Posterior Eye Delivery

Posterior eye delivery comprises strategies for transporting drugs, genes, or cells to tissues at the back of the eye, including the retina, choroid, and optic nerve, where conventional eye drops have limited access. Because the cornea, blood-retinal barrier, vitreous, and rapid fluid clearance restrict distribution, clinicians may use intravitreal, subretinal, or suprachoroidal administration to place therapeutic material closer to its target. These approaches support treatment development for retinal degeneration, diabetic retinopathy, macular disease, and optic nerve disorders. Improving dose control, tissue penetration, durability, and safety remains important for translating neuroscience research into effective ocular therapies.

Posterior Eye Delivery - Related Videos

Research

JoVE EoE - Large Animal Models

Isolating Short Posterior Ciliary Arteries: A Protocol to Excise Intact Short Posterior Ciliary Microvessels from Porcine Eye

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2025

This video describes the protocol to isolate the short posterior ciliary arteries from the porcine eye. The isolated short posterior arteries are a suitable source for elucidating the molecular insights and protein profiles of the ocular blood vessels.

Rat Model of Photochemically-Induced Posterior Ischemic Optic Neuropathy

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Cited by 2 •

2015

The goal of this protocol is to photochemically induce ischemic injury to the posterior optic nerve in rat. This model is critical to studies of the pathophysiology of posterior ischemic optic neuropathy, and therapeutic approaches for this and other optic neuropathies, as well as of other CNS ischemic diseases.

Encapsulated Cell Technology for the Delivery of Biologics to the Mouse Eye

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Cited by 9 •

2020

Presented here is a protocol for the use of alginate as a polymer in microencapsulation of immortalized cells for long-term delivery of biologics to rodent eyes.

Posterior Semicircular Canal Approach for Inner Ear Gene Delivery in Neonatal Mouse

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Cited by 37 •

2018

In this study, we describe the posterior semicircular canal approach as a reliable method for inner ear gene delivery in neonatal mice. We show that gene delivery through the posterior semicircular canal is able to perfuse the entire inner ear.

Use of Rabbit Eyes in Pharmacokinetic Studies of Intraocular Drugs

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Cited by 59 •

2016

Rabbits are widely used to study the pharmacokinetics of intraocular drugs. We describe a method for conducting pharmacokinetic studies of intraocular drugs using rabbit eyes.

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