Polyglutamine-expanded ataxin-3: a target engagement marker for spinocerebellar ataxia type 3 in peripheral blood
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Identificadores
URI: http://hdl.handle.net/10902/24039DOI: 10.1002/mds.28749
ISSN: 0885-3185
ISSN: 1531-8257
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Hübener-Schmid, Jeannette; Kuhlbrodt, Kirsten; Peladan, Julien; Faber, Jennifer; Santana, Magda M.; Hengel, Holger; Jacobi, Heike; Reetz, Kathrin; Garcia-Moreno, Hector; Raposo, Mafalda; Gaalen, Judith van; Infante Ceberio, Jon
Fecha
2021-11Derechos
Attribution 4.0 International
Publicado en
Movement Disorders, 2021, 36(11), 2675-2681
Editorial
John Wiley and Sons Inc.
Enlace a la publicación
Palabras clave
Ataxin-3
Machado-Joseph disease
Spinocerebellar ataxia type 3
Singulex technology
Target engagement biomarker
Resumen/Abstract
Background:
Spinocerebellar ataxia type 3 is a rare neurodegenerative disease caused by a CAG repeat expansion in the ataxin-3 gene. Although no curative therapy is yet available, preclinical gene-silencing approaches to reduce polyglutamine (polyQ) toxicity demonstrate promising results. In view of upcoming clinical trials, quantitative and easily accessible molecular markers are of critical importance as pharmacodynamic and particularly as target engagement markers.
Objective:
We aimed at developing an ultrasensitive immunoassay to measure specifically polyQ-expanded ataxin-3 in plasma and cerebrospinal fluid (CSF).
Methods:
Using the novel single molecule counting ataxin-3 immunoassay, we analyzed cross-sectional and longitudinal patient biomaterials.
Results:
Statistical analyses revealed a correlation with clinical parameters and a stability of polyQ-expanded ataxin-3 during conversion from the pre-ataxic to the ataxic phases.
Conclusions:
The novel immunoassay is able to quantify polyQ-expanded ataxin-3 in plasma and CSF, whereas ataxin-3 levels in plasma correlate with disease severity. Longitudinal analyses demonstrated a high stability of polyQ-expanded ataxin-3 over a short period.
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