Immune Analysis Using Vitreous Optical Coherence Tomography Imaging in Rats with Steroid-Induced Glaucoma

Author:

Rodrigo Maria J.123ORCID,Subías Manuel124ORCID,Montolío Alberto56ORCID,Martínez-Rincón Teresa12ORCID,Aragón-Navas Alba789ORCID,Bravo-Osuna Irene789ORCID,Pablo Luis E.1234,Cegoñino Jose56,Herrero-Vanrell Rocío789,Garcia-Martin Elena123ORCID,Pérez del Palomar Amaya56ORCID

Affiliation:

1. Department of Ophthalmology, Miguel Servet University Hospital, 50009 Zaragoza, Spain

2. Miguel Servet Ophthalmology Research Group (GIMSO), Aragon Health Research Institute (IIS Aragon), University of Zaragoza, 50009 Zaragoza, Spain

3. National Ocular Researcha Network RD21/0002/0050, RICORS Red de Enfermedades Inflamatorias (RD21/0002), Carlos III Health Institute, 28220 Madrid, Spain

4. Biotech Vision, Instituto Oftalmologico Quiron, 50012 Zaragoza, Spain

5. Biomaterials Group, Aragon Engineering Research Institute (I3A), University of Zaragoza, 50018 Zaragoza, Spain

6. Department of Mechanical Engineering, University of Zaragoza, 50018 Zaragoza, Spain

7. Innovation, Therapy and Pharmaceutical Development in Ophthalmology (InnOftal) Research Group, UCM 920415, Department of Pharmaceutics and Food Technology, Faculty of Pharmacy, Complutense University of Madrid, 28040 Madrid, Spain

8. Health Research Institute of the San Carlos Clinical Hospital (IdISSC), 28040 Madrid, Spain

9. University Institute of Industrial Pharmacy (IUFI), School of Pharmacy, Complutense University of Madrid, 28040 Madrid, Spain

Abstract

Glaucoma is a multifactorial pathology involving the immune system. The subclinical immune response plays a homeostatic role in healthy situations, but in pathological situations, it produces imbalances. Optical coherence tomography detects immune cells in the vitreous as hyperreflective opacities and these are subsequently characterised by computational analysis. This study monitors the changes in immunity in the vitreous in two steroid-induced glaucoma (SIG) animal models created with drug delivery systems (microspheres loaded with dexamethasone and dexamethasone/fibronectin), comparing both sexes and healthy controls over six months. SIG eyes tended to present greater intensity and a higher number of vitreous opacities (p < 0.05), with dynamic fluctuations in the percentage of isolated cells (10 µm2), non-activated cells (10–50 µm2), activated cells (50–250 µm2) and cell complexes (>250 µm2). Both SIG models presented an anti-inflammatory profile, with non-activated cells being the largest population in this study. However, smaller opacities (isolated cells) seemed to be the first responder to noxa since they were the most rounded (recruitment), coinciding with peak intraocular pressure increase, and showed the highest mean Intensity (intracellular machinery), even in the contralateral eye, and a major change in orientation (motility). Studying the features of hyperreflective opacities in the vitreous using OCT could be a useful biomarker of glaucoma.

Funder

Carlos III Health Institute

ERDF A way of making Europe

Instituto de Salud Carlos III

the Government of Aragon through the research group

ESF Investing in your future

Publisher

MDPI AG

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