Retinal Regeneration

Retinal regeneration is the biological restoration of damaged retinal cells and visual tissue, an important goal in biology because many retinal disorders cause permanent vision loss. After injury, regenerative species such as zebrafish can activate Müller glia, which re-enter the cell cycle and generate progenitor-like cells that replace neurons and other retinal components; this response is far more limited in adult mammals. Studying these cellular mechanisms helps researchers identify signals that control retinal repair, cell differentiation, and tissue integration. The findings may support future treatments for degenerative diseases, including strategies based on stem cells, gene regulation, or stimulation of endogenous repair.

Retinal Regeneration - Related Videos

Research

JoVE EoE - Neuroimaging

Imaging and Quantification of Axonal Regeneration in Axotomized Rat Retinal Ganglion Neurons

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2025

Source: Portela-Lomba, M., et. al. Coculture of Axotomized Rat Retinal Ganglion Neurons with Olfactory Ensheathing Glia, as an In Vitro Model of Adult Axonal Regeneration. J. Vis. Exp. (2020).This video demonstrates imaging and quantification of axonal regeneration in axotomized rat retinal ganglion neurons (RGNs) co-cultured with immortalized human olfactory ensheathing glia cells. RGNs are immunolabeled, with red somas and green axons. Images were captured using an epifluorescence microscope,...

Modeling Retinal Degeneration and Regeneration in Zebrafish Using a Focal Laser Injury

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2025

This video demonstrates a procedure to induce retinal degeneration in adult zebrafish using laser injury. The laser targets photoreceptor cells in the retina, triggering cell death and a degenerative process. This damage activates Müller glia (MG) cells, leading to their dedifferentiation into stem cell progenitors that aid in retinal regeneration.

A Novel Light Damage Paradigm for Use in Retinal Regeneration Studies in Adult Zebrafish

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Cited by 19 •

2013

Multiple light damage protocols have been described to damage photoreceptors and consequently induce a retinal regeneration response in adult zebrafish. This protocol describes an improved method that can be used in pigmented animals and that damages the vast majority of rod and cone photoreceptors across the entire retina.

Müller Glia Cell Activation in a Laser-induced Retinal Degeneration and Regeneration Model in Zebrafish

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Cited by 13 •

2017

The zebrafish is a popular animal model to study mechanisms of retinal degeneration/regeneration in vertebrates. This protocol describes a method to induce localized injury disrupting the outer retina with minimal damage to the inner retina. Subsequently, we monitor in vivo the retinal morphology and the Müller glia response throughout retinal regeneration.

Live Cell Imaging of Muller Glial Nuclear Migration During Zebrafish Retinal Regeneration

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2025

Source: Lahne, M., et.al. Culture of Adult Transgenic Zebrafish Retinal Explants for Live-cell Imaging by Multiphoton Microscopy. J. Vis. Exp. (2017)This video demonstrates live-cell imaging of Muller glial nuclear migration in agarose-embedded zebrafish retinal explants following light-induced photoreceptor damage. Tumor necrosis factor-alpha (TNF-α) released by damaged photoreceptors activates Muller glial cells, triggering nuclear migration through the inner and outer nuclear layers for...

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