Outcomes for patients in the RESTORE registry with spinal muscular atrophy and four or more SMN2 gene copies treated with onasemnogene abeparvovec.

Julie A Parsons, Susana Quijano-Roy, Sharon Aharoni, Eduardo F Tizzano, Richard S Finkel, Laurent Servais, Arpita Lakhotia

Journal: European journal of paediatric neurology : EJPN : official journal of the European Paediatric Neurology Society 2024;53():18-24

PMID: 39260228

Abstract

OBJECTIVE

We describe outcomes following onasemnogene abeparvovec monotherapy for patients with ≥four survival motor neuron 2 (SMN2) gene copies in RESTORE, a noninterventional spinal muscular atrophy patient registry.

METHODS

We evaluated baseline characteristics, motor milestone achievement, post-treatment motor function, use of ventilatory/nutritional support, and adverse events as of December 22, 2022.

RESULTS

At data cutoff, 19 patients in RESTORE had ≥four SMN2 copies and were treated with onasemnogene abeparvovec monotherapy (n=12 [63.2%] four copies; n=7 [36.8%] >four copies). All patients were identified by newborn screening and were reported as asymptomatic at diagnosis. Median age at onasemnogene abeparvovec administration was 3.0 months. Median time from treatment to last recorded visit was 15.4 months, with a range of post-treatment follow-up of 0.03-39.4 months. All 12 children who were assessed for motor development achieved new milestones, including standing alone (n=2) and walking alone (n=5). Five children reported one or more treatment-emergent adverse events (one Grade 3 or greater). No deaths or use of ventilatory/nutritional support were reported.

CONCLUSIONS

Real-world findings from the RESTORE registry indicate that patients with ≥four SMN2 gene copies treated with onasemnogene abeparvovec monotherapy demonstrated improvements in motor function. Adverse events experienced by these patients were consistent with previously reported findings.

Copyright © 2024 The Authors. Published by Elsevier Ltd.. All rights reserved.

Address: Department of Clinical and Molecular Genetics, Hospital Vall d'Hebron, Passeig de la Vall d'Hebron, 119-129, Horta-Guinardó, 08035, Barcelona, Spain. Electronic address: [email protected].; Garches Neuromuscular Reference Center, APHP Raymond Poincaré University Hospital (UVSQ Paris Saclay), 104 Bd Raymond Poincaré, 92380, Garches, France.; Department of Paediatrics, MDUK Oxford Neuromuscular Centre, & NIHR Oxford Biomedical Research, University of Oxford, Headly Way, Headington, OX3 9DU, Oxford, UK; Department of Pediatrics, Neuromuscular Reference Center, University and University Hospital of Liège, Bât. B35 Département des Sciences Cliniques, Quartier Hôpital, Avenue de l'Hôpital 13, 4000, Liège, Belgium.; Children's Hospital Colorado, University of Colorado School of Medicine, 13001 East 17th Place, Aurora, CO, 80045, USA.; Institute of Pediatric Neurology, Schneider Children's Medical Center of Israel, Kaplan St 14, Petah Tikva, Israel; Faculty of Medical and Health Sciences, Tel-Aviv University, Ramat Aviv, Tel Aviv, Israel.; University of Louisville, Norton Children's Medical Group, 411 East Chestnut Street, Floor 6, Louisville, KY, 40202, USA.; Center for Experimental Neurotherapeutics, St. Jude Children's Research Hospital, 262 Danny Thomas Place, Memphis, TN, 38105, USA.
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