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The axolotl (Ambystoma mexicanum) is a caudate amphibian, which has an extraordinary ability to restore a wide variety of damaged structures by a process denominated epimorphosis. While the origin and potentiality of progenitor cells that take part during epimorphic regeneration are known to ...
2021-11-04 | MTBLS1708 | MetaboLights
Xenopus laevis tadpoles are capable of limb regeneration following amputation, in a process which initially involves the formation of a blastema. However, Xenopus has full regenerative capacity only through premetamorphic stages. We have used the Affymetrix Xenopus laevis Genome Genechip® microarr...
ORGANISM(S): Xenopus laevis 
Identifying the genetic program that induces limb regeneration in salamanders is an important resource for regenerative medicine, which currently lacks tools to promote regeneration of functional body structures. The genetic network underlying limb regeneration has been elusive due to the complexit...
ORGANISM(S): Ambystoma mexicanum 
Salamanders completely regenerate their limbs after amputation. Thus, these animals are unique models to investigate the mechanisms modulating the regeneration in vertebrates. To investigate the influence of microRNAs on the newt limb regeneration, an integrative analysis of microRNAome, transcript...
ORGANISM(S): Cynops Orientalis 
2018-12-17 | PXD012091 |
In this project, we studied the proteomic profiles of the early stages of blastema formation of neotenic and metamorphic axolotls after limb amputation by means of LC-MS/MS technology. We quantified a total of 714 proteins having an adjusted p < 0.01 with FC greater or equal to 2 between two conditi...
ORGANISM(S): Ambystoma mexicanum 
2019-11-25 | PXD014806 | Pride

This study investigates the effect of Achyranthes bidentata polysaccharide-strontium (ABPS-Sr) chelate on tibial dyschondroplasia (TD) in broilers and its underlying mechanisms. TD is a prevalent leg disorder in commercial broilers characterized by reduced angiogenesis in the tibial growth plate ...

2025-09-25 | MTBLS13045 | MetaboLights

This study investigates the effect of Achyranthes bidentata polysaccharide-strontium (ABPS-Sr) chelate on tibial dyschondroplasia (TD) in broilers and its underlying mechanisms. TD is a prevalent leg disorder in commercial broilers characterized by reduced angiogenesis in the tibial growth plate ...

2025-09-24 | MTBLS13038 | MetaboLights
Xenopus laevis tadpoles display a decreasing capacity to regenerate their limbs following injury according to developmental stage. By comparing the regenerative response during the naturally occurring regeneration-competent, -restricted and -incompetent stages, scRNAseq can reveal cell type changes ...
ORGANISM(S): Xenopus laevis 
MicroRNAs (miRNAs) are important in the regulation of many biological processes including muscle development. However, little is known regarding miRNA regulation of muscle regeneration. In mature murine tibialis anterior muscle following injury, 298 miRNAs were significantly changed during the time ...
ORGANISM(S): Mus musculus 
Mouse embryo limb bud regeneration
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