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星形胶质细胞反应性与阿尔茨海默病中的 tau 缠结负荷和皮质变薄有关。

Astrocyte reactivity is associated with tau tangle load and cortical thinning in Alzheimer's disease.

机构信息

Institute of Biomedical Engineering, Shenzhen Bay Laboratory, No.5 Kelian Road, Shenzhen, 518132, China.

Institute of Biomedical Engineering, Peking University Shenzhen Graduate School, Shenzhen, 518055, China.

出版信息

Mol Neurodegener. 2024 Jul 30;19(1):58. doi: 10.1186/s13024-024-00750-8.

Abstract

BACKGROUND

It is not fully established whether plasma β-amyloid(Aβ)/Aβ and phosphorylated Tau (p-Tau) can effectively detect Alzheimer's disease (AD) pathophysiology in older Chinese adults and how these biomarkers correlate with astrocyte reactivity, Aβ plaque deposition, tau tangle aggregation, and neurodegeneration.

METHODS

We recruited 470 older adults and analyzed plasma Aβ/Aβ, p-Tau, glial fibrillary acidic protein (GFAP), and neurofilament light (NfL) using the Simoa platform. Among them, 301, 195, and 70 underwent magnetic resonance imaging, Aβ and tau positron emission tomography imaging. The plasma Aβ/Aβ and p-Tau thresholds were defined as ≤0.0609 and ≥2.418 based on the receiver operating characteristic curve analysis using the Youden index by comparing Aβ-PET negative cognitively unimpaired individuals and Aβ-PET positive cognitively impaired patients. To evaluate the feasibility of using plasma Aβ/Aβ (A) and p-Tau (T) to detect AD and understand how astrocyte reactivity affects this process, we compared plasma GFAP, Aβ plaque, tau tangle, plasma NfL, hippocampal volume, and temporal-metaROI cortical thickness between different plasma A/T profiles and explored their relations with each other using general linear models, including age, sex, APOE-ε4, and diagnosis as covariates.

RESULTS

Plasma A+/T + individuals showed the highest levels of astrocyte reactivity, Aβ plaque, tau tangle, and axonal degeneration, and the lowest hippocampal volume and temporal-metaROI cortical thickness. Lower plasma Aβ/Aβ and higher plasma p-Tau were independently and synergistically correlated with higher plasma GFAP and Aβ plaque. Elevated plasma p-Tau and GFAP concentrations were directly and interactively associated with more tau tangle formation. Regarding neurodegeneration, higher plasma p-Tau and GFAP concentrations strongly correlated with more axonal degeneration, as measured by plasma NfL, and lower plasma Aβ/Aβ and higher plasma p-Tau were related to greater hippocampal atrophy. Higher plasma GFAP levels were associated with thinner cortical thickness and significantly interacted with lower plasma Aβ/Aβ and higher plasma p-Tau in predicting more temporal-metaROI cortical thinning. Voxel-wise imaging analysis confirmed these findings.

DISCUSSION

This study provides a valuable reference for using plasma biomarkers to detect AD in the Chinese community population and offers novel insights into how astrocyte reactivity contributes to AD progression, highlighting the importance of targeting reactive astrogliosis to prevent AD.

摘要

背景

血浆β-淀粉样蛋白(Aβ)/Aβ 和磷酸化 Tau(p-Tau)是否能有效检测中国老年人群的阿尔茨海默病(AD)病理生理学,以及这些生物标志物与星形胶质细胞反应、Aβ 斑块沉积、tau 缠结聚集和神经退行性变的相关性如何,目前尚未完全确定。

方法

我们招募了 470 名老年人,并使用 Simoa 平台分析了血浆 Aβ/Aβ、p-Tau、神经胶质纤维酸性蛋白(GFAP)和神经丝轻链(NfL)。其中,301 名、195 名和 70 名接受了磁共振成像、Aβ 和 tau 正电子发射断层扫描成像。使用基于 Youden 指数的接收器工作特征曲线分析,根据血浆 Aβ-PET 阴性认知正常者和 Aβ-PET 阳性认知障碍患者之间的比较,将血浆 Aβ/Aβ 和 p-Tau 的阈值定义为≤0.0609 和≥2.418。为了评估使用血浆 Aβ/Aβ(A)和 p-Tau(T)来检测 AD 的可行性,并了解星形胶质细胞反应如何影响这一过程,我们比较了不同血浆 A/T 图谱之间的血浆 GFAP、Aβ 斑块、tau 缠结、血浆 NfL、海马体积和颞-顶皮质厚度,并使用一般线性模型探索它们之间的关系,包括年龄、性别、APOE-ε4 和诊断作为协变量。

结果

血浆 A+/T + 个体表现出最高水平的星形胶质细胞反应、Aβ 斑块、tau 缠结和轴突退化,以及最低的海马体积和颞-顶皮质厚度。较低的血浆 Aβ/Aβ 和较高的血浆 p-Tau 与较高的血浆 GFAP 和 Aβ 斑块独立且协同相关。升高的血浆 p-Tau 和 GFAP 浓度与更多的 tau 缠结形成直接相关,并具有交互作用。关于神经退行性变,较高的血浆 p-Tau 和 GFAP 浓度与血浆 NfL 测量的更多轴突退化强烈相关,而较低的血浆 Aβ/Aβ 和较高的血浆 p-Tau 与更大的海马萎缩有关。较高的血浆 GFAP 水平与皮质厚度变薄有关,并且与较低的血浆 Aβ/Aβ 和较高的血浆 p-Tau 显著相互作用,预测颞-顶皮质变薄。体素成像分析证实了这些发现。

讨论

本研究为使用血浆生物标志物在中国社区人群中检测 AD 提供了有价值的参考,并为星形胶质细胞反应如何促进 AD 进展提供了新的见解,强调了靶向反应性星形胶质细胞以预防 AD 的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/22db/11290175/a5cece230482/13024_2024_750_Fig1_HTML.jpg

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