Enhanced quantitation of pathological α-synuclein in patient biospecimens by RT-QuIC seed amplification assays

dc.contributor.authorSrivastava, Ankit
dc.contributor.authorWang, Qinlu
dc.contributor.authorOrrù, Christina D.
dc.contributor.authorFernandez, Manel
dc.contributor.authorCompta, Yaroslau
dc.contributor.authorGhetti, Bernardino
dc.contributor.authorZanusso, Gianluigi
dc.contributor.authorZou, Wen-Quan
dc.contributor.authorCaughey, Byron
dc.contributor.authorBeauchemin, Catherine A. A.
dc.contributor.departmentPathology and Laboratory Medicine, School of Medicine
dc.date.accessioned2024-11-18T12:06:25Z
dc.date.available2024-11-18T12:06:25Z
dc.date.issued2024-09-20
dc.description.abstractDisease associated pathological aggregates of alpha-synuclein (αSynD) exhibit prion-like spreading in synucleinopathies such as Parkinson's disease (PD) and dementia with Lewy bodies (DLB). Seed amplification assays (SAAs) such as real-time quaking-induced conversion (RT-QuIC) have shown high diagnostic sensitivity and specificity for detecting proteopathic αSynD seeds in a variety of biospecimens from PD and DLB patients. However, the extent to which relative proteopathic seed concentrations are useful as indices of a patient's disease stage or prognosis remains unresolved. One feature of current SAAs that complicates attempts to correlate SAA results with patients' clinical and other laboratory findings is their quantitative imprecision, which has typically been limited to discriminating large differences (e.g. 5-10 fold) in seed concentration. We used end-point dilution (ED) RT-QuIC assays to determine αSynD seed concentrations in patient biospecimens and tested the influence of various assay variables such as serial dilution factor, replicate number and data processing methods. The use of 2-fold versus 10-fold dilution factors and 12 versus 4 replicate reactions per dilution reduced ED-RT-QuIC assay error by as much as 70%. This enhanced assay format discriminated as little as 2-fold differences in αSynD seed concentration besides detecting ~2-16-fold seed reductions caused by inactivation treatments. In some scenarios, analysis of the data using Poisson and midSIN algorithms provided more consistent and statistically significant discrimination of different seed concentrations. We applied our improved assay strategies to multiple diagnostically relevant PD and DLB antemortem patient biospecimens, including cerebrospinal fluid, skin, and brushings of the olfactory mucosa. Using ED αSyn RT-QuIC as a model SAA, we show how to markedly improve the inter-assay reproducibility and quantitative accuracy. Enhanced quantitative SAA accuracy should facilitate assessments of pathological seeding activities as biomarkers in proteinopathy diagnostics and prognostics, as well as in patient cohort selection and assessments of pharmacodynamics and target engagement in drug trials.
dc.eprint.versionFinal published version
dc.identifier.citationSrivastava A, Wang Q, Orrù CD, et al. Enhanced quantitation of pathological α-synuclein in patient biospecimens by RT-QuIC seed amplification assays. PLoS Pathog. 2024;20(9):e1012554. Published 2024 Sep 20. doi:10.1371/journal.ppat.1012554
dc.identifier.urihttps://hdl.handle.net/1805/44572
dc.language.isoen_US
dc.publisherPublic Library of Science
dc.relation.isversionof10.1371/journal.ppat.1012554
dc.relation.journalPLoS Pathogens
dc.rightsCC0 1.0 Universalen
dc.rights.urihttp://creativecommons.org/publicdomain/zero/1.0/
dc.sourcePMC
dc.subjectLewy Body Disease
dc.subjectParkinson Disease
dc.subjectalpha-Synuclein
dc.titleEnhanced quantitation of pathological α-synuclein in patient biospecimens by RT-QuIC seed amplification assays
dc.typeArticle
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