Age- and Light-Dependent Development of Localised Retinal Atrophy in CCL2(-/-)CX3CR1(GFP/GFP) Mice


Autoria(s): Chen, Mei; Hombrebueno, Jose R; Luo, Chang; Penalva, Rosana; Zhao, Jiawu; Colhoun, Liza; Pandi, Sudha Pirya Soundara; Forrester, John V; Xu, Heping
Data(s)

18/04/2013

Resumo

Previous studies have shown that CCL2/CX3CR1 deficient mice on C57BL/6N background (with rd8 mutation) have an early onset (6 weeks) of spontaneous retinal degeneration. In this study, we generated CCL2(-/-)CX3CR1(GFP/GFP) mice on the C57BL/6J background. Retinal degeneration was not detected in CCL2(-/-)CX3CR1(GFP/GFP) mice younger than 6 months. Patches of whitish/yellowish fundus lesions were observed in 17~60% of 12-month, and 30~100% of 18-month CCL2(-/-)CX3CR1(GFP/GFP) mice. Fluorescein angiography revealed no choroidal neovascularisation in these mice. Patches of retinal pigment epithelium (RPE) and photoreceptor damage were detected in 30% and 50% of 12- and 18-month CCL2(-/-)CX3CR1(GFP/GFP) mice respectively, but not in wild-type mice. All CCL2(-/-)CX3CR1(GFP/GFP) mice exposed to extra-light (~800lux, 6 h/day, 6 months) developed patches of retinal atrophy, and only 20-25% of WT mice which underwent the same light treatment developed atrophic lesions. In addition, synaptophysin expression was detected in the outer nucler layer (ONL) of area related to photoreceptor loss in CCL2(-/-)CX3CR1(GFP/GFP) mice. Markedly increased rhodopsin but reduced cone arrestin expression was observed in retinal outer layers in aged CCL2(-/-)CX3CR1(GFP/GFP) mice. GABA expression was reduced in the inner retina of aged CCL2(-/-)CX3CR1(GFP/GFP) mice. Significantly increased Müller glial and microglial activation was observed in CCL2(-/-)CX3CR1(GFP/GFP) mice compared to age-matched WT mice. Macrophages from CCL2(-/-)CX3CR1(GFP/GFP) mice were less phagocytic, but expressed higher levels of iNOS, IL-1ß, IL-12 and TNF-a under hypoxia conditions. Our results suggest that the deletions of CCL2 and CX3CR1 predispose mice to age- and light-mediated retinal damage. The CCL2/CX3CR1 deficient mouse may thus serve as a model for age-related atrophic degeneration of the RPE, including the dry type of macular degeneration, geographic atrophy.

Identificador

http://pure.qub.ac.uk/portal/en/publications/age-and-lightdependent-development-of-localised-retinal-atrophy-in-ccl2cx3cr1gfpgfp-mice(87b37939-ce2e-4b6f-9d3c-e6a986dedaa8).html

http://dx.doi.org/10.1371/journal.pone.0061381

Idioma(s)

eng

Direitos

info:eu-repo/semantics/restrictedAccess

Fonte

Chen , M , Hombrebueno , J R , Luo , C , Penalva , R , Zhao , J , Colhoun , L , Pandi , S P S , Forrester , J V & Xu , H 2013 , ' Age- and Light-Dependent Development of Localised Retinal Atrophy in CCL2(-/-)CX3CR1(GFP/GFP) Mice ' PloS one , vol 8 , no. 4 , e61381 , pp. e61381 . DOI: 10.1371/journal.pone.0061381

Palavras-Chave #/dk/atira/pure/subjectarea/asjc/1100 #Agricultural and Biological Sciences(all) #/dk/atira/pure/subjectarea/asjc/1300 #Biochemistry, Genetics and Molecular Biology(all) #/dk/atira/pure/subjectarea/asjc/2700 #Medicine(all)
Tipo

article