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Accelerated longitudinal changes and ordering of Alzheimer disease biomarkers across the adult lifespan

生物标志物 匹兹堡化合物B 纵向研究 认知功能衰退 内科学 载脂蛋白E 肿瘤科 阿尔茨海默病 心理学 医学 标准摄取值 痴呆 疾病 病理 神经科学 心脏病学 正电子发射断层摄影术 生物 生物化学
作者
Jingqin Luo,Folasade Agboola,Elizabeth Grant,John C. Morris,Colin L. Masters,Marilyn S Albert,Sterling C Johnson,Eric M McDade,Anne M Fagan,Tammie L S Benzinger,Jason Hassenstab,Randall J Bateman,Richard J Perrin,Guoqiao Wang,Yan Li,Brian A. Gordon,Carlos Cruchaga,Gregory S Day,Johannes Levin,Jonathan Vöglein,Takeshi Ikeuchi,Kazushi Suzuki,Ricardo F Allegri,Johannes Levin
出处
期刊:Brain [Oxford University Press]
标识
DOI:10.1093/brain/awac238
摘要

Abstract The temporal evolutions and relative orderings of Alzheimer disease biomarkers, including CSF amyloid-β42 (Aβ42), Aβ40, total tau (Tau) and phosphorylated tau181 (pTau181), standardized uptake value ratio (SUVR) from the molecular imaging of cerebral fibrillar amyloid-β with PET using the 11C-Pittsburgh Compound-B (PiB), MRI-based hippocampal volume and cortical thickness and cognition have been hypothesized but not yet fully tested with longitudinal data for all major biomarker modalities among cognitively normal individuals across the adult lifespan starting from 18 years. By leveraging a large harmonized database from 8 biomarker studies with longitudinal data from 2609 participants in cognition, 873 in MRI biomarkers, 519 in PET PiB imaging and 475 in CSF biomarkers for a median follow-up of 5–6 years, we estimated the longitudinal trajectories of all major Alzheimer disease biomarkers as functions of baseline age that spanned from 18 to 103 years, located the baseline age window at which the longitudinal rates of change accelerated and further examined possible modifying effects of apolipoprotein E (APOE) genotype. We observed that participants 18–45 years at baseline exhibited learning effects on cognition and unexpected directions of change on CSF and PiB biomarkers. The earliest acceleration of longitudinal change occurred for CSF Aβ42 and Aβ42/Aβ40 ratio (with an increase) and for Tau, and pTau181 (with a decrease) at the next baseline age interval of 45–50 years, followed by an accelerated increase for PiB SUVR at the baseline age of 50–55 years and an accelerated decrease for hippocampal volume at the baseline age of 55–60 years and finally by an accelerated decline for cortical thickness and cognition at the baseline age of 65–70 years. Another acceleration in the rate of change occurred at the baseline age of 65–70 years for Aβ42/Aβ40 ratio, Tau, pTau181, PiB SUVR and hippocampal volume. Accelerated declines in hippocampal volume and cognition continued after 70 years. For participants 18–45 years at baseline, significant increases in Aβ42 and Aβ42/Aβ40 ratio and decreases in PiB SUVR occurred in APOE ɛ4 non-carriers but not carriers. After age 45 years, APOE ɛ4 carriers had greater magnitudes than non-carriers in the rates of change for all CSF biomarkers, PiB SUVR and cognition. Our results characterize the temporal evolutions and relative orderings of Alzheimer disease biomarkers across the adult lifespan and the modification effect of APOE ɛ4. These findings may better inform the design of prevention trials on Alzheimer disease.

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