The adult zebrafish heart has a high capacity for regeneration following injury. However, the composition of the regenerative niche has remained largely elusive. Here, we dissected the diversity of activated cell states in the regenerating zebrafish heart based on single-cell transcriptomics and spatiotemporal analysis. We observed the emergence of several transient cell states with fibroblast characteristics following injury, and we outlined the proregenerative function of collagen-12-expressing fibroblasts. To understand the cascade of events leading to heart regeneration, we determined the origin of these cell states by high-throughput lineage tracing. We found that activated fibroblasts were derived from two separate sources: the epicar...
<p>Heart disease is the leading cause of death in the developed world. Adult mammals cannot replace ...
Mammalian hearts cannot regenerate. In contrast, zebrafish hearts regenerate even when up to 20% of ...
Zebrafish heart regeneration relies on the capacity of cardiomyocytes to proliferate upon injury. To...
Single-cell RNA sequencing and spatiotemporal analysis of the regenerating zebrafish heart identify ...
In the zebrafish heart, several transient fibroblast types appear after injury. High-throughput line...
SummaryZebrafish possess a unique yet poorly understood capacity for cardiac regeneration. Here, we ...
In the zebrafish (Danio rerio), regeneration and fibrosis after cardiac injury are not mutually excl...
AbstractUnlike adult mammals, adult zebrafish vigorously regenerate lost heart muscle in response to...
In the zebrafish (), regeneration and fibrosis after cardiac injury are not mutually exclusive respo...
Humans can, if they survived a cardiac injury such as heart infarction, heal this cardiac injury onl...
AbstractZebrafish heart regeneration relies on the capacity of cardiomyocytes to proliferate upon in...
Adult zebrafish have the remarkable ability to regenerate their heart upon injury, a process that in...
Cardiac regeneration occurs primarily through proliferation of existing cardiomyocytes, but also inv...
<p>The teleost zebrafish (danio rerio) has a highly elevated regenerative capacity compared to mamma...
The zebrafish has the capacity to regenerate its heart after severe injury. While the function of a ...
<p>Heart disease is the leading cause of death in the developed world. Adult mammals cannot replace ...
Mammalian hearts cannot regenerate. In contrast, zebrafish hearts regenerate even when up to 20% of ...
Zebrafish heart regeneration relies on the capacity of cardiomyocytes to proliferate upon injury. To...
Single-cell RNA sequencing and spatiotemporal analysis of the regenerating zebrafish heart identify ...
In the zebrafish heart, several transient fibroblast types appear after injury. High-throughput line...
SummaryZebrafish possess a unique yet poorly understood capacity for cardiac regeneration. Here, we ...
In the zebrafish (Danio rerio), regeneration and fibrosis after cardiac injury are not mutually excl...
AbstractUnlike adult mammals, adult zebrafish vigorously regenerate lost heart muscle in response to...
In the zebrafish (), regeneration and fibrosis after cardiac injury are not mutually exclusive respo...
Humans can, if they survived a cardiac injury such as heart infarction, heal this cardiac injury onl...
AbstractZebrafish heart regeneration relies on the capacity of cardiomyocytes to proliferate upon in...
Adult zebrafish have the remarkable ability to regenerate their heart upon injury, a process that in...
Cardiac regeneration occurs primarily through proliferation of existing cardiomyocytes, but also inv...
<p>The teleost zebrafish (danio rerio) has a highly elevated regenerative capacity compared to mamma...
The zebrafish has the capacity to regenerate its heart after severe injury. While the function of a ...
<p>Heart disease is the leading cause of death in the developed world. Adult mammals cannot replace ...
Mammalian hearts cannot regenerate. In contrast, zebrafish hearts regenerate even when up to 20% of ...
Zebrafish heart regeneration relies on the capacity of cardiomyocytes to proliferate upon injury. To...