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1. Putative epithelial-mesenchymal transitions during salamander limb regeneration: Current perspectives and future investigations.

2. Amputation Triggers Long-Range Epidermal Permeability Changes in Evolutionarily Distant Regenerative Organisms.

3. Harmonized cross-species cell atlases of trigeminal and dorsal root ganglia.

4. Identification and Analysis of Axolotl Homologs for Proteins Implicated in Human Neurodegenerative Proteinopathies.

6. The salamander blastema within the broader context of metazoan regeneration.

7. Harmonized cross-species cell atlases of trigeminal and dorsal root ganglia.

8. Limb blastema formation: How much do we know at a genetic and epigenetic level?

9. A Practical Guide for CRISPR-Cas9-Induced Mutations in Axolotls.

10. Finding Solutions for Fibrosis: Understanding the Innate Mechanisms Used by Super-Regenerator Vertebrates to Combat Scarring.

11. A cross-species analysis of systemic mediators of repair and complex tissue regeneration.

13. von Willebrand factor D and EGF domains is an evolutionarily conserved and required feature of blastemas capable of multitissue appendage regeneration.

14. Eya2 promotes cell cycle progression by regulating DNA damage response during vertebrate limb regeneration.

15. Discovery of several thousand highly diverse circular DNA viruses.

17. Parallels between wound healing, epimorphic regeneration and solid tumors.

18. Precise control of ion channel and gap junction expression is required for patterning of the regenerating axolotl limb.

19. Treatment with Human Amniotic Suspension Allograft Improves Tendon Healing in a Rat Model of Collagenase-Induced Tendinopathy.

20. Development: How Tadpoles ROC Tail Regeneration.

21. Bioelectrical controls of morphogenesis: from ancient mechanisms of cell coordination to biomedical opportunities.

22. Common themes in tetrapod appendage regeneration: a cellular perspective.

23. Transcriptomic landscape of the blastema niche in regenerating adult axolotl limbs at single-cell resolution.

24. Complement Receptor C5aR1 Plays an Evolutionarily Conserved Role in Successful Cardiac Regeneration.

25. Systemic cell cycle activation is induced following complex tissue injury in axolotl.

26. An integrative framework for salamander and mouse limb regeneration.

27. Identification of regenerative roadblocks via repeat deployment of limb regeneration in axolotls.

28. Advances in Decoding Axolotl Limb Regeneration.

29. DiI Perfusion as a Method for Vascular Visualization in Ambystoma mexicanum.

30. Repeated removal of developing limb buds permanently reduces appendage size in the highly-regenerative axolotl.

31. A Tissue-Mapped Axolotl De Novo Transcriptome Enables Identification of Limb Regeneration Factors.

32. Neuregulin-1 signaling is essential for nerve-dependent axolotl limb regeneration.

33. TALEN-mediated gene editing of the thrombospondin-1 locus in axolotl.

34. Pseudotyped retroviruses for infecting axolotl.

35. Subunits of the Drosophila actin-capping protein heterodimer regulate each other at multiple levels.

36. Pseudotyped retroviruses for infecting axolotl in vivo and in vitro.

37. Inducible genetic system for the axolotl.

38. Dynamic expression of two thrombospondins during axolotl limb regeneration.

39. Regeneration review reprise.

40. Limb regeneration revisited.

41. Ptpmeg is required for the proper establishment and maintenance of axon projections in the central brain of Drosophila.

42. Dynactin is required to maintain nuclear position within postmitotic Drosophila photoreceptor neurons.

43. Specifying axon identity with Syd-1.

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