Axolotls, with their extensive abilities to regenerate as adults, provide a useful model in which to study the mechanisms of regeneration in a vertebrate, in hopes of understanding why other vertebrates cannot regenerate. Although the expression of many genes has been described in regeneration, techniques for functional analysis have so far been limited. In this paper we demonstrate a new method for efficient overexpression of foreign genes in axolotls. Using vaccinia virus expressing beta-galactosidase microinjected into regenerating limbs, we show that vaccinia can infect both dividing and nondividing limb cells. The site of infection remains discrete and there is no secondary spread of infection to nearby cells. beta-Gal is expressed at ...
While it is appreciated that global gene expression analyses can provide novel insights about comple...
The salamander has the remarkable ability to regenerate its limb after amputation. Cells at the site...
Axolotl salamanders are powerful models for understanding how regeneration of complex body parts can...
Axolotls, with their extensive abilities to regenerate as adults, provide a useful model in which to...
AbstractAxolotls, with their extensive abilities to regenerate as adults, provide a useful model in ...
Axolotls can regenerate complex structures through recruitment and remodeling of cells within mature...
Understanding how the limb blastema is established after the initial wound healing response is an im...
AbstractThe capacity for tissue and organ regeneration in humans is dwarfed by comparison to that of...
Axolotls are unique among vertebrates in their ability to regenerate lost appendages as adults. They...
The capacity for tissue and organ regeneration in humans is dwarfed by comparison to that of salaman...
Background Molecular studies of appendage regeneration have been hindered by the lack of a stable an...
Understanding how the limb blastema is established after the initial wound healing response is an im...
<div><p>The salamander has the remarkable ability to regenerate its limb after amputation. Cells at ...
Adult urodeles (salamanders) are unique in their ability to regenerate complex organs perfectly. The...
AbstractAdult urodeles (salamanders) are unique in their ability to regenerate complex organs perfec...
While it is appreciated that global gene expression analyses can provide novel insights about comple...
The salamander has the remarkable ability to regenerate its limb after amputation. Cells at the site...
Axolotl salamanders are powerful models for understanding how regeneration of complex body parts can...
Axolotls, with their extensive abilities to regenerate as adults, provide a useful model in which to...
AbstractAxolotls, with their extensive abilities to regenerate as adults, provide a useful model in ...
Axolotls can regenerate complex structures through recruitment and remodeling of cells within mature...
Understanding how the limb blastema is established after the initial wound healing response is an im...
AbstractThe capacity for tissue and organ regeneration in humans is dwarfed by comparison to that of...
Axolotls are unique among vertebrates in their ability to regenerate lost appendages as adults. They...
The capacity for tissue and organ regeneration in humans is dwarfed by comparison to that of salaman...
Background Molecular studies of appendage regeneration have been hindered by the lack of a stable an...
Understanding how the limb blastema is established after the initial wound healing response is an im...
<div><p>The salamander has the remarkable ability to regenerate its limb after amputation. Cells at ...
Adult urodeles (salamanders) are unique in their ability to regenerate complex organs perfectly. The...
AbstractAdult urodeles (salamanders) are unique in their ability to regenerate complex organs perfec...
While it is appreciated that global gene expression analyses can provide novel insights about comple...
The salamander has the remarkable ability to regenerate its limb after amputation. Cells at the site...
Axolotl salamanders are powerful models for understanding how regeneration of complex body parts can...