Zebrafish heart regeneration depends on cardiac cell proliferation, epicardium activation and transient reparative tissue deposition. The contribution and the regulation of specific collagen types during the regenerative process, however, remain poorly characterized. Here, we identified that the non-fibrillar type XII collagen, which serves as a matrix-bridging component, is expressed in the epicardium of the zebrafish heart, and is boosted after cryoinjury-induced ventricular damage. During heart regeneration, an intense deposition of Collagen XII covers the outer epicardial cap and the interstitial reparative tissue. Analysis of the activated epicardium and fibroblast markers revealed a heterogeneous cellular origin of Collagen XI...
Myocardial injury, such as myocardial infarction (MI), can lead to drastic heart damage. Zebrafish h...
Cardiac valve disease can lead to severe cardiac dysfunction and is thus a frequent cause of morbidi...
<p>The teleost zebrafish (danio rerio) has a highly elevated regenerative capacity compared to mamma...
Zebrafish heart regeneration depends on cardiac cell proliferation, epicardium activation and transi...
Myocardial infarction is the major cause of cardiac injury in western countries and can result in a ...
In the zebrafish (Danio rerio), regeneration and fibrosis after cardiac injury are not mutually excl...
Single-cell RNA sequencing and spatiotemporal analysis of the regenerating zebrafish heart identify ...
The adult zebrafish heart has a high capacity for regeneration following injury. However, the compos...
AbstractUnlike adult mammals, adult zebrafish vigorously regenerate lost heart muscle in response to...
SummaryZebrafish possess a unique yet poorly understood capacity for cardiac regeneration. Here, we ...
Canonical roles for macrophages in mediating the fibrotic response after a heart attack include extr...
In the zebrafish (), regeneration and fibrosis after cardiac injury are not mutually exclusive respo...
Although well investigated, the importance of collagen fibers in supporting angiogenesis is not well...
In vertebrates, the craniofacial skeleton is developed from migratory multi-potent cells, the neural...
Mammalian hearts cannot regenerate. In contrast, zebrafish hearts regenerate even when up to 20% of ...
Myocardial injury, such as myocardial infarction (MI), can lead to drastic heart damage. Zebrafish h...
Cardiac valve disease can lead to severe cardiac dysfunction and is thus a frequent cause of morbidi...
<p>The teleost zebrafish (danio rerio) has a highly elevated regenerative capacity compared to mamma...
Zebrafish heart regeneration depends on cardiac cell proliferation, epicardium activation and transi...
Myocardial infarction is the major cause of cardiac injury in western countries and can result in a ...
In the zebrafish (Danio rerio), regeneration and fibrosis after cardiac injury are not mutually excl...
Single-cell RNA sequencing and spatiotemporal analysis of the regenerating zebrafish heart identify ...
The adult zebrafish heart has a high capacity for regeneration following injury. However, the compos...
AbstractUnlike adult mammals, adult zebrafish vigorously regenerate lost heart muscle in response to...
SummaryZebrafish possess a unique yet poorly understood capacity for cardiac regeneration. Here, we ...
Canonical roles for macrophages in mediating the fibrotic response after a heart attack include extr...
In the zebrafish (), regeneration and fibrosis after cardiac injury are not mutually exclusive respo...
Although well investigated, the importance of collagen fibers in supporting angiogenesis is not well...
In vertebrates, the craniofacial skeleton is developed from migratory multi-potent cells, the neural...
Mammalian hearts cannot regenerate. In contrast, zebrafish hearts regenerate even when up to 20% of ...
Myocardial injury, such as myocardial infarction (MI), can lead to drastic heart damage. Zebrafish h...
Cardiac valve disease can lead to severe cardiac dysfunction and is thus a frequent cause of morbidi...
<p>The teleost zebrafish (danio rerio) has a highly elevated regenerative capacity compared to mamma...