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Updated: Feb 22, 2026

An In Vitro Model for Studying Tau Aggregation Using Lentiviral-mediated Transduction of Human Neurons
Published on: May 23, 2019
Nanoscopic tau aggregates are not shared intermediates but disease-specific entities across tauopathies
Dorothea Böken1, Melissa Huang2, Yunzhao Wu1
1Yusuf Hamied Department of Chemistry, University of Cambridge, CB2 1EW Cambridge, UK; UK Dementia Research Institute, University of Cambridge, CB2 0AH Cambridge, UK.
Abstract:
Tauopathies are neurodegenerative diseases marked by pathological tau aggregation. While disease-specific folds of insoluble tau filaments have been established, it remains unclear whether the smaller, earlier species also differ across tauopathies. Here, we characterize these small tau aggregates from postmortem brain of individuals with Alzheimer's disease (AD), progressive supranuclear palsy (PSP), corticobasal degeneration, Pick's disease, and healthy controls. Using two complementary single-molecule assays, we confirm that small tau aggregates vary in abundance, morphology, and post-translational modifications. AD features specific long, fibrillar-shaped aggregates enriched in phospho-epitopes, while PSP aggregates are shorter, round, and selectively phosphorylated at serine 356, a site we identify as correlating with markers of inflammation and apoptosis. Aggregate properties co-vary with cellular stress signatures and align with disease-specific seeding profiles, suggesting distinct pathological mechanisms. These findings suggest that small tau aggregates are not a shared intermediate but instead encode disease-specific mechanisms, with potential as both biomarkers and therapeutic targets.
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