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在II型黏多糖贮积症小鼠模型中鉴定年龄依赖性运动和神经心理行为异常。

Identification of age-dependent motor and neuropsychological behavioural abnormalities in a mouse model of Mucopolysaccharidosis Type II.

作者信息

Gleitz Hélène F E, O'Leary Claire, Holley Rebecca J, Bigger Brian W

机构信息

Stem Cell & Neurotherapies, Division of Cell Matrix Biology & Regenerative Medicine, Faculty of Biology, Medicine and Health, The University of Manchester, Manchester, United Kingdom.

出版信息

PLoS One. 2017 Feb 16;12(2):e0172435. doi: 10.1371/journal.pone.0172435. eCollection 2017.

Abstract

Severe mucopolysaccharidosis type II (MPS II) is a progressive lysosomal storage disease caused by mutations in the IDS gene, leading to a deficiency in the iduronate-2-sulfatase enzyme that is involved in heparan sulphate and dermatan sulphate catabolism. In constitutive form, MPS II is a multi-system disease characterised by progressive neurocognitive decline, severe skeletal abnormalities and hepatosplenomegaly. Although enzyme replacement therapy has been approved for treatment of peripheral organs, no therapy effectively treats the cognitive symptoms of the disease and novel therapies are in development to remediate this. Therapeutic efficacy and subsequent validation can be assessed using a variety of outcome measures that are translatable to clinical practice, such as behavioural measures. We sought to consolidate current knowledge of the cognitive, skeletal and motor abnormalities present in the MPS II mouse model by performing time course behavioural examinations of working memory, anxiety, activity levels, sociability and coordination and balance, up to 8 months of age. Cognitive decline associated with alterations in spatial working memory is detectable at 8 months of age in MPS II mice using spontaneous alternation, together with an altered response to novel environments and anxiolytic behaviour in the open-field. Coordination and balance on the accelerating rotarod were also significantly worse at 8 months, and may be associated with skeletal changes seen in MPS II mice. We demonstrate that the progressive nature of MPS II disease is also seen in the mouse model, and that cognitive and motor differences are detectable at 8 months of age using spontaneous alternation, the accelerating rotarod and the open-field tests. This study establishes neurological, motor and skeletal measures for use in pre-clinical studies to develop therapeutic approaches in MPS II.

摘要

严重II型黏多糖贮积症(MPS II)是一种进行性溶酶体贮积病,由IDS基因突变引起,导致艾杜糖醛酸-2-硫酸酯酶缺乏,该酶参与硫酸乙酰肝素和硫酸皮肤素的分解代谢。典型的MPS II是一种多系统疾病,其特征为进行性神经认知衰退、严重骨骼异常和肝脾肿大。尽管酶替代疗法已被批准用于治疗外周器官,但尚无疗法能有效治疗该疾病的认知症状,目前正在研发新的疗法来解决这一问题。治疗效果及后续验证可通过多种可转化为临床实践的结局指标进行评估,如行为指标。我们试图通过对MPS II小鼠模型进行长达8个月的工作记忆、焦虑、活动水平、社交能力以及协调和平衡的时间进程行为检查,来巩固目前对其认知、骨骼和运动异常的认识。使用自发交替试验可发现,8月龄的MPS II小鼠存在与空间工作记忆改变相关的认知衰退,同时对新环境的反应改变以及在旷场试验中的抗焦虑行为也有所改变。8月龄时,加速转棒试验中的协调和平衡能力也显著更差,这可能与MPS II小鼠的骨骼变化有关。我们证明,MPS II疾病的进行性特征在小鼠模型中也有体现,并且在8月龄时使用自发交替试验、加速转棒试验和旷场试验可检测到认知和运动差异。本研究建立了用于临床前研究的神经学、运动和骨骼测量方法,以开发MPS II的治疗方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/389c/5313159/895408af0e98/pone.0172435.g001.jpg

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