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A Complex Interplay of Vitamin B1 and B6 Metabolism with Cognition, Brain Structure, and Functional Connectivity in Older Adults

机译:维生素B1和B6代谢与老年人的认知,脑结构和功能连接的复杂相互作用

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摘要

Aging is associated with brain atrophy, functional brain network reorganization and decline of cognitive performance, albeit characterized by high interindividual variability. Among environmental influencing factors accounting for this variability, nutrition and particularly vitamin supply is thought to play an important role. While evidence exists that supplementation of vitamins B6 and B1 might be beneficial for cognition and brain structure, at least in deficient states and neurodegenerative diseases, little is known about this relation during healthy aging and in relation to reorganization of functional brain networks. We thus assessed the relation between blood levels of vitamins B1 and B6 and cognitive performance, cortical folding, and functional resting-state connectivity in a large sample of older adults (N > 600; age: 55–85 years), drawn from the population-based 1000BRAINS study. In addition to blood sampling, subjects underwent structural and functional resting-state neuroimaging as well as extensive neuropsychological testing in the domains of executive functions, (working) memory, attention, and language. Brain regions showing changes in the local gyrification index as calculated using FreeSurfer in relation to vitamin levels were used for subsequent seed-based resting-state functional connectivity analysis. For B6, a positive correlation with local cortical folding was found throughout the brain, while only slight changes in functional connectivity were observed. Contrarily, for B1, a negative correlation with cortical folding as well as problem solving and visuo-spatial working memory performance was found, which was accompanied by pronounced increases of interhemispheric and decreases of intrahemispheric functional connectivity. While the effects for B6 expand previous knowledge on beneficial effects of B6 supplementation on brain structure, they also showed that additional effects on cognition might not be recognizable in healthy older subjects with normal B6 blood levels. The cortical atrophy and pronounced functional reorganization associated with B1, contrarily, was more in line with the theory of a disturbed B1 metabolism in older adults, leading to B1 utilization deficits, and thus, an effective B1 deficiency in the brain, despite normal to high-normal blood levels.
机译:衰老与脑萎缩,功能性大脑网络重组和认知能力下降有关,尽管其个体间差异很大。在解释这种变异性的环境影响因素中,营养尤其是维生素的供应被认为起着重要的作用。尽管有证据表明补充维生素B6和B1可能对认知和大脑结构有益,至少在缺陷状态和神经退行性疾病中,但对于健康衰老过程中这种关系以及与功能性大脑网络重组的关系知之甚少。因此,我们从人群中抽取了一大批老年人(N> 600;年龄:55-85岁),评估了血液中维生素B1和B6的水平与认知能力,皮层折叠和功能性静息状态之间的关系。基于1000BRAINS的研究。除采血外,还对受试者的执行功能,(工作)记忆,注意力和语言进行结构和功能的静止状态神经成像以及广泛的神经心理学测试。随后使用基于种子的静止状态功能连接性分析,使用显示使用FreeSurfer计算的相对于维生素水平的局部回旋指数变化的大脑区域。对于B6,在整个大脑中发现与局部皮质折叠呈正相关,而仅观察到功能连接性的轻微变化。相反,对于B1,发现与皮层折叠以及问题解决和视觉空间工作记忆性能呈负相关,这伴随着半球间显着增加和半球内功能连接性降低。虽然B6的作用扩大了先前关于补充B6对脑结构的有益作用的知识,但他们还表明,在B6血脂正常的健康老年受试者中,认知的其他作用可能无法识别。相反,与B1相关的皮质萎缩和明显的功能重组与老年人B1代谢紊乱的理论更为相符,导致B1利用率缺乏,因此,尽管正常至高水平,大脑中的有效B1缺乏症-正常血液水平。

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