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Prph2 knock-in mice recapitulate human central areolar choroidal dystrophy retinal degeneration and exhibit aberrant synaptic remodeling and microglial activation.

María José Ruiz-PastorXavier Sánchez-SáezOksana KutsyrHenar Albertos-ArranzCarla Sánchez-CastilloIsabel Ortuño-LizaránNatalia Martínez-GilLorena Vidal-GilLucía MéndezManuel A Sanchez-MartinVictoria ManeuPedro LaxNicolas Cuenca
Published in: Cell death & disease (2023)
Central areolar choroidal dystrophy is an inherited disorder characterized by progressive choriocapillaris atrophy and retinal degeneration and is usually associated with mutations in the PRPH2 gene. We aimed to generate and characterize a mouse model with the p.Arg195Leu mutation previously described in patients. Heterozygous (Prph2 WT/KI ) and homozygous (Prph2 KI/KI ) mice were generated using the CRISPR/Cas9 system to introduce the p.Arg195Leu mutation. Retinal function was assessed by electroretinography and optomotor tests at 1, 3, 6, 9, 12, and 20 months of age. The structural integrity of the retinas was evaluated at the same ages using optical coherence tomography. Immunofluorescence and transmission electron microscopy images of the retina were also analyzed. Genetic sequencing confirmed that both Prph2 WT/KI and Prph2 KI/KI mice presented the p.Arg195Leu mutation. A progressive loss of retinal function was found in both mutant groups, with significantly reduced visual acuity from 3 months of age in Prph2 KI/KI mice and from 6 months of age in Prph2 WT/KI mice. Decreased amplitudes in the electroretinography responses were observed from 1 month of age in Prph2 KI/KI mice and from 6 months of age in Prph2 WT/KI mice. Morphological analysis of the retinas correlated with functional findings, showing a progressive decrease in retinal thickness of mutant mice, with earlier and more severe changes in the homozygous mutant mice. We corroborated the alteration of the outer segment structure, and we found changes in the synaptic connectivity in the outer plexiform layer as well as gliosis and signs of microglial activation. The new Prph2 WT/KI and Prph2 KI/KI murine models show a pattern of retinal degeneration similar to that described in human patients with central areolar choroidal dystrophy and appear to be good models to study the mechanisms involved in the onset and progression of the disease, as well as to test the efficacy of new therapeutic strategies.
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