ability to regenerate their heart upon injury, a process that in...
Abstract Cardiovascular disease is the leading cause of death worldwide. Compared to other organs su...
The adult mammalian heart is a non-regenerative organ that fails to recover neither functionally nor...
Gaining cellular and molecular insights into heart development and regeneration will likely provide ...
The adult mammalian heart has an extremely limited capacity for regeneration. As a consequence, isch...
Failure to properly repair damaged due to myocardial infarction is a major cause of heart failure. I...
AbstractThe adult mammalian heart was once believed to be a post-mitotic organ without any capacity ...
In humans, myocardial infarction results in ventricular remodeling, progressing ultimately to cardia...
Mammalian hearts cannot regenerate. In contrast, zebrafish hearts regenerate even when up to 20% of ...
Tissue homeostasis is perturbed by stressful events, which can lead to organ dysfunction and failure...
The adult mammalian heart was once believed to be a post-mitotic organ without any capacity for rege...
Aims: the adult zebrafish heart regenerates spontaneously after injury and has been used to study th...
Cardiovascular disease remains the leading cause of mortality worldwide. Cardiomyocytes are irrevers...
AbstractZebrafish heart regeneration relies on the capacity of cardiomyocytes to proliferate upon in...