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Updated: Aug 23, 2025

A Mouse Model of Retinal Ischemia-Reperfusion Injury Through Elevation of Intraocular Pressure
Published on: July 14, 2016
Mitochondrial Dysfunction in a High Intraocular Pressure-Induced Retinal Ischemia Minipig Model
Michael Pasák1, Marie Vanišová1, Lucie Tichotová2
1Laboratory for Study of Mitochondrial Disorders, Department of Paediatrics and Inherited Metabolic Disorders, First Faculty of Medicine, Charles University and General University Hospital in Prague, 12801 Prague, Czech Republic.
Abstract:
Purpose: Retinal ischemia (RI) and progressive neuronal death are sight-threatening conditions. Mitochondrial (mt) dysfunction and fusion/fission processes have been suggested to play a role in the pathophysiology of RI. This study focuses on changes in the mt parameters of the neuroretina, retinal pigment epithelium (RPE) and choroid in a porcine high intraocular pressure (IOP)-induced RI minipig model. Methods: In one eye, an acute IOP elevation was induced in minipigs and compared to the other control eye. Activity and amount of respiratory chain complexes (RCC) were analyzed by spectrophotometry and Western blot, respectively. The coenzyme Q10 (CoQ10) content was measured using HPLC, and the ultrastructure of the mt was studied via transmission electron microscopy. The expression of selected mt-pathway genes was determined by RT-PCR. Results: At a functional level, increased RCC I activity and decreased total CoQ10 content were found in RPE cells. At a protein level, CORE2, a subunit of RCC III, and DRP1, was significantly decreased in the neuroretina. Drp1 and Opa1, protein-encoding genes responsible for mt quality control, were decreased in most of the samples from the RPE and neuroretina. Conclusions: The eyes of the minipig can be considered a potential RI model to study mt dysfunction in this disease. Strategies targeting mt protection may provide a promising way to delay the acute damage and onset of RI.
Insights
Mitochondrial dysfunction occurs in retinal ischemia (RI). This study used a minipig model to show changes in mitochondrial parameters in the retina and RPE, suggesting RI models are useful for studying mitochondrial damage.
Area of Science:
- Ophthalmology
- Mitochondrial Biology
- Neuroscience
Background:
- Retinal ischemia (RI) and progressive neuronal death threaten vision.
- Mitochondrial dysfunction and altered fusion/fission dynamics are implicated in RI pathophysiology.
Purpose of the Study:
- To investigate changes in mitochondrial parameters within the neuroretina, retinal pigment epithelium (RPE), and choroid.
- To utilize a porcine high intraocular pressure (IOP)-induced RI minipig model.
Main Methods:
- Induced acute IOP elevation in one eye of minipigs, comparing it to the control eye.
- Analyzed respiratory chain complex (RCC) activity and amount, Coenzyme Q10 (CoQ10) content, mitochondrial ultrastructure, and mt-pathway gene expression.
Main Results:
- Increased RCC I activity and decreased CoQ10 content were observed in RPE cells.
- CORE2 (RCC III subunit) and DRP1 protein levels were significantly decreased in the neuroretina.
- Expression of mt-quality control genes *Drp1* and *Opa1* decreased in RPE and neuroretina.
Conclusions:
- The minipig eye serves as a viable model for studying mitochondrial dysfunction in RI.
- Mitochondrial protective strategies may mitigate acute damage and delay the onset of RI.

