Mammalian animal & human retinal organ culture as pre-clinical model to evaluate oxidative stress and antioxidant intraocular therapeutics
- 1. University of Geneva & University Hospitals of Geneva, Switzerland
- 2. Hôpital Privé La Louvière & Cabinet Ophtalmologie Sébastopol, Lille, France
- 3. Department of Ophthalmology, University Hospital Rheinisch-Westfälische Technische Hochschule (RWTH) Aachen, Aachen, Germany
- 4. University of Geneva & University Hospitals of Geneva, Switzerland; Eye Clinic Orasis, Reinach; Dept. of Physics, University of Novi Sad, Serbia; Faculty of Medicine of the Military Medical Academy, University of Defense, Belgrade, Serbia
Description
Oxidative stress (OS) is involved in the pathogenesis of retinal neurodegenerative diseases like age-related macular degeneration (AMD) and diabetic retinopathy (DR) and an important target of therapeutic treatments. New therapeutics are tested in vivo despite limits in transferability and ethical concerns. Retina cultures using human tissue can deliver critical information and significantly reduce the number of animal experiments along with increased transferability. We cultured up to 32 retina samples derived from one eye, analyzed models’ quality, induced OS, and tested efficiency of antioxidative therapeutics. Bovine, porcine, rat, and human retinae were cultured in different experimental settings for 3-14 d. OS was induced by high-glucose or hydrogen peroxide (H2O2) and treated by Scutellarin, pigment epithelium-derived factor (PEDF), and/or granulocyte macrophage-colony stimulating factor (GM-CSF). Tissue morphology, cell viability, inflammation, and glutathione level were determined. Retina samples showed only moderate necrosis (23.83±5.05 increased to 27.00±1.66 AU PI-staining over 14 d) after 14 days in culture. OS was successfully induced (reduced ATP content of 288.3±59.9 vs. 435.7±166.8 nM ATP in controls); antioxidants reduced OS-induced apoptosis (from 124.20±51.09 to 60.80±319.66 cells/image after Scutellarin-treatment). Enhanced mammalian animal and human retina cultures allow reliable, highly transferable research on OS-triggered age-related diseases and pre-clinical testing during drug development.
Files
20230528_RetinaCulture_pRetina_degeneration score.pdf
Files
(6.1 GB)
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