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Updated: Jun 5, 2026

An Intestine/Liver Microphysiological System for Drug Pharmacokinetic and Toxicological Assessment
Published on: December 3, 2020
Determinants of hepatic enzyme elevations following onasemnogene abeparvovec: Results from a unified immunomodulation
Vivek Mundada1, Syon Parashar2, Anil Dhawan3
1Department of Paediatric Neuroscience, Aster DM Healthcare, Dubai, UAE.
Abstract:
IntroductionOnasemnogene abeparvovec is an adeno-associated virus serotype 9 (AAV9) gene therapy for spinal muscular atrophy (SMA) that is frequently associated with immune-mediated hepatotoxicity. Previous studies have suggested that older age and higher body weight may increase the risk or severity of hepatic enzyme elevation; however, interpretation is limited by heterogeneous immunosuppression strategies across centers.MethodWe conducted a retrospective cohort study of children with SMA who received onasemnogene abeparvovec between 2020 and 2025 and were managed using a unified, protocol-driven immunomodulation strategy. Peak alanine aminotransferase (ALT) and aspartate aminotransferase (AST) values (upper limit of normal [ULN] 35 U/L), as well as the timing of peak transaminase elevations, were analyzed in relation to age and weight at infusion.ResultsAmong 152 children with adequate biochemical follow-up, hepatic enzyme elevation was common: 63.2% had peak ALT ≥2× ULN and 29.6% had peak ALT ≥5× ULN. Weight demonstrated a statistically significant but modest correlation with peak ALT magnitude (r = 0.184, p = 0.023), whereas age was not associated with transaminase severity. In contrast, age correlated with delayed timing of peak ALT (r = 0.229, p = 0.005) and AST (r = 0.283, p < 0.001). All hepatic enzyme abnormalities resolved under protocol-based immunomodulation, and no cases of hepatic failure or synthetic dysfunction occurred.ConclusionWhen managed with a structured, proactive immunomodulation protocol, hepatotoxicity following onasemnogene abeparvovec is predictable and manageable. Weight modestly influences ALT severity, while age primarily affects the timing rather than the magnitude of hepatic immune activation, supporting safe administration across a broad pediatric age and weight spectrum.
Insights
Hepatotoxicity from onasemnogene abeparvovec gene therapy for spinal muscular atrophy is common but manageable with a unified immunomodulation strategy. Weight influences severity, while age affects the timing of liver enzyme elevations.
Area of Science:
- Genetics and Gene Therapy
- Hepatology
- Pediatric Neurology
Background:
- Onasemnogene abeparvovec (AAV9 gene therapy) treats spinal muscular atrophy (SMA).
- Immune-mediated hepatotoxicity is a known side effect.
- Previous studies on risk factors like age and weight were limited by varied immunosuppression protocols.
Purpose of the Study:
- To analyze the impact of age and weight on hepatotoxicity following onasemnogene abeparvovec administration.
- To evaluate the effectiveness of a unified immunomodulation strategy in managing liver enzyme elevations.
Main Methods:
- Retrospective cohort study of 152 children with SMA receiving onasemnogene abeparvovec (2020-2025).
- Utilized a standardized, protocol-driven immunomodulation strategy.
- Analyzed peak ALT and AST levels and timing in relation to patient age and weight at infusion.
Main Results:
- 63.2% of patients experienced peak ALT ≥2x ULN; 29.6% had peak ALT ≥5x ULN.
- Weight showed a modest correlation with peak ALT magnitude (r=0.184, p=0.023).
- Age correlated with delayed peak ALT and AST elevations (p<0.005), but not severity.
- All enzyme abnormalities resolved with protocol-based immunomodulation; no hepatic failure occurred.
Conclusions:
- Hepatotoxicity from onasemnogene abeparvovec is predictable and manageable with structured immunomodulation.
- Patient weight is a modest factor in ALT severity.
- Patient age influences the timing, not the magnitude, of hepatic immune response.
- The findings support safe administration across a wide pediatric age and weight range.
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