Effect of Autophagy Modulators on Vascular, Glial, and Neuronal Alterations in the Oxygen-Induced Retinopathy Mouse Model

被引:15
作者
Subirada, Paula V. [1 ,2 ]
Paz, Maria C. [1 ,2 ]
Ridano, Magali E. [1 ,2 ]
Lorenc, Valeria E. [3 ]
Fader, Claudio M. [4 ,5 ]
Chiabrando, Gustavo A. [1 ,2 ]
Sanchez, Maria C. [1 ,2 ]
机构
[1] Univ Nacl Cordoba, Fac Ciencias Quim, Dept Bioquim Clin, Cordoba, Argentina
[2] Ctr Invest Bioquim Clin & Inmunol CIBICI, Consejo Nacl Invest Cient & Tecn CONICET, Cordoba, Argentina
[3] Univ Austral, Consejo Nacl Invest Cient & Tecn CONICET, Inst Invest Med Traslac, Nanomed & Vis Grp,Fac Ciencias Biomed, Pilar, Argentina
[4] Univ Nacl Cuyo, Fac Odontol Mendoza, Mendoza, Argentina
[5] Univ Nacl Cuyo, Inst Histol & Embriol IHEM, Fac Ciencias Med, Consejo Nacl Invest Cient & Tecn CONICET, Mendoza, Argentina
关键词
autophagy; hypoxia; proliferative retinopathies; vascular endothelial growth factor; retinal functionality; gliosis; neurodegeneration; RECEPTOR-RELATED PROTEIN-1; ENDOTHELIAL GROWTH-FACTOR; RETINAL NEOVASCULARIZATION; MAMMALIAN TARGET; CELL-DEATH; VEGF; EXPRESSION; RAPAMYCIN; ANGIOGENESIS; NEUROPROTECTION;
D O I
10.3389/fncel.2019.00279
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Hypoxia is one of the main insults in proliferative retinopathies, leading to neovascularization and neurodegeneration. To maintain homeostasis, neurons require efficient degradation and recycling systems. Autophagy participates in retinal cell death, but it is also a cell survival mechanism. Here, we analyzed the role of autophagy at the three characteristic time periods in the oxygen-induced retinopathy (OIR) mouse model and determined if its modulation can improve vascular and non-vascular alterations. Experiments were performed with chloroquine (CQ) in order to monitor autophagosome accumulation by lysosomal blockade. Post natal day (P) 17 OIR mouse retinas showed a significant increase in autophagy flux. In particular, an intense LC3B and p62 staining was observed in inner layers of the retina, mainly proliferating endothelial cells. After a single intraocular injection of Rapamycin at P12 OIR, a decreased neovascular area and vascular endothelial growth factor (VEGF) protein expression were observed at P17 OIR. In addition, whereas the increased expression of glial fibrillary acidic protein (GFAP) was reversed at P26 OIR, the functional alterations persisted. Using a similar therapeutic schedule, we analyzed the effect of anti-VEGF therapy on autophagy flux. Like Rapamycin, VEGF inhibitor treatment not only reduced the amount of neovascular tufts, but also activated autophagy flux at P17 OIR, mainly in ganglion cell layer and inner nuclear layer. Finally, the effects of the disruption of autophagy by Spautin-1, were evaluated at vascular, glial, and neuronal levels. After a single dose of Spautin-1, Western blot analysis showed a significant decrease in LC3B II and p62 protein expression at P13 OIR, returning both autophagy markers to OIR control levels at P17. In addition, neither gliosis nor functional alterations were attenuated. In line with these results, TUNEL staining showed a slight increase in the number of positive cells in the outer nuclear layer at P17 OIR. Overall, our results demonstrate that all treatments of induction or inhibition of the autophagic flux reduced neovascular area but were unable to completely reverse the neuronal damage. Besides, compared to current treatments, rapamycin provides a more promising therapeutic strategy as it reduces both neovascular tufts and persistent gliosis.
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页数:18
相关论文
共 59 条
[1]   Autophagy-mediated neuroprotection induced by octreotide in an ex vivo model of early diabetic retinopathy [J].
Amato, Rosario ;
Catalani, Elisabetta ;
Dal Monte, Massimo ;
Cammalleri, Maurizio ;
Di Renzo, Ilaria ;
Perrotta, Aistiana ;
Cervia, Davide ;
Casini, Giovanni .
PHARMACOLOGICAL RESEARCH, 2018, 128 :167-178
[2]  
[Anonymous], 2008, ORGANOGENESIS
[3]   α2-Macroglobulin Induces Glial Fibrillary Acidic Protein Expression Mediated by Low-Density Lipoprotein Receptor-Related Protein 1 in Muller Cells [J].
Barcelona, Pablo F. ;
Ortiz, Susana G. ;
Chiabrando, Gustavo A. ;
Sanchez, Maria C. .
INVESTIGATIVE OPHTHALMOLOGY & VISUAL SCIENCE, 2011, 52 (02) :778-786
[4]   Autophagy in the eye: Development, degeneration, and aging [J].
Boya, Patricia ;
Esteban-Martinez, Lorena ;
Serrano-Puebla, Ana ;
Gomez-Sintes, Raquel ;
Villarejo-Zori, Beatriz .
PROGRESS IN RETINAL AND EYE RESEARCH, 2016, 55 :206-245
[5]   The Beta Adrenergic Receptor Blocker Propranolol Counteracts Retinal Dysfunction in a Mouse Model of Oxygen Induced Retinopathy: Restoring the Balance between Apoptosis and Autophagy [J].
Cammalleri, Maurizio ;
Locri, Filippo ;
Catalani, Elisabetta ;
Filippi, Luca ;
Cervia, Davide ;
Dal Monte, Massimo ;
Bagnoli, Paola .
FRONTIERS IN CELLULAR NEUROSCIENCE, 2017, 11
[6]   Molecular pathogenesis of retinal and choroidal vascular diseases [J].
Campochiaro, Peter A. .
PROGRESS IN RETINAL AND EYE RESEARCH, 2015, 49 :67-81
[7]   The Evolving Functions of Autophagy in Ocular Health: A Double-edged Sword [J].
Chai, Peiwei ;
Ni, Hongyan ;
Zhang, He ;
Fan, Xianqun .
INTERNATIONAL JOURNAL OF BIOLOGICAL SCIENCES, 2016, 12 (11) :1332-1340
[8]   Targeting SQSTM1/p62 Induces Cargo Loading Failure and Converts Autophagy to Apoptosis via NBK/Bik [J].
Chen, Shuang ;
Zhou, Liang ;
Zhang, Yu ;
Leng, Yun ;
Pei, Xin-Yan ;
Lin, Hui ;
Jones, Richard ;
Orlowski, Robert Z. ;
Dai, Yun ;
Graft, Steven .
MOLECULAR AND CELLULAR BIOLOGY, 2014, 34 (18) :3435-3449
[9]   Retinal cell death and current strategies in retinal neuroprotection [J].
Chinskey, Nicholas D. ;
Besirli, Cagri G. ;
Zacks, David N. .
CURRENT OPINION IN OPHTHALMOLOGY, 2014, 25 (03) :228-233
[10]   Autophagy in Diabetic Retinopathy [J].
Di Rosa, Michelino ;
Distefano, Gisella ;
Gagliano, Caterina ;
Rusciano, Dario ;
Malaguarnera, Lucia .
CURRENT NEUROPHARMACOLOGY, 2016, 14 (08) :810-825