AAV过表达α -突触核蛋白致大鼠功能缺损的研究

F. Gubinelli , L. Sarauskyte , C. Venuti , I. Kulacz , G. Cazzolla , M. Negrini , D. Anwer , I. Vecchio , F. Jakobs , F.P. Manfredsson , M. Davidsson , A. Heuer
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引用次数: 1

摘要

背景在过去的几十年里,人们产生了不同的帕金森病(PD)临床前动物模型,旨在模拟中脑多巴胺能(DA)细胞的进行性神经元损失以及运动和非运动损伤。在所有可用的模型中,基于AAV的人类α-突触核蛋白(h-aSYN)过表达模型是研究疾病进展和治疗干预的有前途的工具。目的这项工作的目的是描述h-aSYN黑质纹状体过度表达后运动和非运动区的损伤,并将行为缺陷与相关病理的组织学评估相关联。方法黑质内注射表达h-aSYN的AAV9与未经处理的动物、不表达转基因或GFP的6-OHDA和AAV9进行比较。对这些动物进行了一系列简单和复杂的行为任务评估,探索运动和非运动领域。采用免疫组织化学方法对尸检神经病理学进行分析。结果h-aSYN的过表达导致纹状体SN和轴突终末DA神经元的进行性变性。我们观察到广泛的黑质和纹状体病理,类似于人类帕金森病大脑,以及在简单运动任务和非运动领域(如动机缺陷和偏侧忽视)出现稳定的进行性缺陷。结论在目前的工作中,我们表征了一种在组织学和行为学水平上与人类帕金森病病理学非常相似的帕金森病大鼠模型。细胞损失与行为表现的相关性使得能够选择可用于神经保护或神经恢复治疗的大鼠。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Characterisation of functional deficits induced by AAV overexpression of alpha-synuclein in rats

Characterisation of functional deficits induced by AAV overexpression of alpha-synuclein in rats

Background

In the last decades different preclinical animal models of Parkinson's disease (PD) have been generated, aiming to mimic the progressive neuronal loss of midbrain dopaminergic (DA) cells as well as motor and non-motor impairment. Among all the available models, AAV-based models of human alpha-synuclein (h-aSYN) overexpression are promising tools for investigation of disease progression and therapeutic interventions.

Objectives

The goal with this work was to characterise the impairment in motor and non-motor domains following nigrostriatal overexpression of h-aSYN and correlate the behavioural deficits with histological assessment of associated pathology.

Methods

Intranigral injection of an AAV9 expressing h-aSYN was compared with untreated animals, 6-OHDA and AAV9 expressing either no transgene or GFP. The animals were assessed on a series of simple and complex behavioural tasks probing motor and non-motor domains. Post-mortem neuropathology was analysed using immunohistochemical methods.

Results

Overexpression of h-aSYN led to progressive degeneration of DA neurons of the SN and axonal terminals in the striatum (STR). We observed extensive nigral and striatal pathology, resembling that of human PD brain, as well as the development of stable progressive deficit in simple motor tasks and in non-motor domains such as deficits in motivation and lateralised neglect.

Conclusions

In the present work we characterized a rat model of PD that closely resembles human PD pathology at the histological and behavioural level. The correlation of cell loss with behavioural performance enables the selection of rats which can be used in neuroprotective or neurorestorative therapies.

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