Retinal Microglia

Retinal microglia are the resident immune cells of the retina, where they support tissue maintenance and help protect neurons from injury and infection. In healthy tissue, their highly branched processes continuously survey the local environment; damage-associated signals, including extracellular ATP, can activate P2Y12-dependent responses that direct microglial migration, phagocytosis, and inflammatory signaling. Studying these cells helps explain retinal responses to aging, diabetes, glaucoma, and neurodegenerative disease, while imaging their distribution and activation can provide biomarkers of pathology. Microglial signaling also offers potential therapeutic targets for limiting harmful inflammation and preserving retinal function.

Retinal Microglia - Related Videos

Research

JoVE EoE - Neuroimaging

In Vivo Imaging of Retinal Microglia in a Mouse Model of Glaucoma

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2025

Source: Bosco, A., et al. In Vivo Dynamics of Retinal Microglial Activation During Neurodegeneration: Confocal Ophthalmoscopic Imaging and Cell Morphometry in Mouse Glaucoma. J. Vis. Exp. (2015) This video demonstrates in vivo imaging of retinal microglia in a mouse model of glaucoma. A transgenic mouse with fluorescent protein-expressing retinal microglia is positioned under an ophthalmoscope. Infrared illumination is used to locate the optic nerve head (ONH), and the focal plane is...

Assembling Retinal Organoids with Microglia

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Cited by 3 •

2024

Microglia are unique resident immune cells in the retina, playing crucial roles in various retinal degenerative diseases. Generating a co-culture model of retinal organoids with microglia can facilitate a better understanding of the pathogenesis and development progress of retinal diseases.

Assessing Retinal Microglial Phagocytic Function In Vivo Using a Flow Cytometry-based Assay

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Cited by 4 •

2016

Microglial phagocytosis is critical for the maintenance of tissue homeostasis and inadequate phagocytic function has been implicated in pathology. However, assessing microglia function in vivo is technically challenging. We have developed a simple but robust technique for precisely monitoring and quantifying the phagocytic potential of microglia in a physiological setting.

Magnetic Isolation of Microglia from Mouse Pup Brains

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2025

In this video, we describe a protocol for isolating CD11b cells, including microglia, from mouse pup brains using magnetic-activated cell sorting. The brain tissues are homogenized to obtain single-cell suspensions, which are incubated with anti-CD11b antibody-coated microbeads, followed by a magnetic column-based separation to purify the CD11b+ cell population.

Culturing Microglia from the Neonatal and Adult Central Nervous System

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Cited by 35 •

2013

We outline methods for the efficient and quick isolation/culture of viable microglia from the neonatal cerebral cortex and adult spinal cord. The dissection and plating of cortical microglia can be accomplished within 90 minutes, with the subsequent microglial harvest taking place ~ 10 days following the initial dissection.

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