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Proteomics profiling and machine learning in nusinersen-treated patients with spinal muscular atrophy.

Authors :
Panicucci, Chiara
Sahin, Eray
Bartolucci, Martina
Casalini, Sara
Brolatti, Noemi
Pedemonte, Marina
Baratto, Serena
Pintus, Sara
Principi, Elisa
D'Amico, Adele
Pane, Marika
Sframeli, Marina
Messina, Sonia
Albamonte, Emilio
Sansone, Valeria A.
Mercuri, Eugenio
Bertini, Enrico
Sezerman, Ugur
Petretto, Andrea
Bruno, Claudio
Source :
Cellular & Molecular Life Sciences; 9/10/2024, Vol. 81 Issue 1, p1-15, 15p
Publication Year :
2024

Abstract

Aim: The availability of disease-modifying therapies and newborn screening programs for spinal muscular atrophy (SMA) has generated an urgent need for reliable prognostic biomarkers to classify patients according to disease severity. We aim to identify cerebrospinal fluid (CSF) prognostic protein biomarkers in CSF samples of SMA patients collected at baseline (T0), and to describe proteomic profile changes and biological pathways influenced by nusinersen before the sixth nusinersen infusion (T302). Methods: In this multicenter retrospective longitudinal study, we employed an untargeted liquid chromatography mass spectrometry (LC-MS)-based proteomic approach on CSF samples collected from 61 SMA patients treated with nusinersen (SMA1 n=19, SMA2 n=19, SMA3 n=23) at T0 at T302. The Random Forest (RF) machine learning algorithm and pathway enrichment analysis were applied for analysis. Results: The RF algorithm, applied to the protein expression profile of naïve patients, revealed several proteins that could classify the different types of SMA according to their differential abundance at T0. Analysis of changes in proteomic profiles identified a total of 147 differentially expressed proteins after nusinersen treatment in SMA1, 135 in SMA2, and 289 in SMA3. Overall, nusinersen-induced changes on proteomic profile were consistent with i) common effects observed in allSMA types (i.e. regulation of axonogenesis), and ii) disease severity-specific changes, namely regulation of glucose metabolism in SMA1, of coagulation processes in SMA2, and of complement cascade in SMA3. Conclusions: This untargeted LC-MS proteomic profiling in the CSF of SMA patients revealed differences in protein expression in naïve patients and showed nusinersen-related modulation in several biological processes after 10 months of treatment. Further confirmatory studies are needed to validate these results in larger number of patients and over abroader timeframe. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
1420682X
Volume :
81
Issue :
1
Database :
Complementary Index
Journal :
Cellular & Molecular Life Sciences
Publication Type :
Academic Journal
Accession number :
179554182
Full Text :
https://doi.org/10.1007/s00018-024-05426-6