Antibody-free measurement of cerebrospinal fluid tau phosphorylation across the Alzheimer’s disease continuum

Author:

Gobom JohanORCID,Benedet Andréa L.,Mattsson-Carlgren Niklas,Montoliu-Gaya Laia,Schultz Nina,Ashton Nicholas J.,Janelidze Shorena,Servaes Stijn,Sauer Mathias,Pascoal Tharick A.,Karikari Thomas K.,Lantero-Rodriguez Juan,Brinkmalm Gunnar,Zetterberg Henrik,Hansson Oskar,Rosa-Neto Pedro,Blennow Kaj

Abstract

Abstract Background Alzheimer’s disease is characterized by an abnormal increase of phosphorylated tau (pTau) species in the CSF. It has been suggested that emergence of different pTau forms may parallel disease progression. Therefore, targeting multiple specific pTau forms may allow for a deeper understanding of disease evolution and underlying pathophysiology. Current immunoassays measure pTau epitopes separately and may capture phosphorylated tau fragments of different length depending on the non-pTau antibody used in the assay sandwich pair, which bias the measurement. Methods We developed the first antibody-free mass spectrometric method to simultaneously measure multiple phosphorylated epitopes in CSF tau: pT181, pS199, pS202, pT205, pT217, pT231, and pS396. The method was first evaluated in biochemically defined Alzheimer’s disease and control CSF samples (n = 38). All seven pTau epitopes clearly separated Alzheimer’s disease from non-AD (p < 0.001, AUC = 0.84–0.98). We proceeded with clinical validation of the method in the TRIAD (n = 165) and BioFINDER-2 cohorts (n = 563), consisting of patients across the full Alzheimer’s disease continuum, including also young controls (< 40 years), as well as patients with frontotemporal dementia and other neurodegenerative disorders. Results Increased levels of all phosphorylated epitopes were found in Alzheimer’s disease dementia and Aβ positron emission tomography-positive patients with mild cognitive impairment compared with Aβ-negative controls. For Alzheimer’s disease dementia compared with Aβ-negative controls, the best biomarker performance was observed for pT231 (TRIAD: AUC = 98.73%, fold change = 7.64; BioFINDER-2: AUC = 91.89%, fold change = 10.65), pT217 (TRIAD: AUC = 99.71%, fold change = 6.33; BioFINDER-2: AUC = 98.12%, fold change = 8.83) and pT205 (TRIAD: AUC = 99.07%, fold change = 5.34; BioFINDER-2: AUC = 93.51%, fold change = 3.92). These phospho-epitopes also discriminated between Aβ-positive and Aβ-negative cognitively unimpaired individuals: pT217 (TRIAD: AUC = 83.26, fold change = 2.39; BioFINDER-2: AUC = 91.05%, fold change = 3.29), pT231 (TRIAD: AUC = 86.25, fold change = 3.80; BioFINDER-2: AUC = 78.69%, fold change = 3.65) and pT205 (TRIAD: AUC = 71.58, fold change = 1.51; BioFINDER-2: AUC = 71.11%, fold change = 1.70). Conclusions While an increase was found for all pTau species examined, the highest fold change in Alzheimer’s disease was found for pT231, pT217 and pT205. Simultaneous antibody-free measurement of pTau epitopes by mass spectrometry avoids possible bias caused by differences in antibody affinity for modified or processed forms of tau, provides insights into tau pathophysiology and may facilitate clinical trials on tau-based drug candidates.

Funder

Alzheimerfonden

Stiftelsen för Gamla Tjänarinnor

Vetenskapsrådet

H2020 European Research Council

Swedish State Support for Clinical Research

Alzheimer's Drug Discovery Foundation

Alzheimer's Association

Olav Thon Stiftelsen

Familjen Erling-Perssons Stiftelse

Hjärnfonden

HORIZON EUROPE Marie Sklodowska-Curie Actions

UK Dementia Research Institute

Svenska Forskningsrådet Formas

EU Joint Programme – Neurodegenerative Disease Research

National Institute of Health

BrightFocus Foundation

Parkinsonfonden

Demensförbundet

Aina (Ann) Wallströms and Mary-Ann Sjöbloms Foundation

Agneta Prytz-Folkes och Gösta Folkes Stiftelse

Gun och Bertil Stohnes Stiftelse

Anna-Lisa och Bror Björnssons Stiftelse

Knut och Alice Wallenbergs Stiftelse

Marianne and Marcus Wallenberg foundation

Lunds Universitet

Konung Gustaf V:s och Drottning Victorias Frimurarestiftelse

Skånes universitetssjukhus

Swedish State Support under the ALF agreement

University of Gothenburg

Publisher

Springer Science and Business Media LLC

Subject

Cellular and Molecular Neuroscience,Neurology (clinical),Molecular Biology

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