Results 51 to 60 of about 3,132 (177)
The tetrapod salamander species axolotl ( Ambystoma mexicanum ) is capable of regenerating injured brain. For better understanding the mechanisms of brain regeneration, it is very necessary to establish a rapid and efficient gain-of-function and loss-of ...
Sulei Fu +5 more
doaj +1 more source
A Morphological and Histological Investigation of Imperfect Lungfish Fin Regeneration
Regeneration, the replacement of body parts in a living animal, has excited scientists for centuries and our knowledge of vertebrate appendage regeneration has increased significantly over the past decades.
Vivien Bothe +3 more
doaj +1 more source
Muscles are barely required for the patterning and cell dynamics in axolotl limb regeneration
Regeneration of a complex appendage structure such as limb requires upstream and downstream coordination of multiple types of cells. Given type of cell may sit at higher upstream position to control the activities of other cells.
Yan Hu +11 more
doaj +1 more source
Green‐synthesized ZnO‐reinforced 3D‐printed scaffolds and electrospun PVA‐methotrexate nanofibers are combined into a bilayer wound dressing. The resulting system provides mechanical support, antibacterial performance, sustained methotrexate release, and cytocompatibility, offering a promising multifunctional strategy for localized wound management ...
Ahmad Saqib Qaeym +6 more
wiley +1 more source
Retinoic Acid Signalling Regulates Zebrafish Tooth Germ Repair Following Injury
Retinoic acid signalling may regulate the repair processes in a tooth germ injury model using Tg(scpp5:Dendra2‐NTR) zebrafish and the nitroreductase (NTR)/metronidazole (MTZ) system. ABSTRACT Although the role of retinoic acid (RA) signalling in odontogenesis is well established, its involvement in the repair of injured tooth germs remains unclear.
Qiqi Liu +4 more
wiley +1 more source
Axolotls are known for their remarkable regeneration ability. Exploring their transcriptome provides insight into regenerative mechanisms. However, the current annotation of the axolotl transcriptome is limited, leaving the role of unannotated ...
Tian Qin +7 more
doaj +1 more source
Differential Immune Responses Correlate With Chytridiomycosis Severity in Italian Crested Newts
ABSTRACT In the midst of the current biodiversity crisis, amphibians are severely threatened by emerging diseases such as chytridiomycosis. Characterizing the mechanisms that underlie susceptibility to this disease is fundamental to improve amphibian conservation.
Léa Fieschi‐Méric +7 more
wiley +1 more source
Accelerated cell divisions drive the outgrowth of the regenerating spinal cord in axolotls
Axolotls are unique in their ability to regenerate the spinal cord. However, the mechanisms that underlie this phenomenon remain poorly understood. Previously, we showed that regenerating stem cells in the axolotl spinal cord revert to a molecular state ...
Fabian Rost +6 more
doaj +1 more source
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.
Hugo Varela-Rodríguez +9 more
doaj +1 more source
Regeneration of the lizard heart after cryoinjury
Abstract Lizards are renowned for their tremendous potential to heal tissues and organs after injury, but little is known about myocardial regeneration in reptiles generally. Here, we study cardiac regeneration in the leopard gecko (Eublepharis macularius) to fill the knowledge gap between traditional models of poikilothermic (zebrafish) and ...
Martina Gregorovicova +5 more
wiley +1 more source

