首页> 外文期刊>Neuropsychopharmacology reports. >Contributions of HFE polymorphisms to brain and blood iron load, and their links to cognitive and motor function in healthy adults
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Contributions of HFE polymorphisms to brain and blood iron load, and their links to cognitive and motor function in healthy adults

机译:HFE多态性对大脑和血氧载荷的贡献,以及健康成年人的认知和运动功能的联系

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Background Brain iron overload is linked to brain deterioration, and cognitive and motor impairment in neurodegenerative disorders and normal aging. Mutations in the HFE gene are associated with iron dyshomeostasis and are risk factors for peripheral iron overload. However, links to brain iron load and cognition are less consistent and data are scarce. Aims and methods Using quantitative susceptibility mapping with magnetic resonance imaging, we investigated whether C282Y and H63D contributed to aging-related increases in brain iron load and lower cognitive and motor performance in 208 healthy individuals aged 20-79?years. We also assessed the modulatory effects of HFE mutations on associations between performance and brain iron load, as well as peripheral iron metabolism. Results Independent of age, carriers of either C282Y and/or H63D ( HFE -pos group, n?=?66) showed a higher load of iron in putamen than non-carriers ( HFE -neg group, n?=?142), as well as higher transferrin saturation and lower transferrin and transferrin receptors in blood. In the HFE -neg group, higher putaminal iron was associated with lower working memory. In the HFE -pos group, higher putaminal iron was instead linked to higher executive function, and lower plasma transferrin was related to higher episodic memory. Iron-performance associations were modest albeit reliable. Conclusion Our findings suggest that HFE status is characterized by higher regional brain iron load across adulthood, and support the presence of a modulatory effect of HFE status on the relationships between iron load and cognition. Future studies in healthy individuals are needed to confirm the reported patterns.
机译:背景技术脑铁过载与脑恶化,神经变性障碍和正常老化中的认知和电机损伤相关联。 HFE基因中的突变与铁失液有关,是外围铁过载的危险因素。但是,脑铁负荷和认知的链接不太一致,数据稀缺。使用磁共振成像的定量敏感性映射的目的和方法,我们研究了C282Y和H63D是否有助于脑内血管载荷和降低的208年健康个体在208年龄的衰老和电动机性能下的衰老增加。我们还评估了HFE突变对性能和脑铁负荷之间的关联的调节效应,以及外周铁代谢。结果无关,C282Y和/或H63D(HFE -POS组,N?= 66)的携带者携带的载体在腐烂中的铁比非载体(HFE-NEG组,N?= 142)显示出更高负载的铁。以及血液中的较高转铁蛋白饱和度和较低的转铁蛋白和转铁蛋白受体。在HFE -NEG组中,更高的底座铁与较低的工作记忆相关。在HFE -POS组中,更高的粘附物铁被连接到更高的执行功能,并且降低血浆转移素与更高的显微内存记忆有关。铁绩效协会虽然可靠,但可靠。结论我们的研究结果表明,HFE状态的特点是在成年期跨越较高的区域脑铁负荷,并支持HFE地位对铁负荷和认知之间关系的调节作用。需要在健康的个人中进行未来的研究来确认报告的模式。

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