Polygenic pathways shape white matter vulnerability to Alzheimer's disease-related pathophysiological changes.

IF 7.6 1区 医学 Q1 CLINICAL NEUROLOGY Alzheimer's Research & Therapy Pub Date : 2025-11-10 DOI:10.1186/s13195-025-01888-3
Mario Tranfa, Leonard Pieperhoff, Giuseppe Pontillo, Emma S Luckett, Lyduine E Collij, Tiago Gil Oliveira, Niccoló Tesi, Natalia Vilor-Tejedor, André Altmann, Luca Roccatagliata, Matteo Pardini, Henne Holstege, Marcel Reinders, Pierre Payoux, Pablo Martinez-Lage, Craig W Ritchie, Adam Waldman, Joanna M Wardlaw, Juan Domingo Gispert, Gemma Salvadó, Arturo Brunetti, Henk J M M Mutsaerts, Alle Meije Wink, Frederik Barkhof, Luigi Lorenzini
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Abstract

Background: The accumulation of amyloid-β1-42 (Aβ1-42) peptides and phosphorylated-Tau181 (p-Tau181) tangles from the preclinical stages of Alzheimer's disease (AD) has led to a biological definition of the disease. However, among Aβ1-42-positive individuals, cognitive decline onset varies, and some never develop symptoms. Genetic influences on molecular pathways and their interactions with proteinopathy may underlie this heterogeneity. Leveraging data from a large sample of cognitively intact older adults in the European Prevention of Alzheimer Dementia (EPAD) cohort, we examined how AD-related pathophysiological changes (i.e., Aβ1-42 and p-Tau181), polygenic pathways and their interaction are associated with WM micro- and macrostructural properties.

Methods: We selected 803 individuals (mean age = 64.7 ± 7.3 years, 458 [57.0%] females, 275 [34.2%] APOE-ε4 carriers) with CSF-Aβ1-42 and p-Tau181 measurements available, full genotyping, and structural and diffusion MRI. Polygenic risk scores (PRSs) were computed using 85 AD-related genetic variants. These were mapped to their corresponding genes and, after excluding those belonging to the APOE locus, clustered by function into six pathway-specific PRSs (i.e., immune activation, signal transduction, inflammation, lipid, amyloid, and clearance pathways). Diffusion MRIs were processed through the fixel-based analysis framework to derive fiber density (FD) and fiber cross-section (FC) metrics, which were averaged within WM tracts. Linear models assessed the effects of AD-related pathophysiological changes, global and pathway-specific PRSs, and their interactions on FD and FC at both the tract and fixel levels. Models were corrected for multiple comparisons.

Results: P-Tau181 was primarily associated with greater FD. The lipid pathway was associated with greater FD and FC, with these effects predominantly occurring in the left hemisphere, consistent with evidence of hemispheric dominance. The clearance pathway moderated the effect of Aβ1-42 on FD, with a positive slope in A + compared to A- individuals. The immune activation pathway moderated the effect of p-Tau181 on FD, with a negative slope in T + compared to T- individuals.

Conclusions: Pathway-specific genetic vulnerability to AD is associated with alterations in WM tracts both directly and by moderating the effects of AD-related pathophysiological changes. AD-associated genetic risk should be integrated into the AD diagnostic framework to enable targeted screening and intervention for future preclinical trials aimed at specific biological pathways.

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多基因途径塑造白质易受阿尔茨海默病相关病理生理变化的影响。
背景:阿尔茨海默病(AD)临床前阶段淀粉样蛋白-β1-42 (a -β1-42)肽和磷酸化tau181 (p-Tau181)缠结的积累导致了该疾病的生物学定义。然而,在a β1-42阳性个体中,认知能力下降的发病情况各不相同,有些人从未出现症状。遗传对分子途径的影响及其与蛋白质病变的相互作用可能是这种异质性的基础。利用欧洲阿尔茨海默病预防(EPAD)队列中大量认知完整的老年人样本的数据,我们研究了ad相关的病理生理变化(即a β1-42和p-Tau181)、多基因途径及其相互作用如何与WM微观和宏观结构特性相关。方法:803例患者(平均年龄64.7±7.3岁,女性458例(57.0%),APOE-ε4携带者275例(34.2%),均有csf - a - β1-42和p-Tau181检测结果,全基因分型,结构和扩散MRI检查。使用85个ad相关的遗传变异计算多基因风险评分(PRSs)。在排除了属于APOE位点的基因后,这些基因被定位到相应的基因上,并按功能聚类为6个通路特异性的PRSs(即免疫激活、信号转导、炎症、脂质、淀粉样蛋白和清除途径)。通过基于固定体的分析框架对扩散核磁共振成像进行处理,得出纤维密度(FD)和纤维截面(FC)指标,并在WM束内平均。线性模型评估了ad相关病理生理变化、全局和通路特异性PRSs的影响,以及它们在尿道和固定细胞水平上对FD和FC的相互作用。修正模型以进行多重比较。结果:P-Tau181主要与较大的FD相关。脂质途径与更大的FD和FC相关,这些影响主要发生在左半球,与半球优势的证据一致。清除途径调节了a β1-42对FD的影响,与a -个体相比,a +个体的斜率为正。免疫激活途径调节p-Tau181对FD的影响,与T-个体相比,T +个体的斜率为负。结论:AD的通路特异性遗传易感性与WM束的改变直接相关,并通过调节AD相关病理生理变化的影响。AD相关的遗传风险应纳入AD诊断框架,以便为未来针对特定生物学途径的临床前试验提供有针对性的筛查和干预。
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来源期刊
Alzheimer's Research & Therapy
Alzheimer's Research & Therapy 医学-神经病学
CiteScore
13.10
自引率
3.30%
发文量
172
审稿时长
>12 weeks
期刊介绍: Alzheimer's Research & Therapy is an international peer-reviewed journal that focuses on translational research into Alzheimer's disease and other neurodegenerative diseases. It publishes open-access basic research, clinical trials, drug discovery and development studies, and epidemiologic studies. The journal also includes reviews, viewpoints, commentaries, debates, and reports. All articles published in Alzheimer's Research & Therapy are included in several reputable databases such as CAS, Current contents, DOAJ, Embase, Journal Citation Reports/Science Edition, MEDLINE, PubMed, PubMed Central, Science Citation Index Expanded (Web of Science) and Scopus.
期刊最新文献
The UNC13A cryptic exon associates with cognitive impairment in Alzheimer's disease. Semantic fluency predicts survival of memory clinic patients. SuperAging is not the inverse of common-variant Alzheimer's risk: evidence across genetic ancestries. Personalized non-invasive combined magnetic and electrical stimulation of the default mode network in mild AD patients (CMES-AD): a multicentric randomized sham-controlled trial protocol. Resting-state functional dynamics alterations relate to plasma amyloid markers and statistically explain memory impairments in the TgF344-AD model of Alzheimer's disease.
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