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Updated: Jul 16, 2026

Stab Wound Injury of the Zebrafish Adult Telencephalon: A Method to Investigate Vertebrate Brain Neurogenesis and Regeneration
Published on: August 4, 2014
Replicative Neuromast Regeneration in Response to Injury in Pleurodeles waltl
Shinichi Hayashi1, Ryohei Seki-Omura1, Yuki Sato1
1Department of Anatomy, Faculty of Medicine, Kansai Medical University, Osaka, Japan.
None:
The lateral line is a mechanosensory organ found in cyclostomes, teleosts, and amphibians. Hair cells within its neuromasts have kinocilia and stereocilia that sense water flow, and the lateral line nerve transduces this sensory input. Hair cells in the lateral line are analogous to those in the mammalian inner ear. Lateral line development and regeneration have been studied extensively in zebrafish. However, lateral line formation in other species remains poorly understood. The Iberian ribbed newt (Pleurodeles waltl) is a versatile model for regeneration with a short period of sexual maturation and aseasonal/prolific ovulation. Here, we investigated the features, regeneration processes, and additional neuromast formation in the posterior lateral line of Iberian ribbed newts using Brainbow reporters. The lateral line in the Iberian ribbed newts shares common features with other species. Laser ablation of hair cells or transection of the posterior lateral line nerve induced additional neuromast formation, to which epidermal cells contributed at least in part. We refer to it as "replicative neuromast regeneration" to allow distinction from several modes of neuromast formation in normal development. Based on these results, we propose that in response to injury, the posterior lateral line nerve induces epidermal cells to contribute to newly formed neuromasts in a replicative manner. Our results provide insights into lateral line morphogenesis.
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