High Glucose Retina

High glucose in the retina refers to excessive glucose exposure within retinal tissue, a metabolic disturbance that contributes to diabetic eye disease and vision loss. When retinal cells encounter sustained hyperglycemia, increased glucose flux through pathways such as the polyol pathway can promote oxidative stress, inflammation, neuronal injury, and breakdown of the blood-retinal barrier. These changes impair retinal vascular function and may lead to diabetic retinopathy, macular edema, and progressive loss of visual function. Studying high-glucose retinal models helps researchers clarify disease mechanisms, evaluate biomarkers, and assess therapies designed to protect retinal neurons and blood vessels.

High Glucose Retina - Related Videos

Research

JoVE Journal - Neuroscience

In vivo Electroporation of Developing Mouse Retina

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Cited by 33 •

2011

A method for the incorporation of plasmid DNA into murine retinal cells for the purpose of performing either gain- or loss of function studies in vivo is presented. This method capitalizes on the transient increase in permeability of cell plasma membranes induced by the application of an external electrical field.

In Vitro Glucose Depletion Assay: A Fluorescence-Based Method to Quantify Cellular Glucose Uptake via Extracellular Glucose Depletion Measurement

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2025

This video demonstrates an in vitro assay to indirectly measure intracellular glucose uptake. The assay uses a fluorescently-labeled glucose analog to establish a correlation between extracellular glucose depletion and intracellular glucose uptake.

Oral Glucose Tolerance Test (OGTT): Measuring Glucose Metabolism in Mice

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2023

This video introduces how to perform an oral glucose tolerance test on a laboratory mouse.

Research

JoVE Journal - Neuroscience
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Split Retina as an Improved Flatmount Preparation for Studying Inner Nuclear Layer Neurons in Vertebrate Retina

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2024

This work presents an alternative flatmount retina preparation in which the removal of photoreceptor cell bodies enables faster antibody diffusion and improved patch pipette access to inner retinal neurons for immunohistochemistry, in situ hybridization, and electrophysiology experiments.

Organotypic Culture of Adult Rabbit Retina

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Cited by 8 •

2007

This article demonstrates the dissection and incubation of rabbit retina and particle-mediated gene transfer of plasmids encoding GFP or a variety of subcellular markers into retinal ganglion cells.

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