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Divergent stem cell mechanisms govern the primary body axis and appendage regeneration in the axolotl
Abstract Exploring the fundamental mechanisms of organ regeneration is crucial for advancing regenerative medicine. The axolotl tail represents an opportunity to study regeneration of the primary axis including segmented muscle, vertebrae, and skin. During tail development, muscle stem cells (MuSCs) displayed expected specificity to the muscle lineage.
Divergent stem cell mechanisms governing the primary body axis and appendage regeneration in the axolotl
Abstract Exploring the fundamental mechanisms of organ regeneration is crucial for advancing regenerative medicine. The axolotl tail represents a unique opportunity to study regeneration of the primary axis including segmented muscle, vertebrae and skin. During tail development, muscle stem cells (MuSCs) displayed expected specificity to the muscle lineage.
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