4.7 Article

Long-term corticosteroid-induced chronic glaucoma model produced by intracameral injection of dexamethasone-loaded PLGA microspheres

Journal

DRUG DELIVERY
Volume 28, Issue 1, Pages 2427-2446

Publisher

TAYLOR & FRANCIS LTD
DOI: 10.1080/10717544.2021.1998245

Keywords

Glaucoma; animal model; PLGA microspheres; neurodegeneration; dexamethasone

Funding

  1. Rio Hortega research grants (Carlos III Health Institute) [PI17/01726, PI17/01946, PI20/00437, M17/00213]
  2. MINECO/AEI/ERDF, EU [MAT2017-83858-C2-1, PID2020-113281RB-C22, MAT2017-83858-C2-2]

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This study evaluated a new chronic glaucoma model induced by intracameral injection of Dex-PLGA-Ms in rats over six months. The results showed progressive increase in intraocular pressure, subsequent neuroretinal degeneration, and deposition of collagen IV after two injections. This demonstrates the potential of drug delivery systems to induce pathology rather than treat it.
Purpose To evaluate a new chronic glaucoma model produced by intracameral injection of dexamethasone-loaded poly lactic-co-glycolic acid microspheres (Dex-PLGA-Ms) over six months. Methods Healthy rats received two injections (at baseline and Week 4) of Dex-PLGA-Ms into the anterior chamber of the right eye. Clinical signs and intraocular pressure (IOP) were weekly recorded. The structure of the retina and optic nerve was in vivo evaluated using optical coherence tomography (OCT) every two weeks and functionally using dark- and light-adapted electroretinography at 0-12-24 weeks. Histological studies were also performed. Results IOP progressively increased up to hypertension (23.22 +/- 3.63 mmHg) in both eyes but did so later in left eyes. OCT quantified a decrease in full-thickness retina posterior pole (R), retinal-nerve-fiber layer (RNFL), and ganglion-cell layer (GCL) thickness up to 24 weeks. Right eyes showed higher neuroretinal thickness loss up to week 8. RNFL experienced the highest percentage thickness loss at the inferior-superior axis, while in GCL the inner sectors of the horizontal axis (Nasal-Temporal) suffered the greatest decrease in thickness. Retinal ganglion cell, photoreceptor, and intermediate cell functionality decreased over time. Increased deposition of collagen IV was also found in zonular fibers and the ciliary body. Conclusions This work shows the usefulness of drug delivery systems, not to treat pathology but to induce it. Only two injections of Dex-PLGA-Ms in the anterior chamber of rat eyes were enough to progressively create ocular hypertension and subsequent functional and structural neuroretinal degeneration, at least over 6 months.

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