PUBLICATION

Neurogenesis of retinal ganglion cells is not essential to visual functional recovery after optic nerve injury in adult zebrafish

Authors
Zou, S., Tian, C., Ge, S., and Hu, B.
ID
ZDB-PUB-130312-2
Date
2013
Source
PLoS One   8(2): e57280 (Journal)
Registered Authors
Keywords
none
MeSH Terms
  • Animals
  • Axons/physiology
  • Axons/ultrastructure
  • Bromodeoxyuridine
  • Cell Count
  • Cell Survival
  • Microscopy, Electron, Transmission
  • Microscopy, Fluorescence
  • Myelin Sheath/physiology
  • Myelin Sheath/ultrastructure
  • Nerve Crush
  • Nerve Regeneration/physiology*
  • Neurogenesis/physiology
  • Optic Nerve/physiology*
  • Optic Nerve Injuries/pathology*
  • Recovery of Function/physiology*
  • Retinal Ganglion Cells/physiology*
  • Retinal Ganglion Cells/ultrastructure
  • Zebrafish/physiology*
PubMed
23437359 Full text @ PLoS One
Abstract

Zebrafish central nervous system (CNS) possesses a strong neural regeneration ability to restore visual function completely after optic nerve injury (ONI). However, whether neurogenesis of retinal ganglion cell (RGC) contributes to functional recovery remains controversial. Our quantitative analysis of RGCs in different ONI models showed that almost all RGCs survived in optic nerve crush (ONC) model; while over 90% of RGCs survived in the first 2 weeks with 75% remaining after 7 weeks in optic nerve transection (ONT) model. Retrograde labeling from tectum revealed a surprising regeneration rate, with over 90% and over 50% of RGCs regrowing axons to tectum at the first week in ONC and ONT model respectively. In the latter one, the number of regenerative RGCs after 4 weeks had no significant difference from the control group. As for neurogenesis, newborn RGCs were rarely detected either by double retrograde labeling or BrdU marker. Since few RGCs died, microglia number showed a temporary increase at 3 days post injury (dpi) and a decrease at 14 dpi. Finally, myelin structure within retina kept integrity and optomotor response (OMR) test demonstrated visual functional restoration at 5 weeks post injury (wpi). In conclusion, our results have directly shown that RGC survival and axon regrowth are responsible for functional recovery after ONI in adult zebrafish.

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