槲皮素对临床前帕金森病大鼠黑质纹状体神经退行性和代偿过程的影响。

I V Ekimova, D V Plaksina
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引用次数: 0

摘要

近10年来关于HSP70参与帕金森氏病(PD)发病机制的数据,并不能回答应激诱导的HSP70脑表达降低是否是帕金森氏病进行性神经变性的原因之一。本研究将热休克蛋白表达抑制剂槲皮素应用于大鼠黑质纹状体系统蛋白酶体功能障碍模型。该模型是通过显微注射特异性蛋白酶体活性抑制剂乳酸酵素(lactacystin)建立的,该酶体活性抑制剂局部注射于黑质致密部(SNpc)。该模型再现了PD临床前阶段黑质纹状体变性和神经化学特征的阈值以下水平。首次发现槲皮素预处理抑制lc诱导的SNpc神经元中Hsp70的表达,使多巴胺(DA)能神经元死亡增加1.5倍,纹状体DA能轴突退化增加2.7倍。这些变化伴随着SNpc神经元代偿机制和HSP70含量的减少,以及运动功能障碍的出现,这是临床PD期的典型特征。本研究结果表明,Hsp70在蛋白酶体功能障碍的黑质纹状体系统保护机制中发挥重要作用,这是临床前PD阶段的特征。所得数据可作为开发外源性Hsp70治疗早期PD新技术的科学依据。
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[EFFECT OF QUERCETIN ON NEURODEGENERATIVE AND COMPENSATORY PROCESSES IN NIGROSTRIATAL SYSTEM IN A MODEL OF PRECLINICAL PARKINSON''S DISEASE STAGE IN RATS].

Data on HSP70 involvement in Parkinson's disease (PD) pathogenesis, received in last 10 years, cannot answer the question whether the decrease in stress-inducible Hsp70 brain expression is one of the reasons for progressive neurodegeneration in PD. In the present study, the inhibitor of HSPs expression quercetin was used in a rat model of nigrostriatal system proteasome dysfunction. This model was created by the microinjections of the specific proteasome activity inhibitor lactacystin, that was injected locally to the substantia nigra pars compacta (SNpc). The model reproduces the under-threshold level of nigrostriatal degeneration and neurochemical features characteristic of the preclinical PD stage. It was shown for the first time that quercetin pretreatment inhibited the LC-induced expression of Hsp70 in the SNpc neurons and increased in 1.5 times the dopamine (DA)-ergic neurons death and in 2.7 times the striatal DA-ergic axons degeneration. These changes were accompanied by the depletion of compensatory mechanisms and HSP70 content in the SNpc neurons and the appearance of the motor dysfunctions, typical for the clinical PD stage. The results of this investigation indicate the important role of Hsp70 in mechanisms of the nigrostriatal system protection in proteasome dysfunction, characteristic for the pre-clinical PD stage. The data obtained can be considered as the scientific basis for the development of new technologies for early PD therapy by exogenous Hsp70.

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