纤维
共核细胞病
蛋白质聚集
化学
α-突触核蛋白
生物物理学
病理
生物
生物化学
帕金森病
疾病
医学
作者
Tal Gilboa,Zoe Swank,Rohan A. Thakur,Russell A. Gould,Kim Tiow Ooi,Maia Norman,Elizabeth A. Flynn,Brendan T. Deveney,Anqi Chen,Ella Borberg,Anastasia Kuzkina,Alain Ndayisaba,Vikram Khurana,David A. Weitz,David R. Walt
标识
DOI:10.1073/pnas.2312031121
摘要
The quantification and characterization of aggregated α-synuclein in clinical samples offer immense potential toward diagnosing, treating, and better understanding neurodegenerative synucleinopathies. Here, we developed digital seed amplification assays to detect single α-synuclein aggregates by partitioning the reaction into microcompartments. Using pre-formed α-synuclein fibrils as reaction seeds, we measured aggregate concentrations as low as 4 pg/mL. To improve our sensitivity, we captured aggregates on antibody-coated magnetic beads before running the amplification reaction. By first characterizing the pre-formed fibrils with transmission electron microscopy and size exclusion chromatography, we determined the specific aggregates targeted by each assay platform. Using brain tissue and cerebrospinal fluid samples collected from patients with Parkinson's Disease and multiple system atrophy, we demonstrated that the assay can detect endogenous pathological α-synuclein aggregates. Furthermore, as another application for these assays, we studied the inhibition of α-synuclein aggregation in the presence of small-molecule inhibitors and used a custom image analysis pipeline to quantify changes in aggregate growth and filament morphology.
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