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The ARCA Registry: A Collaborative Global Platform for Advancing Trial Readiness in Autosomal Recessive Cerebellar Ataxias

PREPARE Consortium, Andreas Traschütz, Selina Reich, Astrid D. Adarmes, Mathieu Anheim, Mahmoud Reza Ashrafi, Jonathan Baets, A. Nazli Basak, Enrico Bertini, Bernard Brais, Cynthia Gagnon, Janina Gburek-Augustat, Hasmet A. Hanagasi, Anna Heinzmann, Rita Horvath, Peter de Jonghe, Christoph Kamm, Peter Klivenyi, Thomas Klopstock, Martina MinneropAlexander Münchau, Mathilde Renaud, Richard H. Roxburgh, Filippo M. Santorelli, Tommaso Schirinzi, Deborah A. Sival, Dagmar Timmann, Stefan Vielhaber, Michael Wallner, Bart P. van de Warrenburg, Ginevra Zanni, Stephan Zuchner, Thomas Klockgether, Rebecca Schüle, Ludger Schöls, Matthis Synofzik*

*Korrespondierende/r Autor/-in für diese Arbeit

Abstract

Autosomal recessive cerebellar ataxias (ARCAs) form an ultrarare yet expanding group of neurodegenerative multisystemic diseases affecting the cerebellum and other neurological or non-neurological systems. With the advent of targeted therapies for ARCAs, disease registries have become a precious source of real-world quantitative and qualitative data complementing knowledge from preclinical studies and clinical trials. Here, we review the ARCA Registry, a global collaborative multicenter platform (>15 countries, >30 sites) with the overarching goal to advance trial readiness in ARCAs. It presents a good clinical practice (GCP)- and general data protection regulation (GDPR)-compliant professional-reported registry for multicenter web-based capture of cross-center standardized longitudinal data. Modular electronic case report forms (eCRFs) with core, extended, and optional datasets allow data capture tailored to the participating site's variable interests and resources. The eCRFs cover all key data elements required by regulatory authorities [European Medicines Agency (EMA)] and the European Rare Disease (ERD) platform. They capture genotype, phenotype, and progression and include demographic data, biomarkers, comorbidity, medication, magnetic resonance imaging (MRI), and longitudinal clinician- or patient-reported ratings of ataxia severity, non-ataxia features, disease stage, activities of daily living, and (mental) health status. Moreover, they are aligned to major autosomal-dominant spinocerebellar ataxia (SCA) and sporadic ataxia (SPORTAX) registries in the field, thus allowing for joint and comparative analyses not only across ARCAs but also with SCAs and sporadic ataxias. The registry is at the core of a systematic multi-component ARCA database cluster with a linked biobank and an evolving study database for digital outcome measures. Currently, the registry contains more than 800 patients with almost 1,500 visits representing all ages and disease stages; 65% of patients with established genetic diagnoses capture all the main ARCA genes, and 35% with unsolved diagnoses are targets for advanced next-generation sequencing. The ARCA Registry serves as the backbone of many major European and transatlantic consortia, such as PREPARE, PROSPAX, and the Ataxia Global Initiative, with additional data input from SPORTAX. It has thus become the largest global trial-readiness registry in the ARCA field.

OriginalspracheEnglisch
Aufsatznummer677551
ZeitschriftFrontiers in Neurology
Jahrgang12
ISSN1664-2295
DOIs
PublikationsstatusVeröffentlicht - 25.06.2021

Fördermittel

This work was supported via the European Union’s Horizon 2020 research and innovation program by the BMBF under the frame of the E-Rare-3 network PREPARE (01GM1607; to MS, MA, and BW), the DFG under the frame of EJP-RD network PROSPAX (No. 441409627; MS, RS, FS, BB, CG, RH, AB, DT, and BW), and grant 779257 “Solve-RD” (to MS, RS, and BW). The study was further funded by the Federal Ministry of Education and Research, Germany, through the TreatHSP network (01GM1905 to RS and LS), and the National Institute of Neurological Diseases and Stroke (R01NS072248 to SZ and RS). BW receives additional research support from ZonMW, Hersenstichting, Gossweiler Foundation, uniQure, and Radboud University Medical Centre. LS, TKlop, TKlock, EB, GZ, BW, RS, and MS are members of the European Reference Network for Rare Neurological Diseases—Project ID No 739510. AT receives funding from the University of Tübingen, Medical Faculty, for the Clinician Scientist Program Grant #439-0-0. PK receives financial support by the Hungarian Brain Research Program 2017-1.2.1-NKP-2017_VI/4. MRA received funding from NIMAD, proposal No 971846. JB is supported by a Senior Clinical Researcher mandate of the Research Fund—Flanders (FWO) under grant agreement number 1805021N and is a member of the µNEURO Research Centre of Excellence of the University of Antwerp. Several authors of this publication are members of the European Reference Network for Rare Neuromuscular Diseases (ERN EURO-NMD) and of the European Reference Network for Rare Neurological Diseases (ERN-RND). RR and the University of Auckland CBR Neurogenetic Research Clinic receive funding from the Friedreich’s Ataxia Clinical Outcome Measures study and the Duncan Foundation (NZ). Funding. This work was supported via the European Union's Horizon 2020 research and innovation program by the BMBF under the frame of the E-Rare-3 network PREPARE (01GM1607; to MS, MA, and BW), the DFG under the frame of EJP-RD network PROSPAX (No. 441409627; MS, RS, FS, BB, CG, RH, AB, DT, and BW), and grant 779257 “Solve-RD” (to MS, RS, and BW). The study was further funded by the Federal Ministry of Education and Research, Germany, through the TreatHSP network (01GM1905 to RS and LS), and the National Institute of Neurological Diseases and Stroke (R01NS072248 to SZ and RS). BW receives additional research support from ZonMW, Hersenstichting, Gossweiler Foundation, uniQure, and Radboud University Medical Centre. LS, TKlop, TKlock, EB, GZ, BW, RS, and MS are members of the European Reference Network for Rare Neurological Diseases—Project ID No 739510. AT receives funding from the University of Tübingen, Medical Faculty, for the Clinician Scientist Program Grant #439-0-0. PK receives financial support by the Hungarian Brain Research Program 2017-1.2.1-NKP-2017_VI/4. MRA received funding from NIMAD, proposal No 971846. JB is supported by a Senior Clinical Researcher mandate of the Research Fund—Flanders (FWO) under grant agreement number 1805021N and is a member of the μNEURO Research Centre of Excellence of the University of Antwerp. Several authors of this publication are members of the European Reference Network for Rare Neuromuscular Diseases (ERN EURO-NMD) and of the European Reference Network for Rare Neurological Diseases (ERN-RND). RR and the University of Auckland CBR Neurogenetic Research Clinic receive funding from the Friedreich's Ataxia Clinical Outcome Measures study and the Duncan Foundation (NZ).

TrägerTrägernummer
ERN-RND
Duncan Foundation
European Reference Network for Rare Neuromuscular Diseases
ZonMw
Gossweiler Foundation
National Institutes of Health971846
Fonds Wetenschappelijk Onderzoek1805021N
National Institute of Neurological Disorders and StrokeR01NS072248
TreatHSP network01GM1905
Eberhard Karls Universität Tübingen439-0-0
Deutsche Forschungsgemeinschaft441409627
Horizon 2020 Framework Programme779257
Nicht hinzugefügtMR/N027302/1
Bundesministerium für Bildung und Forschung01GM1607
Radboud-Universität Nijmegen739510

    UN SDGs

    Dieser Output leistet einen Beitrag zu folgendem(n) Ziel(en) für nachhaltige Entwicklung

    1. SDG 3 – Gesundheit und Wohlergehen
      SDG 3 – Gesundheit und Wohlergehen

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    • Forschungsschwerpunkt: Gehirn, Hormone, Verhalten - Center for Brain, Behavior and Metabolism (CBBM)

    DFG-Fachsystematik

    • 2.23-07 Klinische Neurologie, Neurochirurgie und Neuroradiologie
    • 2.23-06 Molekulare und zelluläre Neurologie und Neuropathologie

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