Dietary fibre confers therapeutic effects in a preclinical model of Huntington’s disease

亨廷顿病 微生物群 生物 粪便 亨廷顿蛋白 疾病 生理学 内科学 医学 生物信息学 微生物学
作者
Carolina Gubert,Geraldine Kong,C. B. Costello,Cameron D. Adams,Bethany A. Masson,Wenzhi Qin,Jocelyn M. Choo,Vinod K. Narayana,Geraint B. Rogers,Thibault Renoir,John B. Furness,Anthony J. Hannan
出处
期刊:Brain Behavior and Immunity [Elsevier BV]
卷期号:116: 404-418 被引量:4
标识
DOI:10.1016/j.bbi.2023.12.023
摘要

Huntington’s disease (HD) is a neurodegenerative disorder involving psychiatric, cognitive and motor deficits, as well as peripheral symptoms, including gastrointestinal dysfunction. The R6/1 HD mouse model expresses a mutant human huntingtin transgene and has been shown to provide an accurate disease model. Recent evidence of gut microbiome disruption was shown in preclinical and clinical HD. Therefore, we aimed to assess the potential role of gut microbial modulation in the treatment of HD. The R6/1 HD mice and wild-type littermate controls were randomised to receive diets containing different amounts of fibre: high-fibre (10 % fibre), control (5 % fibre), or zero-fibre (0 % fibre), from 6 to 20 weeks of age. We characterized the onset and progression of motor, cognitive and affective deficits, as well as gastrointestinal function and gut morphological changes. Faeces were collected for gut microbiome profiling using 16S rRNA sequencing, at 14 and 20 weeks of age. When compared to the control diet, high-fibre diet improved the performance of HD mice in behavioral tests of cognitive and affective function, as well as the gastrointestinal function of both HD and wild-type mice. While the diets changed the beta diversity of wild-type mice, no statistical significance was observed at 14 or 20 weeks of age within the HD mice. Analysis of Composition of Microbiomes with Bias Correction (ANCOM-BC) models were performed to evaluate microbiota composition, which identified differences, including a decreased relative abundance of the phyla Actinobacteriota, Campylobacterota and Proteobacteria and an increased relative abundance of the families Bacteroidaceae, Oscillospiraceae and Ruminococcaceae in HD mice when compared to wild-type mice after receiving high-fibre diet. PICRUSt2 revealed that high-fibre diet also decreased potentially pathogenic functional pathways in HD. In conclusion, high-fibre intake was effective in enhancing gastrointestinal function, cognition and affective behaviors in HD mice. These findings indicate that dietary fibre interventions may have therapeutic potential in Huntington’s disease to delay clinical onset, and have implications for related disorders exhibiting dysfunction of the gut-brain axis.
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