Specific associations between plasma biomarkers and postmortem amyloid plaque and tau tangle loads

Author:

Salvadó Gemma1ORCID,Ossenkoppele Rik123ORCID,Ashton Nicholas J456ORCID,Beach Thomas G7,Serrano Geidy E7,Reiman Eric M8,Zetterberg Henrik49101112,Mattsson‐Carlgren Niklas11314ORCID,Janelidze Shorena1,Blennow Kaj49ORCID,Hansson Oskar115ORCID

Affiliation:

1. Clinical Memory Research Unit, Department of Clinical Sciences, Malmö Lund University Lund Sweden

2. Alzheimer Center Amsterdam, Neurology Vrije Universiteit Amsterdam, Amsterdam UMC location VUmc Amsterdam The Netherlands

3. Amsterdam Neuroscience, Neurodegeneration Amsterdam The Netherlands

4. Department of Psychiatry and Neurochemistry, Institute of Neuroscience and Physiology, The Sahlgrenska Academy University of Gothenburg Gothenburg Sweden

5. Institute of Psychiatry, Psychology and Neuroscience, Maurice Wohl Institute Clinical Neuroscience Institute King's College London London UK

6. NIHR Biomedical Research Centre for Mental Health and Biomedical Research Unit for Dementia at South London and Maudsley, NHS Foundation London UK

7. Banner Sun Health Research Institute Sun City AZ USA

8. Banner Alzheimer's Institute Arizona State University and University of Arizona Phoenix AZ USA

9. Clinical Neurochemistry Laboratory Sahlgrenska University Hospital Mölndal Sweden

10. Department of Neurodegenerative Disease UCL Institute of Neurology, Queen Square London UK

11. UK Dementia Research Institute at UCL London UK

12. Hong Kong Center for Neurodegenerative Diseases Hong Kong China

13. Department of Neurology Skåne University Hospital Lund Sweden

14. Wallenberg Center for Molecular Medicine Lund University Lund Sweden

15. Memory Clinic, Skåne University Hospital Malmö Sweden

Abstract

AbstractSeveral promising plasma biomarkers for Alzheimer's disease have been recently developed, but their neuropathological correlates have not yet been fully determined. To investigate and compare independent associations between multiple plasma biomarkers (p‐tau181, p‐tau217, p‐tau231, Aβ42/40, GFAP, and NfL) and neuropathologic measures of amyloid and tau, we included 105 participants from the Arizona Study of Aging and Neurodegenerative Disorders (AZSAND) with antemortem plasma samples and a postmortem neuropathological exam, 48 of whom had longitudinal p‐tau217 and p‐tau181. When simultaneously including plaque and tangle loads, the Aβ42/40 ratio and p‐tau231 were only associated with plaques (ρAβ42/40[95%CI] = −0.53[−0.65, −0.35], ρp‐tau231[95%CI] = 0.28[0.10, 0.43]), GFAP was only associated with tangles (ρGFAP[95%CI] = 0.39[0.17, 0.57]), and p‐tau217 and p‐tau181 were associated with both plaques (ρp‐tau217[95%CI] = 0.40[0.21, 0.56], ρp‐tau181[95%CI] = 0.36[0.15, 0.50]) and tangles (ρp‐tau217[95%CI] = 0.52[0.34, 0.66]; ρp‐tau181[95%CI] = 0.36[0.17, 0.52]). A model combining p‐tau217 and the Aβ42/40 ratio showed the highest accuracy for predicting the presence of Alzheimer's disease neuropathological change (ADNC, AUC[95%CI] = 0.89[0.82, 0.96]) and plaque load (R2 = 0.55), while p‐tau217 alone was optimal for predicting tangle load (R2 = 0.45). Our results suggest that high‐performing assays of plasma p‐tau217 and Aβ42/40 might be an optimal combination to assess Alzheimer's‐related pathology in vivo.

Funder

European Research Council

Greta och Johan Kocks stiftelser

Knut och Alice Wallenbergs Stiftelse

Stiftelsen för Gamla Tjänarinnor

Hjärnfonden

Vetenskapsrådet

Publisher

Springer Science and Business Media LLC

Subject

Molecular Medicine

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