SummaryIn contrast to mammals, zebrafish regenerate heart injuries via proliferation of cardiomyocytes located near the wound border. To identify regulators of cardiomyocyte proliferation, we used spatially resolved RNA sequencing (tomo-seq) and generated a high-resolution genome-wide atlas of gene expression in the regenerating zebrafish heart. Interestingly, we identified two wound border zones with distinct expression profiles, including the re-expression of embryonic cardiac genes and targets of bone morphogenetic protein (BMP) signaling. Endogenous BMP signaling has been reported to be detrimental to mammalian cardiac repair. In contrast, we find that genetic or chemical inhibition of BMP signaling in zebrafish reduces cardiomyocyte de...
Despite a notable reduction in incidence of acute myocardial infarction (MI), patients who experienc...
Humans can, if they survived a cardiac injury such as heart infarction, heal this cardiac injury onl...
Background: Zebrafish is a clinically-relevant model of heart regeneration. Unlike mammals, it has a...
In contrast to mammals, zebrafish regenerate heart injuries via proliferation of cardiomyocytes loca...
SummaryIn contrast to mammals, zebrafish regenerate heart injuries via proliferation of cardiomyocyt...
In contrast to mammals, zebrafish regenerate heart injuries via proliferation of cardiomyocytes loca...
Mammalian hearts cannot regenerate. In contrast, zebrafish hearts regenerate even when up to 20% of ...
peer reviewedThe zebrafish has the capacity to regenerate its heart after severe injury. While the f...
In humans, myocardial infarction results in ventricular remodeling, progressing ultimately to cardia...
BACKGROUND: Zebrafish is a clinically-relevant model of heart regeneration. Unlike mammals, it has a...
The zebrafish has the capacity to regenerate its heart after severe injury. While the function of a ...
Despite a notable reduction in incidence of acute myocardial infarction (MI), patients who experienc...
Humans can, if they survived a cardiac injury such as heart infarction, heal this cardiac injury onl...
Background: Zebrafish is a clinically-relevant model of heart regeneration. Unlike mammals, it has a...
In contrast to mammals, zebrafish regenerate heart injuries via proliferation of cardiomyocytes loca...
SummaryIn contrast to mammals, zebrafish regenerate heart injuries via proliferation of cardiomyocyt...
In contrast to mammals, zebrafish regenerate heart injuries via proliferation of cardiomyocytes loca...
Mammalian hearts cannot regenerate. In contrast, zebrafish hearts regenerate even when up to 20% of ...
peer reviewedThe zebrafish has the capacity to regenerate its heart after severe injury. While the f...
In humans, myocardial infarction results in ventricular remodeling, progressing ultimately to cardia...
BACKGROUND: Zebrafish is a clinically-relevant model of heart regeneration. Unlike mammals, it has a...
The zebrafish has the capacity to regenerate its heart after severe injury. While the function of a ...
Despite a notable reduction in incidence of acute myocardial infarction (MI), patients who experienc...
Humans can, if they survived a cardiac injury such as heart infarction, heal this cardiac injury onl...
Background: Zebrafish is a clinically-relevant model of heart regeneration. Unlike mammals, it has a...