Eye Cup Isolation

Eye cup isolation is a microsurgical technique that separates the developing optic cup, the embryonic structure that gives rise to the neural retina and retinal pigment epithelium, from surrounding ocular tissues for laboratory study. Under a stereomicroscope, researchers dissect the eye and remove adjacent structures while preserving the optic cup and its layered organization, often preparing it for ex vivo culture or molecular analysis. This method enables investigation of retinal development, cell differentiation, tissue interactions, and gene expression in a controlled setting. It also supports studies of congenital eye disorders, retinal degeneration, regenerative strategies, and experimental treatments in medicine.

Eye Cup Isolation - Related Videos

Research

JoVE EoE - Rodent Models

Retinal Cup Extraction from Mouse: A Surgical Procedure to Obtain Intact Retinal Cup from Mouse Eye

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2025

This video describes a protocol to isolate the retinal cup without the outer covering layers from the eyeball of a mouse. The extracted retinal tissue can help study various metabolic pathways occurring in the retinal cells.

Research

JoVE Journal - Biology
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Isolation of Retinal Stem Cells from the Mouse Eye

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Cited by 12 •

2010

In this video, we will demonstrate how to isolate retinal stem cells from the ciliary epithelium of the mouse eye and grow them in culture to form clonal retinal spheres. The spheres that are isolated possess the cardinal properties of stem cells: self-renewal and multipotentiality.

Anterior Eye Segment Dissection: A Method to Isolate Cornea Bearing Anterior Segment from Porcine Eye

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2025

In this video, we demonstrate the dissection of the cornea-bearing anterior segment of the porcine eye. The isolated segment can be used for organ culturing to study the pathophysiology of eye disorders.

Isolation of IPE and RPE cells: A Technique to Obtain Pigmented Epithelial Cells from Isolated Porcine Eye

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2025

In this video we describe a technique to isolate iris and retinal pigment epithelial cells from porcine eyes to obtain their primary cultures for in vivo and ex vivo studies. These pigment cells could be genetically modified to study regenerative approaches to treat ocular disorders.

Synthesis and Functionalization of Nitrogen-doped Carbon Nanotube Cups with Gold Nanoparticles as Cork Stoppers

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Cited by 10 •

2013

We discussed the synthesis of individual graphitic nanocups using a series of techniques including chemical vapor deposition, acid oxidation and probe-tip sonication. By citrate reduction of HAuCl4, the graphitic nanocups were effectively corked with gold nanoparticles due to the chemically reactive edges of the cups.

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