Department of Radiology, University of Pennsylvania, Philadelphia, PA, USA.
Institute for Clinical Sciences Lund, Lund University, Lund, Sweden.
Nat Commun. 2024 Jun 5;15(1):4803. doi: 10.1038/s41467-024-49205-0.
Our current understanding of the spread and neurodegenerative effects of tau neurofibrillary tangles (NFTs) within the medial temporal lobe (MTL) during the early stages of Alzheimer's Disease (AD) is limited by the presence of confounding non-AD pathologies and the two-dimensional (2-D) nature of conventional histology studies. Here, we combine ex vivo MRI and serial histological imaging from 25 human MTL specimens to present a detailed, 3-D characterization of quantitative NFT burden measures in the space of a high-resolution, ex vivo atlas with cytoarchitecturally-defined subregion labels, that can be used to inform future in vivo neuroimaging studies. Average maps show a clear anterior to poster gradient in NFT distribution and a precise, spatial pattern with highest levels of NFTs found not just within the transentorhinal region but also the cornu ammonis (CA1) subfield. Additionally, we identify granular MTL regions where measures of neurodegeneration are likely to be linked to NFTs specifically, and thus potentially more sensitive as early AD biomarkers.
我们目前对于阿尔茨海默病(AD)早期内侧颞叶(MTL)内 tau 神经纤维缠结(NFT)的传播和神经退行性效应的理解受到混杂的非 AD 病理学和传统组织学研究的二维(2-D)性质的限制。在这里,我们结合了 25 个人类 MTL 标本的离体 MRI 和连续组织学成像,提出了在高分辨率、离体图谱的空间中进行 NFT 负担定量测量的详细、三维特征,该图谱具有细胞构筑定义的亚区标签,可以用于为未来的体内神经影像学研究提供信息。平均图谱显示 NFT 分布存在明显的从前到后的梯度,并且具有精确的空间模式,NFT 水平最高的区域不仅在海马旁回区域,而且在角回(CA1)亚区也有发现。此外,我们确定了颗粒状 MTL 区域,其中神经退行性变的测量可能与 NFT 有特定的联系,因此作为早期 AD 生物标志物可能更敏感。