Floor E
Department of Molecular Biosciences, University of Kansas, Lawrence 66045, USA.
Cell Mol Biol (Noisy-le-grand). 2000 Jun;46(4):709-20.
Recent findings strengthen the connection between iron accumulation in the basal ganglia, oxidative stress and nigrostriatal degeneration. Oxidative stress appears to be elevated in the normal human substantia nigra in comparison with other brain regions, and further increases occur in Parkinson's disease. Accumulation of iron may contribute to degeneration of nigral dopamine neurons by catalyzing oxidative damage to cell components and also by perturbing the network of interactions that modulate cellular redox status.
最近的研究结果强化了基底神经节中铁蓄积、氧化应激与黑质纹状体变性之间的联系。与其他脑区相比,正常人类黑质中的氧化应激似乎有所升高,而在帕金森病中会进一步增加。铁的蓄积可能通过催化对细胞成分的氧化损伤以及扰乱调节细胞氧化还原状态的相互作用网络,从而导致黑质多巴胺能神经元的变性。