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Activation of Autophagy in a Rat Model of Retinal Ischemia Following High Intraocular Pressure

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Journal PLoS One
Date 2011 Jul 30
PMID 21799881
Citations 72
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Abstract

Acute primary open angle glaucoma is an optic neuropathy characterized by the elevation of intraocular pressure, which causes retinal ischemia and neuronal death. Rat ischemia/reperfusion enhances endocytosis of both horseradish peroxidase (HRP) or fluorescent dextran into ganglion cell layer (GCL) neurons 24 h after the insult. We investigated the activation of autophagy in GCL-neurons following ischemia/reperfusion, using acid phosphatase (AP) histochemistry and immunofluorescence against LC3 and LAMP1. Retinal I/R lead to the appearance of AP-positive granules and LAMP1-positive vesicles 12 and 24 h after the insult, and LC3 labelling at 24 h, and induced a consistent retinal neuron death. At 48 h the retina was negative for autophagic markers. In addition, Western Blot analysis revealed an increase of LC3 levels after damage: the increase in the conjugated, LC3-II isoform is suggestive of autophagic activity. Inhibition of autophagy by 3-methyladenine partially prevented death of neurons and reduces apoptotic markers, 24 h post-lesion. The number of neurons in the GCL decreased significantly following I/R (I/R 12.21±1.13 vs controls 19.23±1.12 cells/500 µm); this decrease was partially prevented by 3-methyladenine (17.08±1.42 cells/500 µm), which potently inhibits maturation of autophagosomes. Treatment also prevented the increase in glial fibrillary acid protein immunoreactivity elicited by I/R. Therefore, targeting autophagy could represent a novel and promising treatment for glaucoma and retinal ischemia.

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References
1.
Selles-Navarro I, Villegas-Perez M, Vidal-Sanz M . Retinal ganglion cell death after different transient periods of pressure-induced ischemia and survival intervals. A quantitative in vivo study. Invest Ophthalmol Vis Sci. 1996; 37(10):2002-14. View

2.
Zakeri Z, Bursch W, Tenniswood M, Lockshin R . Cell death: programmed, apoptosis, necrosis, or other?. Cell Death Differ. 1995; 2(2):87-96. View

3.
Yousefi S, Perozzo R, Schmid I, Ziemiecki A, Schaffner T, Scapozza L . Calpain-mediated cleavage of Atg5 switches autophagy to apoptosis. Nat Cell Biol. 2006; 8(10):1124-32. DOI: 10.1038/ncb1482. View

4.
Xie Z, Klionsky D . Autophagosome formation: core machinery and adaptations. Nat Cell Biol. 2007; 9(10):1102-9. DOI: 10.1038/ncb1007-1102. View

5.
Martinez-Vicente M, Cuervo A . Autophagy and neurodegeneration: when the cleaning crew goes on strike. Lancet Neurol. 2007; 6(4):352-61. DOI: 10.1016/S1474-4422(07)70076-5. View