Wang Min, Wei Min, Wang Luyao, Song Jun, Rominger Axel, Shi Kuangyu, Jiang Jiehui
School of Life Sciences, Shanghai University, Shanghai 200444, China.
Department of Neurology, XuanWu Hospital of Capital Medical University, Beijing 100053, China.
Brain Sci. 2024 Jun 4;14(6):575. doi: 10.3390/brainsci14060575.
Clinical cognitive advancement within the Alzheimer's disease (AD) continuum is intimately connected with sustained accumulation of tau protein pathology. The biological brain age and its gap show great potential for pathological risk and disease severity. In the present study, we applied multivariable linear support vector regression to train a normative brain age prediction model using tau brain images. We further assessed the predicted biological brain age and its gap for patients within the AD continuum. In the AD continuum, evaluated pathologic tau binding was found in the inferior temporal, parietal-temporal junction, precuneus/posterior cingulate, dorsal frontal, occipital, and inferior-medial temporal cortices. The biological brain age gaps of patients within the AD continuum were notably higher than those of the normal controls ( < 0.0001). Significant positive correlations were observed between the brain age gap and global tau protein accumulation levels for mild cognitive impairment ( = 0.726, < 0.001), AD ( = 0.845, < 0.001), and AD continuum ( = 0.797, < 0.001). The pathologic tau-based age gap was significantly linked to neuropsychological scores. The proposed pathologic tau-based biological brain age model could track the tau protein accumulation trajectory of cognitive impairment and further provide a comprehensive quantification index for the tau accumulation risk.
阿尔茨海默病(AD)连续体中的临床认知进展与tau蛋白病理的持续积累密切相关。生物学脑龄及其差距在病理风险和疾病严重程度方面显示出巨大潜力。在本研究中,我们应用多变量线性支持向量回归,使用tau脑图像训练一个标准脑龄预测模型。我们进一步评估了AD连续体中患者的预测生物学脑龄及其差距。在AD连续体中,在下颞叶、顶颞交界处、楔前叶/后扣带回、背侧额叶、枕叶和颞叶内侧下部皮质发现了评估的病理性tau结合。AD连续体中患者的生物学脑龄差距显著高于正常对照组(<0.0001)。在轻度认知障碍(=0.726,<0.001)、AD(=0.845,<0.001)和AD连续体(=0.797,<0.001)中,观察到脑龄差距与整体tau蛋白积累水平之间存在显著正相关。基于病理性tau的年龄差距与神经心理学评分显著相关。所提出的基于病理性tau的生物学脑龄模型可以追踪认知障碍的tau蛋白积累轨迹,并进一步为tau积累风险提供一个全面的量化指标。