Logroscino G, Marder K, Graziano J, Freyer G, Slavkovich V, LoIacono N, Cote L, Mayeux R
Gertrude H. Sergievsky Center, Department of Neurology, College of Physicians and Surgeons, New York, NY, USA.
Neurology. 1997 Sep;49(3):714-7. doi: 10.1212/wnl.49.3.714.
Iron deposition in the substantia nigra in Parkinson's disease has been associated with an increase in lactoferrin receptors and a reduction in ferritin concentration. This accumulation of iron in the brain may accelerate free radical formation, lipid peroxidation, and neuronal death. Remarkably, there are few data available concerning systemic iron metabolism in Parkinson's disease. We measured total iron binding capacity and circulating iron, ferritin, transferrin, and transferrin receptors; calculated transferrin saturation; and estimated dietary iron intake in patients with idiopathic Parkinson's disease and in controls. Concentrations of circulating iron, ferritin, and transferrin as well as total iron binding capacity and transferrin saturation were significantly lower in patients than controls. There were no differences in transferrin receptors or dietary intake of iron. The decrease in levels of systemic ferritin and transferrin and the total iron binding capacity parallels observations in a Parkinson's disease brain, but the reductions in serum iron concentrations and transferrin saturation do not, and were unexpected. These results suggest the existence of a defect in the systems that regulate the synthesis of the major proteins of iron metabolism in the liver as well as the brain in Parkinson's disease that may, over time, expedite entry of iron into the brain and decrease iron in the extracellular compartment.
帕金森病中黑质的铁沉积与乳铁蛋白受体增加及铁蛋白浓度降低有关。大脑中铁的这种积累可能会加速自由基形成、脂质过氧化和神经元死亡。值得注意的是,关于帕金森病中全身铁代谢的数据很少。我们测量了特发性帕金森病患者和对照组的总铁结合能力、循环铁、铁蛋白、转铁蛋白和转铁蛋白受体;计算了转铁蛋白饱和度;并估计了饮食中铁的摄入量。患者的循环铁、铁蛋白和转铁蛋白浓度以及总铁结合能力和转铁蛋白饱和度均显著低于对照组。转铁蛋白受体或饮食中铁摄入量没有差异。全身铁蛋白和转铁蛋白水平以及总铁结合能力的降低与帕金森病大脑中的观察结果相似,但血清铁浓度和转铁蛋白饱和度的降低并非如此,且出乎意料。这些结果表明,帕金森病中肝脏和大脑中调节铁代谢主要蛋白质合成的系统存在缺陷,随着时间的推移,这可能会加速铁进入大脑并降低细胞外间隙中的铁含量。