Laboratory of Cell Biology and Histology, University of Antwerp, Belgium.
Bio-Imaging Lab, University of Antwerp, Belgium.
Neurobiol Dis. 2020 Sep;143:105011. doi: 10.1016/j.nbd.2020.105011. Epub 2020 Jul 10.
Progressive accumulation of hyperphosphorylated tau is a hallmark of various neurodegenerative disorders including Alzheimer's disease. However, to date, the functional effects of tau pathology on brain network connectivity remain poorly understood. To directly interrogate the impact of tau pathology on functional brain connectivity, we conducted a longitudinal experiment in which we monitored a fibril-seeded hTau.P301L mouse model using correlative whole-brain microscopy and resting-state functional MRI. Despite a progressive aggravation of tau pathology across the brain, the major resting-state networks appeared unaffected up to 15 weeks after seeding. Targeted analyses also showed that the connectivity of regions with high levels of hyperphosphorylated tau was comparable to that observed in controls. In line with the ostensible retention of connectivity, no behavioural changes were detected between seeded and control hTau.P301L mice as determined by three different paradigms. Our data indicate that seeded tau pathology, with accumulation of tau aggregates throughout different regions of the brain, does not alter functional connectivity or behaviour in this mouse model. Additional correlative functional studies on different mouse models should help determine whether this is a generalizable trait of tauopathies.
tau 蛋白过度磷酸化的进行性积累是包括阿尔茨海默病在内的各种神经退行性疾病的标志。然而,迄今为止,tau 病理学对大脑网络连接的功能影响仍知之甚少。为了直接研究 tau 病理学对功能脑连接的影响,我们进行了一项纵向实验,使用相关的全脑显微镜和静息状态功能磁共振成像来监测纤维种子 hTau.P301L 小鼠模型。尽管 tau 病理学在整个大脑中逐渐加重,但在播种后 15 周内,主要的静息状态网络似乎没有受到影响。靶向分析还表明,高磷酸化 tau 水平区域的连接性与对照组观察到的连接性相当。与连接性的明显保留一致,通过三种不同的范式,未在种子化和对照 hTau.P301L 小鼠之间检测到行为变化。我们的数据表明,在这种小鼠模型中,tau 聚集物在大脑的不同区域积累的种子化 tau 病理学不会改变功能连接或行为。对不同小鼠模型的额外相关功能研究应有助于确定这是否是 tau 病的普遍特征。