SummaryWhile mammals have a limited capacity to repair bone defects, zebrafish can completely regenerate amputated bony structures of their fins. Fin regeneration is dependent on formation of a blastema, a progenitor cell pool accumulating at the amputation plane. It is unclear which cells the blastema is derived from, whether it forms by dedifferentiation of mature cells, and whether blastema cells are multipotent. We show that mature osteoblasts dedifferentiate and form part of the blastema. Osteoblasts downregulate expression of intermediate and late bone differentiation markers and induce genes expressed by bone progenitors. Dedifferentiated osteoblasts proliferate in a FGF-dependent manner and migrate to form part of the blastema. Gene...
© 2011. Published by The Company of Biologists Lt.The origin of cells that generate the blastema fol...
The origin of cells that generate the blastema following appendage amputation has been a long-standi...
Normally, in fish fin regeneration, bone regenerates from bone. But what happens when there is no bo...
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...
AbstractUnlike humans, some vertebrate animals are able to completely regenerate damaged appendages ...
SummaryDetermining the cellular source of new skeletal elements is critical for understanding append...
Zebrafish have an unlimited capacity to regenerate bone after fin amputation. In this process, matur...
Zebrafish have an unlimited capacity to regenerate bone after fin amputation. In this process, matur...
AbstractUnlike humans, some vertebrate animals are able to completely regenerate damaged appendages ...
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...
Mammals cannot re-form heavily damaged bones as in large fracture gaps, whereas zebrafish efficientl...
The origin of cells that generate the blastema following appendage amputation has been a long-standi...
© 2011. Published by The Company of Biologists Lt.The origin of cells that generate the blastema fol...
The origin of cells that generate the blastema following appendage amputation has been a long-standi...
Normally, in fish fin regeneration, bone regenerates from bone. But what happens when there is no bo...
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...
AbstractUnlike humans, some vertebrate animals are able to completely regenerate damaged appendages ...
SummaryDetermining the cellular source of new skeletal elements is critical for understanding append...
Zebrafish have an unlimited capacity to regenerate bone after fin amputation. In this process, matur...
Zebrafish have an unlimited capacity to regenerate bone after fin amputation. In this process, matur...
AbstractUnlike humans, some vertebrate animals are able to completely regenerate damaged appendages ...
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...
Mammals cannot re-form heavily damaged bones as in large fracture gaps, whereas zebrafish efficientl...
The origin of cells that generate the blastema following appendage amputation has been a long-standi...
© 2011. Published by The Company of Biologists Lt.The origin of cells that generate the blastema fol...
The origin of cells that generate the blastema following appendage amputation has been a long-standi...
Normally, in fish fin regeneration, bone regenerates from bone. But what happens when there is no bo...