Exercise attenuates neuropathology and has greater benefit on cognitive than motor deficits in the R6/1 Huntington's disease mouse model

被引:54
作者
Harrison, David J. [1 ]
Busse, Monica [2 ]
Openshaw, Rebecca [1 ]
Rosser, Anne E. [1 ]
Dunnett, Stephen B. [1 ]
Brooks, Simon P. [1 ]
机构
[1] Cardiff Univ, Sch Biosci, Cardiff CF10 3AX, S Glam, Wales
[2] Cardiff Univ, Sch Healthcare Studies, Cardiff CF14 4XN, Wales
关键词
Huntington's disease; Exercise; Enrichment; Cognitive training; R6/1; Striatum; INCLUSION-BODY FORMATION; LONG-TERM POTENTIATION; KNOCK-IN MICE; NEUROTROPHIC-FACTOR; TRANSGENIC MICE; LONGITUDINAL ANALYSIS; BEHAVIORAL-PHENOTYPE; HIPPOCAMPAL NEUROGENESIS; ENVIRONMENTAL ENRICHMENT; EPIGENETIC REGULATION;
D O I
10.1016/j.expneurol.2013.07.014
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Huntington's disease (HD) is a neurodegenerative disease caused by a mutation within the huntingtin gene that induces degeneration within the striatal nuclei, progressing to widespread brain atrophy and death. The neurodegeneration produces symptoms that reflect a corticostriatal disconnection syndrome involving motor, cognitive and psychiatric disturbance. Environmental enrichment has been demonstrated to be beneficial to patients with neurological disorders, with exercise being central to this effect Rodent studies have confirmed exercise-induced neurogenesis and increased growth factor levels in the brain and improved behavioural function. The present study sought to determine whether an extended regime of exercise could retard disease progression in the R6/1 mouse model of HD. The study was designed specifically with a translational focus, selecting behavioural assessments with high clinical predictive validity. We found that exercise improved gait function in both control and HD mice and selectively improved performance in the R6/1 mice on a motor coordination aspect of the balance beam task. Exercise also retarded the progression of cognitive dysfunction on water T-maze procedural and reversal learning probes presented serially to probe cognitive flexibility. In addition, exercise reduced striatal neuron loss in the R6/1 mice but increased striatal neuronal intra-nuclear inclusion size and number relative to non-exercised R6/1 mice which demonstrated increased numbers of extra-neuronal inclusions, suggesting that the functional effects were striatally mediated. These results confirm and extend those from previous studies that demonstrate that HD may be amenable to exercise-mediated therapeutics, but suggest that the impact of such interventions may be primarily cognitive. (C) 2013 The Authors. Published by Elsevier Inc. All rights reserved.
引用
收藏
页码:457 / 469
页数:13
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