The salamander is the only tetrapod that regenerates complex body structures throughout life. Deciphering the underlying molecular processes of regeneration is fundamental for regenerative medicine and developmental biology, but the model organism had limited tools for molecular analysis. We describe a comprehensive set of germline transgenic strains in the laboratory-bred salamander Ambystoma mexicanum (axolotl) that open up the cellular and molecular genetic dissection of regeneration. We demonstrate tissue-dependent control of gene expression in nerve, Schwann cells, oligodendrocytes, muscle, epidermis, and cartilage. Furthermore, we demonstrate the use of tamoxifen-induced Cre/loxP-mediated recombination to indelibly mark different cell...
International audienceSalamanders exhibit an extraordinary ability among vertebrates to regenerate c...
AbstractThe ability of animals to repair tissue damage is widespread and impressive. Among tissues, ...
Salamanders are unique among adult vertebrates in their ability to regenerate complex body structure...
The salamander is the only tetrapod that regenerates complex body structures throughout life. Deciph...
The salamander is the only tetrapod that regenerates complex body structures throughout life. Deciph...
The salamander is the only tetrapod that regenerates complex body structures throughout life. Deciph...
SummaryThe salamander is the only tetrapod that functionally regenerates all cell types of the limb ...
AbstractThe development of transgenesis in axolotls is crucial for studying development and regenera...
AbstractThe capacity for tissue and organ regeneration in humans is dwarfed by comparison to that of...
How the axolotl makes a new limbUnlike most vertebrate limbs, the axolotl limb regenerates the skele...
The establishment of transgenesisi in axolotls is crucial for studying development and regeneration,...
The present thesis is a contribution to unravel the molecular mechanisms that underlie urodele regen...
Salamanders have a remarkable ability to regenerate complex body parts including the limb, tail, and...
Background Molecular studies of appendage regeneration have been hindered by the lack of a stable an...
During salamander limb regeneration, nerves provide signals that induce the formation of a mass of p...
International audienceSalamanders exhibit an extraordinary ability among vertebrates to regenerate c...
AbstractThe ability of animals to repair tissue damage is widespread and impressive. Among tissues, ...
Salamanders are unique among adult vertebrates in their ability to regenerate complex body structure...
The salamander is the only tetrapod that regenerates complex body structures throughout life. Deciph...
The salamander is the only tetrapod that regenerates complex body structures throughout life. Deciph...
The salamander is the only tetrapod that regenerates complex body structures throughout life. Deciph...
SummaryThe salamander is the only tetrapod that functionally regenerates all cell types of the limb ...
AbstractThe development of transgenesis in axolotls is crucial for studying development and regenera...
AbstractThe capacity for tissue and organ regeneration in humans is dwarfed by comparison to that of...
How the axolotl makes a new limbUnlike most vertebrate limbs, the axolotl limb regenerates the skele...
The establishment of transgenesisi in axolotls is crucial for studying development and regeneration,...
The present thesis is a contribution to unravel the molecular mechanisms that underlie urodele regen...
Salamanders have a remarkable ability to regenerate complex body parts including the limb, tail, and...
Background Molecular studies of appendage regeneration have been hindered by the lack of a stable an...
During salamander limb regeneration, nerves provide signals that induce the formation of a mass of p...
International audienceSalamanders exhibit an extraordinary ability among vertebrates to regenerate c...
AbstractThe ability of animals to repair tissue damage is widespread and impressive. Among tissues, ...
Salamanders are unique among adult vertebrates in their ability to regenerate complex body structure...