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An Electrochemical Study on the Effect of Metal Chelation and Reactive Oxygen Species on a Synthetic Neuromelanin Model

机译:金属螯合和活性氧对合成神经黑色素模型影响的电化学研究

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摘要

Neuromelanin is present in the cathecolaminergic neuron cells of the substantia nigra and locus coeruleus of the midbrain of primates. Neuromelanin plays a role in Parkinson's disease (PD). Literature reports that neuromelanin features, among others, antioxidant properties by metal ion chelation and free radical scavenging. The pigment has been reported to have prooxidant properties too, in certain experimental conditions. We propose an explorative electrochemical study of the effect of the presence of metal ions and reactive oxygen species (ROS) on the cyclic voltammograms of a synthetic model of neuromelanin. Our work improves the current understanding on experimental conditions where neuromelanin plays an antioxidant or prooxidant behavior, thus possibly contributing to shed light on factors promoting the appearance of PD.
机译:神经黑色素存在于黑质的黑素的cathecolaminergic神经元细胞和灵长类中脑的蓝斑轨迹中。神经黑色素在帕金森氏病(PD)中起作用。文献报道,神经黑色素具有通过金属离子螯合和清除自由基而具有的抗氧化特性。据报道,在某些实验条件下,该颜料也具有抗氧化剂的性能。我们提议对金属黑色素合成模型的循环伏安图上存在的金属离子和活性氧(ROS)的影响进行探索性电化学研究。我们的工作改善了对神经素发挥抗氧化剂或促氧化剂行为的实验条件的当前理解,因此可能有助于阐明促进PD出现的因素。

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