Document detail
ID

oai:HAL:hal-03533847v1

Topic
α-synuclein Biomarker Prodromal Seeding Stratification [SDV.SPEE]Life Sciences [q-bio]/Sa...
Author
Poggiolini, Ilaria Gupta, Vandana Lawton, Michael Lee, Seoyun El-Turabi, Aadil Querejeta-Coma, Agustin Trenkwalder, Claudia Sixel-Doring, Friederike Samier Foubert, Alexandra Pavy-Le Traon, Anne Plazzi, Giuseppe Biscarini, Francesco Montplaisir, Jacques Gagnon, Jean Francois Postuma, Ronald B. Antelmi, Elena Meissner, Wassilios Mollenhauer, Brit Ben-Shlomo, Yoav Hu, Michele T. Parkkinen, Laura
Langue
en
Editor

HAL CCSD;Oxford University Press (OUP)

Category

CNRS - Centre national de la recherche scientifique

Year

2021

listing date

12/15/2023

Keywords
csf diagnosing parameters quantitative αsyn-rt-quic synucleinopathies conversion clinical disease parkinson disorder behaviour idiopathic sleep rem sensitivity progression rt-quic patients
Metrics

Abstract

International audience; Several studies have confirmed α-synuclein real-time quaking-induced conversion (αSyn-RT-QuIC) assay to have high sensitivity and specificity for Parkinson's disease.

However, whether the assay can be used as a robust, quantitative measure to monitor disease progression, stratify different synucleinopathies and predict disease conversion in patients with idiopathic REM sleep behaviour disorder remains undetermined.

The aim of this study was to assess the diagnostic value of CSF aSyn-RT-QuIC quantitative parameters in regard to disease progression, stratification, and conversion in synucleinopathies.

We performed αSyn-RT-QuIC in the CSF samples from 74 Parkinson's disease, 24 multiple system atrophy and 45 idiopathic REM sleep behaviour disorder patients alongside 55 healthy controls, analysing quantitative assay parameters in relation to clinical data.

αSyn-RT-QuIC showed 89% sensitivity and 96% specificity for Parkinson's disease.

There was no correlation between RT-QuIC quantitative parameters and Parkinson's disease clinical scores (e.g. UPDRS motor) but RT-QuIC positivity and some quantitative parameters (e.g. Vmax) differed across the different phenotype clusters.

RT-QuIC parameters also added value alongside standard clinical data in diagnosing Parkinson's disease.

The sensitivity in multiple system atrophy was 75%, and CSF samples showed longer T50 and lower Vmax compared to Parkinson's disease.

All RT-QuIC parameters correlated with worse clinical progression of multiple system atrophy (e.g. change in UMSARS).

The overall sensitivity in idiopathic REM sleep behaviour disorder was 64%.

In three of the four longitudinally followed idiopathic REM sleep behaviour disorder cohorts, we found around 90% sensitivity, but in one sample (DeNoPa) diagnosing idiopathic REM sleep behaviour disorder earlier from the community cases, this was much lower 39%.

During follow-up, 14 of 45 (31%) idiopathic REM sleep behaviour disorder patients converted to synucleinopathy with 9/14 (64%) of convertors showing baseline RT-QuIC positivity.

In summary, our results showed that αSyn-RT-QuIC adds value in diagnosing Parkinson's disease and may provide a way to distinguish variations within Parkinson's disease phenotype.

The quantitative parameters however did not correlate with disease severity in Parkinson's disease.

The assay distinguished multiple system atrophy patients from Parkinson's disease patients and in contrast to Parkinson's disease, the quantitative parameters correlated with disease progression of multiple system atrophy.

Our results also provided further evidence for αSyn-RT-QuIC having potential as an early biomarker detecting synucleinopathy in idiopathic REM sleep behaviour disorder patients prior to conversion.

Further analysis of longitudinally followed idiopathic REM sleep behaviour disorder patients is needed to better understand the relationship between αSyn-RT-QuIC signature and the progression from prodromal to different synucleinopathies.

Poggiolini, Ilaria,Gupta, Vandana,Lawton, Michael,Lee, Seoyun,El-Turabi, Aadil,Querejeta-Coma, Agustin,Trenkwalder, Claudia,Sixel-Doring, Friederike,Samier Foubert, Alexandra,Pavy-Le Traon, Anne,Plazzi, Giuseppe,Biscarini, Francesco,Montplaisir, Jacques,Gagnon, Jean Francois,Postuma, Ronald B.,Antelmi, Elena,Meissner, Wassilios,Mollenhauer, Brit,Ben-Shlomo, Yoav,Hu, Michele T.,Parkkinen, Laura, 2021, Diagnostic value of cerebrospinal fluid alpha-synuclein seed quantification in synucleinopathies, HAL CCSD;Oxford University Press (OUP)

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