peer reviewedThe zebrafish has the capacity to regenerate its heart after severe injury. While the function of a few genes during this process has been studied, we are far from fully understanding how genes interact to coordinate heart regeneration. To enable systematic insights into this phenomenon, we generated and integrated a dynamic co-expression network of heart regeneration in the zebrafish and linked systems-level properties to the underlying molecular events. Across multiple post-injury time points, the network displays topological attributes of biological relevance. We show that regeneration steps are mediated by modules of transcriptionally coordinated genes, and by genes acting as network hubs. We also established direct associa...
Mammalian hearts cannot regenerate. In contrast, zebrafish hearts regenerate even when up to 20% of ...
The adult human heart has a very poor capacity to repair itself following injury. During heart attac...
The adult human heart has a very poor capacity to repair itself following injury. During heart attac...
The zebrafish has the capacity to regenerate its heart after severe injury. While the function of 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...
Background: Zebrafish is a clinically-relevant model of heart regeneration. Unlike mammals, it has a...
BACKGROUND: Zebrafish is a clinically-relevant model of heart regeneration. Unlike mammals, it has a...
Zebrafish have the capacity to fully regenerate the heart after an injury, which lies in sharp contr...
Humans can, if they survived a cardiac injury such as heart infarction, heal this cardiac injury onl...
Mammalian hearts cannot regenerate. In contrast, zebrafish hearts regenerate even when up to 20% of ...
In humans, myocardial infarction results in ventricular remodeling, progressing ultimately to cardia...
The heart plays the vital role of propelling blood to the entire body, which is essential to life. W...
Mammalian hearts cannot regenerate. In contrast, zebrafish hearts regenerate even when up to 20% of ...
The adult human heart has a very poor capacity to repair itself following injury. During heart attac...
The adult human heart has a very poor capacity to repair itself following injury. During heart attac...
The zebrafish has the capacity to regenerate its heart after severe injury. While the function of 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...
Background: Zebrafish is a clinically-relevant model of heart regeneration. Unlike mammals, it has a...
BACKGROUND: Zebrafish is a clinically-relevant model of heart regeneration. Unlike mammals, it has a...
Zebrafish have the capacity to fully regenerate the heart after an injury, which lies in sharp contr...
Humans can, if they survived a cardiac injury such as heart infarction, heal this cardiac injury onl...
Mammalian hearts cannot regenerate. In contrast, zebrafish hearts regenerate even when up to 20% of ...
In humans, myocardial infarction results in ventricular remodeling, progressing ultimately to cardia...
The heart plays the vital role of propelling blood to the entire body, which is essential to life. W...
Mammalian hearts cannot regenerate. In contrast, zebrafish hearts regenerate even when up to 20% of ...
The adult human heart has a very poor capacity to repair itself following injury. During heart attac...
The adult human heart has a very poor capacity to repair itself following injury. During heart attac...