Zebrafish have an unlimited capacity to regenerate bone after fin amputation. In this process, mature osteoblasts dedifferentiate to osteogenic precursor cells and thus represent an important source of newly forming bone. By contrast, differentiated osteoblasts do not appear to contribute to repair of bone injuries in mammals; rather, osteoblasts form anew from mesenchymal stem cells. This raises the question whether osteoblast dedifferentiation is specific to appendage regeneration, a special feature of the lepidotrichia bone of the fish fin, or a process found more generally in fish bone. Here, we show that dedifferentiation of mature osteoblasts is not restricted to fin regeneration after amputation, but also occurs during repair of zebr...
The origin of cells that generate the blastema following appendage amputation has been a long-standi...
AbstractUnlike humans, some vertebrate animals are able to completely regenerate damaged appendages ...
© 2011. Published by The Company of Biologists Lt.The origin of cells that generate the blastema fol...
Zebrafish have an unlimited capacity to regenerate bone after fin amputation. In this process, matur...
SummaryWhile mammals have a limited capacity to repair bone defects, zebrafish can completely regene...
While mammals have a limited capacity to repair bone defects, zebrafish can completely regenerate am...
SummaryDetermining the cellular source of new skeletal elements is critical for understanding append...
Mammals cannot re-form heavily damaged bones as in large fracture gaps, whereas zebrafish efficientl...
Mammals cannot re-form heavily damaged bones as in large fracture gaps, whereas zebrafish efficientl...
SummaryWhile mammals have a limited capacity to repair bone defects, zebrafish can completely regene...
SummaryDetermining the cellular source of new skeletal elements is critical for understanding append...
Mammals cannot re-form heavily damaged bones as in large fracture gaps, whereas zebrafish efficientl...
While mammals have a limited capacity to repair bone fractures, zebrafish can completely regenerate ...
While mammals have a limited capacity to repair bone fractures, zebrafish can completely regenerate ...
Summary While mammals have a limited capacity to repair bone fractures, zebrafish can completely reg...
The origin of cells that generate the blastema following appendage amputation has been a long-standi...
AbstractUnlike humans, some vertebrate animals are able to completely regenerate damaged appendages ...
© 2011. Published by The Company of Biologists Lt.The origin of cells that generate the blastema fol...
Zebrafish have an unlimited capacity to regenerate bone after fin amputation. In this process, matur...
SummaryWhile mammals have a limited capacity to repair bone defects, zebrafish can completely regene...
While mammals have a limited capacity to repair bone defects, zebrafish can completely regenerate am...
SummaryDetermining the cellular source of new skeletal elements is critical for understanding append...
Mammals cannot re-form heavily damaged bones as in large fracture gaps, whereas zebrafish efficientl...
Mammals cannot re-form heavily damaged bones as in large fracture gaps, whereas zebrafish efficientl...
SummaryWhile mammals have a limited capacity to repair bone defects, zebrafish can completely regene...
SummaryDetermining the cellular source of new skeletal elements is critical for understanding append...
Mammals cannot re-form heavily damaged bones as in large fracture gaps, whereas zebrafish efficientl...
While mammals have a limited capacity to repair bone fractures, zebrafish can completely regenerate ...
While mammals have a limited capacity to repair bone fractures, zebrafish can completely regenerate ...
Summary While mammals have a limited capacity to repair bone fractures, zebrafish can completely reg...
The origin of cells that generate the blastema following appendage amputation has been a long-standi...
AbstractUnlike humans, some vertebrate animals are able to completely regenerate damaged appendages ...
© 2011. Published by The Company of Biologists Lt.The origin of cells that generate the blastema fol...