Author:
Kutsyr Oksana,Maestre-Carballa Lucía,Lluesma-Gomez Mónica,Martinez-Garcia Manuel,Cuenca Nicolás,Lax Pedro
Abstract
AbstractThe gut microbiome is known to influence the pathogenesis and progression of neurodegenerative diseases. However, there has been relatively little focus upon the implications of the gut microbiome in retinal diseases such as retinitis pigmentosa (RP). Here, we investigated changes in gut microbiome composition linked to RP, by assessing both retinal degeneration and gut microbiome in the rd10 mouse model of RP as compared to control C57BL/6J mice. In rd10 mice, retinal responsiveness to flashlight stimuli and visual acuity were deteriorated with respect to observed in age-matched control mice. This functional decline in dystrophic animals was accompanied by photoreceptor loss, morphologic anomalies in photoreceptor cells and retinal reactive gliosis. Furthermore, 16S rRNA gene amplicon sequencing data showed a microbial gut dysbiosis with differences in alpha and beta diversity at the genera, species and amplicon sequence variants (ASV) levels between dystrophic and control mice. Remarkably, four fairly common ASV in healthy gut microbiome belonging to Rikenella spp., Muribaculaceace spp., Prevotellaceae UCG-001 spp., and Bacilli spp. were absent in the gut microbiome of retinal disease mice, while Bacteroides caecimuris was significantly enriched in mice with RP. The results indicate that retinal degenerative changes in RP are linked to relevant gut microbiome changes. The findings suggest that microbiome shifting could be considered as potential biomarker and therapeutic target for retinal degenerative diseases.
Funder
Ministerio de Economía, Industria y Competitividad, Gobierno de España
Universidad de Alicante
Ministerio de Ciencia e Innovación
Instituto de Salud Carlos III
Asociación Retina Asturias
FARPE-FUNDALUCE
Conselleria de Cultura, Educación y Ciencia, Generalitat Valenciana
Publisher
Springer Science and Business Media LLC
Cited by
21 articles.
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