Amyloid-associated hyperconnectivity drives tau spread across connected brain regions in Alzheimer’s disease

IF 15.8 1区 医学 Q1 CELL BIOLOGY Science Translational Medicine Pub Date : 2025-01-22 DOI:10.1126/scitranslmed.adp2564
Sebastian N. Roemer-Cassiano, Fabian Wagner, Lisa Evangelista, Boris-Stephan Rauchmann, Amir Dehsarvi, Anna Steward, Anna Dewenter, Davina Biel, Zeyu Zhu, Julia Pescoller, Mattes Gross, Robert Perneczky, Maura Malpetti, Michael Ewers, Michael Schöll, Martin Dichgans, Günter U. Höglinger, Matthias Brendel, Sarah Jäkel, Nicolai Franzmeier
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Abstract

In Alzheimer’s disease (AD), amyloid-β (Aβ) triggers the aggregation and spreading of tau pathology, which drives neurodegeneration and cognitive decline. However, the pathophysiological link between Aβ and tau remains unclear, which hinders therapeutic efforts to attenuate Aβ-related tau accumulation. Aβ has been found to trigger neuronal hyperactivity and hyperconnectivity, and preclinical research has shown that tau spreads across connected neurons in an activity-dependent manner. Here, we hypothesized that neuronal hyperactivity and hypersynchronicity, resulting in functional connectivity increases, constitute a crucial mechanism by which Aβ facilitates the spreading of tau pathology. By combining Aβ positron emission tomography (PET), resting-state functional magnetic resonance imaging, and longitudinal tau-PET in 69 cognitively normal amyloid-negative controls and 140 amyloid-positive patients covering the AD spectrum, we confirmed that Aβ induces hyperconnectivity of temporal lobe tau epicenters to posterior brain regions that are vulnerable to tau accumulation in AD. This was replicated in an independent sample of 55 controls and 345 individuals with preclinical AD and low cortical tau-PET uptake, suggesting that the emergence of Aβ-related hyperconnectivity precedes neocortical tau spreading . Last, using longitudinal tau-PET and mediation analysis, we confirmed that these Aβ-related connectivity increases in tau epicenters to typical tau-vulnerable brain regions in AD mediated the effect of Aβ on faster tau accumulation, unveiling increased connectivity as a potential causal link between the two AD hallmark pathologies. Together, these findings suggest that Aβ promotes tau spreading by eliciting neuronal hyperconnectivity and that targeting Aβ-related neuronal hyperconnectivity may attenuate tau spreading in AD.
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淀粉样蛋白相关的超连通性在阿尔茨海默病中驱动tau在连接的大脑区域传播
在阿尔茨海默病(AD)中,淀粉样蛋白-β (Aβ)引发tau病理的聚集和扩散,从而导致神经变性和认知能力下降。然而,Aβ和tau之间的病理生理联系尚不清楚,这阻碍了减少Aβ相关tau积累的治疗努力。已经发现Aβ可以触发神经元的过度活跃和过度连接,并且临床前研究表明tau以活动依赖的方式在连接的神经元中传播。在这里,我们假设神经元的多活性和多同步性,导致功能连通性增加,构成了a β促进tau病理扩散的关键机制。通过结合Aβ正电子发射断层扫描(PET)、静息状态功能磁共振成像和纵向tau-PET,研究人员在69名认知正常的淀粉样蛋白阴性对照和140名淀粉样蛋白阳性的AD患者中证实,Aβ诱导颞叶tau中心到AD中易受tau积累的脑后区域的超连通性。在55名对照和345名临床前AD患者和低皮质tau- pet摄取的独立样本中也重复了这一结果,这表明a β相关超连通性的出现先于新皮质tau扩散。最后,通过纵向tau- pet和中介分析,我们证实了在AD介导的a β对tau更快积累的影响中,tau中心到典型tau易损脑区域的a β相关连通性增加,揭示了连接增加是两种AD标志性病理之间的潜在因果关系。综上所述,这些发现表明,Aβ通过引发神经元超连通性来促进tau蛋白的扩散,而靶向Aβ相关的神经元超连通性可能会减弱AD中tau蛋白的扩散。
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来源期刊
Science Translational Medicine
Science Translational Medicine CELL BIOLOGY-MEDICINE, RESEARCH & EXPERIMENTAL
CiteScore
26.70
自引率
1.20%
发文量
309
审稿时长
1.7 months
期刊介绍: Science Translational Medicine is an online journal that focuses on publishing research at the intersection of science, engineering, and medicine. The goal of the journal is to promote human health by providing a platform for researchers from various disciplines to communicate their latest advancements in biomedical, translational, and clinical research. The journal aims to address the slow translation of scientific knowledge into effective treatments and health measures. It publishes articles that fill the knowledge gaps between preclinical research and medical applications, with a focus on accelerating the translation of knowledge into new ways of preventing, diagnosing, and treating human diseases. The scope of Science Translational Medicine includes various areas such as cardiovascular disease, immunology/vaccines, metabolism/diabetes/obesity, neuroscience/neurology/psychiatry, cancer, infectious diseases, policy, behavior, bioengineering, chemical genomics/drug discovery, imaging, applied physical sciences, medical nanotechnology, drug delivery, biomarkers, gene therapy/regenerative medicine, toxicology and pharmacokinetics, data mining, cell culture, animal and human studies, medical informatics, and other interdisciplinary approaches to medicine. The target audience of the journal includes researchers and management in academia, government, and the biotechnology and pharmaceutical industries. It is also relevant to physician scientists, regulators, policy makers, investors, business developers, and funding agencies.
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