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首页> 外文期刊>Neurological Research: An Interdisciplinary Quarterly Journal >Pramipexole has ameliorating effects on levodopa-induced abnormal dopamine turnover in parkinsonian striatum and quenching effects on dopamine-semiquinone generated in vitro.
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Pramipexole has ameliorating effects on levodopa-induced abnormal dopamine turnover in parkinsonian striatum and quenching effects on dopamine-semiquinone generated in vitro.

机译:普拉克索对帕金森氏纹状体中左旋多巴引起的异常多巴胺转换异常有改善作用,对体外产生的多巴胺-半醌有猝灭作用。

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摘要

OBJECTIVES AND METHODS: To clarify the effects of a non-ergot dopamine agonist pramipexole on levodopa-induced abnormal dopamine metabolism in the parkinsonian model, we examined striatal changes in dopamine and its metabolites after repeated administration of pramipexole and/or levodopa using 6-hydroxydopamine-lesioned hemi-parkinsonian mice. Moreover, the effects of pramipexole on dopamine-semiquinones were also accessed using an in vitro dopamine-semiquinone generating system to elucidate its neuroprotective property against dopamine quinone-induced neurotoxicity that appears as dopamine neuron-specific oxidative stress. RESULTS: Combined administration of pramipexole (0.5 or 1 mg/kg/day, 7 days) selectively suppressed the levodopa-induced (50 mg/kg/day) increase of striatal dopamine turnover in the parkinsonian side, but not in the non-lesioned side. In addition to the antioxidant properties previously reported, it was clarified that pramipexole scavenged dopamine-semiquinones generated in a dose-dependent manner either in simultaneous incubation or post-incubation. DISCUSSION: The neurotoxicity of dopamine quinones that appear as dopaminergic neuron-specific oxidative stress has recently been known to play a role in the pathogenesis of Parkinson's disease and neurotoxin-induced parkinsonism. Therefore, the present results revealed that pramipexole possesses neuroprotective effects against abnormal dopamine metabolism in excessively levodopa-administered parkinsonian brains and against cytotoxic dopamine quinones generated from excess dopamine, preventing consequently dopaminergic neuronal damage induced by excess dopamine or levodopa.
机译:目的和方法:为了阐明非麦角多巴胺激动剂普拉克索对帕金森病模型中左旋多巴诱导的异常多巴胺代谢的影响,我们在反复使用6-羟基多巴胺和普拉克索和/或左旋多巴后检查了多巴胺及其代谢产物的纹状体变化损伤的半帕金森病小鼠。此外,还使用体外多巴胺-半醌生成系统来研究普拉克索对多巴胺-半醌的作用,以阐明其对多巴胺醌诱导的神经毒性的神经保护特性,该神经毒性表现为多巴胺神经元特异性氧化应激。结果:普拉克索(0.5或1 mg / kg /天,7天)联合给药选择性抑制了左旋多巴(50 mg / kg /天)在帕金森病侧的纹状体多巴胺周转率增加(但不是非病变部分)侧。除了先前报道的抗氧化剂特性外,还阐明了普拉克索清除了同时孵育或孵育后以剂量依赖的方式产生的多巴胺-半醌。讨论:多巴胺醌神经毒性特异性多巴胺醌的神经毒性最近已知在帕金森氏病的发病机理和神经毒素引起的帕金森氏症中起作用。因此,目前的结果表明,普拉克索具有对过量左旋多巴施用的帕金森氏脑中的异常多巴胺代谢和对由过量多巴胺产生的细胞毒性多巴胺醌的神经保护作用,从而防止了由过量多巴胺或左旋多巴引起的多巴胺能神经元损伤。

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