英国生物样本库中不同的纵向脑白质微结构变化与常见精神疾病和阿尔茨海默病的相关多基因风险

IF 4 Q2 NEUROSCIENCES
Max Korbmacher , Dennis van der Meer , Dani Beck , Daniel E. Askeland-Gjerde , Eli Eikefjord , Arvid Lundervold , Ole A. Andreassen , Lars T. Westlye , Ivan I. Maximov
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引用次数: 0

摘要

背景在成年和衰老过程中,白质(WM)的结构和组织以脱髓鞘和萎缩等缓慢退化过程为特征。这种衰老过程的加速与一系列疾病的发生有关。因此,准确描述健康大脑的成熟过程,尤其是白质结构的特征,对于理解衰老至关重要。方法我们使用纵向弥散磁共振成像技术概述了英国生物库(UKB)中不同空间和时间尺度的白质结构变化(n = 2678;年龄扫描 1 = 62.38 ± 7.23 岁;年龄扫描 2 = 64.81 ± 7.1 岁)。为了研究WM结构与常见临床症状之间的遗传重叠,我们在UKB的纵向(n = 2329)和横截面(n = 31 056)验证数据中测试了WM结构与最常见的神经退行性疾病阿尔茨海默病和常见精神疾病(单相和双相抑郁症、焦虑症、强迫症、自闭症、精神分裂症、注意力缺陷/多动障碍)的多基因风险评分之间的关联。结果我们的研究结果表明,整个大脑的WM变化具有空间分布性,多基因风险评分与WM的关联也具有分布性。重要的是,大脑纵向变化比使用的横断面测量方法更能反映遗传风险对疾病发展的影响,区域差异比全球平均水平更能具体地揭示基因与大脑变化之间的关联。结论我们扩展了最近的研究结果,提供了不同空间层次上WM微结构退化的详细概述,有助于了解大脑衰老的基本过程。有必要进一步开展纵向研究,以探讨与衰老相关的基因-大脑关联。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Distinct Longitudinal Brain White Matter Microstructure Changes and Associated Polygenic Risk of Common Psychiatric Disorders and Alzheimer’s Disease in the UK Biobank

Background

During the course of adulthood and aging, white matter (WM) structure and organization are characterized by slow degradation processes such as demyelination and shrinkage. An acceleration of such aging processes has been linked to the development of a range of diseases. Thus, an accurate description of healthy brain maturation, particularly in terms of WM features, is fundamental to the understanding of aging.

Methods

We used longitudinal diffusion magnetic resonance imaging to provide an overview of WM changes at different spatial and temporal scales in the UK Biobank (UKB) (n = 2678; agescan 1 = 62.38 ± 7.23 years; agescan 2 = 64.81 ± 7.1 years). To examine the genetic overlap between WM structure and common clinical conditions, we tested the associations between WM structure and polygenic risk scores for the most common neurodegenerative disorder, Alzheimer’s disease, and common psychiatric disorders (unipolar and bipolar depression, anxiety, obsessive-compulsive disorder, autism, schizophrenia, attention-deficit/hyperactivity disorder) in longitudinal (n = 2329) and cross-sectional (n = 31,056) UKB validation data.

Results

Our findings indicate spatially distributed WM changes across the brain, as well as distributed associations of polygenic risk scores with WM. Importantly, brain longitudinal changes reflected genetic risk for disorder development better than the utilized cross-sectional measures, with regional differences giving more specific insights into gene-brain change associations than global averages.

Conclusions

We extend recent findings by providing a detailed overview of WM microstructure degeneration on different spatial levels, helping to understand fundamental brain aging processes. Further longitudinal research is warranted to examine aging-related gene-brain associations.

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来源期刊
Biological psychiatry global open science
Biological psychiatry global open science Psychiatry and Mental Health
CiteScore
4.00
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