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A Mouse Model of Retinal Ischemia-Reperfusion Injury Through Elevation of Intraocular Pressure
Published on: July 14, 2016
Changes in neuronal response to ischemia in retinas with genetic alterations of somatostatin receptor expression
Elisabetta Catalani1, Davide Cervia, Davide Martini
1Dipartimento di Scienze Ambientali, Università della Tuscia, Largo dell'Università snc, Blocco D, 01100 Viterbo, Italy.
Abstract:
Ischemia is a primary cause of neuronal death in retinal diseases. The repertoire of expressed transmitter receptors would determine the neurons' responses to ischemic damage, and peptidergic receptors may be involved. With a new in vitro model of the ischemic mouse retina, we investigated whether an altered expression of somatostatin receptors could modulate retinal responses to ischemia. We used retinas of somatostatin receptor 1 (sst(1)) knock out (KO) mice, where sst(2) are over-expressed and over-functional, and of sst(2) KO mice. TUNEL analysis of ischemic retinas showed a marked reduction of cell death in sst(1) KO retinas, while there were no differences between wild-type (WT) and sst(2) KO retinas. In addition, caspase-3 mRNA expression was also reduced in sst(1) KO as compared to WT retinas. An immunohistochemical analysis demonstrated that different cell populations responded differently to the ischemic insult, and that the persistence of some immunohistochemical markers was greater in sst(1) KO than in WT or in sst(2) KO retinas. In particular, rod bipolar cell survival was markedly improved in sst(1) KO retinas, while it was dramatically decreased in sst(2) KO retinas. Furthermore, consistent with a role of glutamate excitotoxicity in ischemia-induced neuronal death, retinal glutamate release was observed to increase under ischemic conditions, but this increase was significantly reduced in sst(1) KO retinas. These observations demonstrate that an increased presence of functional sst(2) protects against retinal ischemia, thus implementing the background for the use of sst(2) analogs in therapies of retinal diseases such as glaucoma or diabetic retinopathy.
Insights
Somatostatin receptor 2 (sst(2)) protects retinal neurons from ischemic damage. Targeting sst(2) may offer new therapies for retinal diseases like glaucoma and diabetic retinopathy.
Area of Science:
- Neuroscience
- Ophthalmology
- Molecular Biology
Background:
- Ischemia causes neuronal death in retinal diseases.
- Transmitter receptors influence neuronal response to ischemic damage.
- Peptidergic receptors, including somatostatin receptors (sst), may play a role.
Purpose of the Study:
- Investigate how altered somatostatin receptor expression impacts retinal response to ischemia.
- Utilize an in vitro model of ischemic mouse retina.
- Examine the roles of somatostatin receptor 1 (sst(1)) and somatostatin receptor 2 (sst(2)) knockout (KO) models.
Main Methods:
- TUNEL analysis to assess cell death in ischemic retinas.
- Caspase-3 mRNA expression analysis.
- Immunohistochemical analysis to evaluate cell population responses.
- Measurement of retinal glutamate release under ischemic conditions.
Main Results:
- sst(1) KO retinas showed reduced cell death and caspase-3 mRNA expression compared to wild-type (WT).
- Rod bipolar cell survival was improved in sst(1) KO retinas but decreased in sst(2) KO retinas.
- Retinal glutamate release increased under ischemia but was reduced in sst(1) KO retinas.
- sst(2) KO retinas showed no difference in cell death compared to WT.
Conclusions:
- Increased functional sst(2) expression protects against retinal ischemia.
- sst(1) KO, leading to sst(2) overexpression, demonstrates a protective effect.
- These findings support the therapeutic potential of sst(2) analogs for retinal diseases.

