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Updated: Apr 29, 2026

A Mouse Model of Retinal Ischemia-Reperfusion Injury Through Elevation of Intraocular Pressure
Published on: July 14, 2016
Protective and antioxidant effects of PPARα in the ischemic retina
Elizabeth Moran1, Lexi Ding2, Zhongxiao Wang3
1Department of Cell Biology, University of Oklahoma Health Sciences Center, Oklahoma City, Oklahoma, United States.
Purpose:
Previous studies have demonstrated that peroxisome proliferator-activated receptor-alpha (PPARα) agonists have therapeutic effects in diabetic retinopathy, although the mechanism of action remains incompletely understood. The purpose of this study was to evaluate PPARα's protective effects in the ischemic retina, and to delineate its molecular mechanism of action.
Methods:
For the oxygen-induced retinopathy (OIR) model, wild-type (WT), and PPARα knockout (PPARα(-/-)) mice were exposed to 75% O₂ from postnatal day 7 (P7) to P12 and treated with the PPARα agonist fenofibric acid (Feno-FA) from P12 to P16. At P17, the effects of Feno-FA on retinal glial fibrillary acidic protein (GFAP) expression, apoptotic DNA cleavage, and TUNEL labeling were analyzed. Cultured retinal cells were exposed to CoCl₂ to induce hypoxia, and TUNEL staining and 5-(and-6)-chloromethyl-2',7'-dichlorodihydrofluorescein dye were used to measure apoptosis and reactive oxygen species (ROS) generation. Western blotting was used to measure GFAP levels and cell signaling.
Results:
Feno-FA decreased retinal apoptosis and oxidative stress in WT but not PPARα(-/-) OIR mice. Peroxisome proliferator-activated receptor-alpha knockout OIR mice showed increased retinal cell death and glial activation in comparison to WT OIR mice. Feno-FA treatment and PPARα overexpression protected cultured retinal cells from hypoxic cell death and decreased ROS levels. Nuclear hypoxia-inducible factor-α (HIF-1α) and nicotine adenine dinucleotide phosphate oxidase-4 (Nox 4) were increased in OIR retinas and downregulated by Feno-FA in WT but not in PPARα(-/-) mice.
Conclusions:
Peroxisome proliferator-activated receptor-alpha has a potent antiapoptotic effect in the ischemic retina. This protective effect may be mediated in part through downregulation of HIF-1α/Nox 4 and consequently alleviation of oxidative stress.
Insights
Peroxisome proliferator-activated receptor-alpha (PPARα) agonists protect the ischemic retina by reducing cell death and oxidative stress. This effect is mediated by downregulating hypoxia-inducible factor-alpha (HIF-1α) and NADPH oxidase 4 (Nox 4).
Area of Science:
- Ophthalmology
- Molecular Biology
- Cell Biology
Background:
- Diabetic retinopathy involves retinal ischemia and oxidative stress.
- Peroxisome proliferator-activated receptor-alpha (PPARα) agonists show therapeutic potential in diabetic retinopathy.
- The precise molecular mechanisms of PPARα's protective effects in ischemic retinas are not fully understood.
Purpose of the Study:
- To investigate the protective role of PPARα in the ischemic retina.
- To elucidate the molecular pathways involved in PPARα's action.
Main Methods:
- An oxygen-induced retinopathy (OIR) mouse model was used, comparing wild-type (WT) and PPARα knockout (PPARα(-/-)) mice.
- Mice were treated with fenofibric acid (Feno-FA), a PPARα agonist.
- Retinal apoptosis, glial activation (GFAP), reactive oxygen species (ROS), and signaling pathways (HIF-1α, Nox 4) were analyzed.
Main Results:
- Fenofibric acid reduced retinal apoptosis and oxidative stress in WT mice, but not in PPARα(-/-) mice.
- PPARα knockout mice exhibited increased retinal cell death and glial activation.
- Fenofibric acid and PPARα overexpression protected cultured retinal cells from hypoxia-induced damage and reduced ROS.
- Hypoxia-inducible factor-alpha (HIF-1α) and NADPH oxidase 4 (Nox 4) levels were decreased by fenofibric acid in WT OIR retinas.
Conclusions:
- PPARα exerts a significant antiapoptotic effect in the ischemic retina.
- This protective mechanism involves the downregulation of the HIF-1α/Nox 4 pathway.
- PPARα activation alleviates oxidative stress, contributing to retinal protection.

