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Dose-dependent genotype effects of BDNF Val66Met polymorphism on default mode network in early stage Alzheimer's disease

机译:BDNF Val66Met多态性对早期阿尔茨海默病默认模式网络的剂量依赖性基因型影响

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摘要

In humans, brain-derived neurotrophic factor (BDNF) has been shown to play a pivotal role in neurocognition, and its gene contains a functional polymorphism (Val66Met) that may explain individual differences in brain volume and memory-related activity.In this study, we enrolled 186 Alzheimer's disease (AD) patients who underwent 3D T1 magnetic resonance imaging, and explored the gray matter (GM) structural covariance networks (SCN). The patients were divided into three groups according to their genotype: Met/Met (n = 45), Val/Met (n = 86) and Val/Val (n = 55). Seed-based analysis was performed focusing on four SCN networks. Neurobehavioral scores served as the major outcome factor.Only peak cluster volumes of default mode medial temporal lobe network showed significant genotype interactions, of which the interconnected peak clusters showed dose-dependent genotype effects. There were also significant correlations between the cognitive test scores and interconnected-cluster volumes, especially in the orbitofrontal cortex.These findings support the hypothesis that BDNF rs6265 polymorphisms modulate entorhinal cortex-interconnected clusters and the valine allele was associated with stronger structural covariance patterns that determined the cognitive outcomes.
机译:在人类中,脑源性神经营养因子(BDNF)已被证明在神经认知中起关键作用,其基因包含功能性多态性(Val66Met),可以解释脑容量和记忆相关活动的个体差异。我们招募了186位接受3D T1磁共振成像的阿尔茨海默病(AD)患者,并探讨了灰质(GM)结构协方差网络(SCN)。根据基因型将患者分为三组:Met / Met(n = 45),Val / Met(n = 86)和Val / Val(n = 55)。基于种子的分析着重于四个SCN网络。神经行为评分是主要的预后因素。只有默认模式内侧颞叶网络的峰簇体积显示出显着的基因型相互作用,其中相互联系的峰簇表现出剂量依赖性基因型效应。认知测验分数和相互关联的簇体积之间也存在显着的相关性,尤其是在眶额皮质中。认知结果。

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