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Updated: Mar 7, 2026

Generation of Chimeric Axolotls with Mutant Haploid Limbs Through Embryonic Grafting
Published on: January 29, 2020
Repeated removal of developing limb buds permanently reduces appendage size in the highly-regenerative axolotl
Donald M Bryant1, Konstantinos Sousounis2, Johanna E Farkas3
1Harvard Medical School, the Harvard stem Cell Institute, and the Department of Orthopedic Surgery, Brigham & Women's Hospital, Cambridge, MA 02139, USA.
Abstract:
Matching appendage size to body size is fundamental to animal function. Generating an appropriately-sized appendage is a robust process executed during development which is also critical for regeneration. When challenged, larger animals are programmed to regenerate larger limbs than smaller animals within a single species. Understanding this process has important implications for regenerative medicine. To approach this complex question, models with altered appendage size:body size ratios are required. We hypothesized that repeatedly challenging axolotls to regrow limb buds would affect their developmental program resulting in altered target morphology. We discovered that after 10 months following this experimental procedure, limbs that developed were permanently miniaturized. This altered target morphology was preserved upon amputation and regeneration. Future experiments using this platform should provide critical information about how target limb size is encoded within limb progenitors.
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