Light Induced Retinal Degeneration

Light-induced retinal degeneration is an experimental model and pathological process in which excessive or damaging illumination injures retinal cells, especially rod and cone photoreceptors, causing visual dysfunction. Intense light can drive sustained phototransduction and metabolic demand, promote oxidative stress and mitochondrial damage, and trigger photoreceptor death followed by retinal inflammation and remodeling. In neuroscience research, this model helps clarify mechanisms of retinal injury, neuroinflammation, and neuron survival, while providing a controlled system for evaluating protective compounds, gene-based interventions, and regenerative strategies. Findings can improve understanding of retinal diseases in which oxidative and light-related stress contribute to vision loss.

Light Induced Retinal Degeneration - Related Videos

Research

JoVE Journal - Neuroscience

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.

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.

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.

Light-Evoked Postsynaptic Responses in Neurons of Mouse Retinal Slices

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2025

This video demonstrates the recording of light-evoked post-synaptic responses in a dark-adapted mouse retinal tissue slice preparation. The retinal slice is placed in a recording chamber, and a recording pipette is used to establish electrical continuity with a retinal ganglion cell. Light pulses are applied to generate excitatory post-synaptic potentials in the ganglion cells, which are recorded by the pipette.

An Isolated Retinal Preparation to Record Light Response from Genetically Labeled Retinal Ganglion Cells

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Cited by 26 •

2011

This article provides a description of how to dissect and record from the isolated retinal preparation in mouse. In particular, we describe how to record light responses from a fluorescently labeled ganglion cell population and subsequently identify and analyze its morphology.

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