Review: Neuroprotective Nanocarriers in Glaucoma

Author:

Pei Kun1,Georgi Maria23ORCID,Hill Daniel1,Lam Chun Fung Jeffrey4,Wei Wei35,Cordeiro Maria Francesca1356ORCID

Affiliation:

1. UCL Institute of Ophthalmology, London EC1V 9EL, UK

2. St Mary’s Hospital, Imperial College Healthcare NHS Trust, London W2 1NY, UK

3. Department of Surgery & Cancer, Imperial College London, London SW7 5NG, UK

4. GKT Medical School, Guy’s Campus, Great Maze Pond, London SE1 1UL, UK

5. Imperial College Ophthalmic Research Group (ICORG) Unit, Imperial College, London NW1 5QH, UK

6. Western Eye Hospital, London NW1 5QH, UK

Abstract

Glaucoma stands as a primary cause of irreversible blindness globally, characterized by the progressive dysfunction and loss of retinal ganglion cells (RGCs). While current treatments primarily focus on controlling intraocular pressure (IOP), many patients continue to experience vision loss. Therefore, the research focus has shifted to therapeutic targets aimed at preventing or delaying RGC death and optic nerve degeneration to slow or halt disease progression. Traditional ocular drug administration, such as eye drops or oral medications, face significant challenges due to the eye’s unique structural and physiological barriers, which limit effective drug delivery. Invasive methods like intravitreal injections can cause side effects such as bleeding, inflammation, and infection, making non-invasive delivery methods with high bioavailability very desirable. Nanotechnology presents a promising approach to addressing these limitations in glaucoma treatment. This review summarizes current approaches involving neuroprotective drugs combined with nanocarriers, and their impact for future use.

Publisher

MDPI AG

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