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Cross-species efficacy of AAV-mediated ARSA replacement for metachromatic leukodystrophy
Shyam Ramachandran, Jeffery Ardinger, Jie Bu, MiAngela Ramos, Lilu Guo, Dhiman Ghosh, Mahmud Hossain, Shih-Ching Chou, Yao Chen, Erik Wischhof, Swathi Ayloo, Roger Trullo, Yuxia Luo, Jessica M. Hogestyn, Daniel M. DuBreuil, Emily Crosier, Johanna G. Flyer-Adams, Amy M. Richards, Michael Tsabar, Giorgio Gaglia, Shelley Nass, Bindu Nambiar, Denise Woodcock, Catherine O’Riordan, Qi Tang, Bradford Elmer, Bailin Zhang, Martin Goulet, Christian Mueller
Shyam Ramachandran, Jeffery Ardinger, Jie Bu, MiAngela Ramos, Lilu Guo, Dhiman Ghosh, Mahmud Hossain, Shih-Ching Chou, Yao Chen, Erik Wischhof, Swathi Ayloo, Roger Trullo, Yuxia Luo, Jessica M. Hogestyn, Daniel M. DuBreuil, Emily Crosier, Johanna G. Flyer-Adams, Amy M. Richards, Michael Tsabar, Giorgio Gaglia, Shelley Nass, Bindu Nambiar, Denise Woodcock, Catherine O’Riordan, Qi Tang, Bradford Elmer, Bailin Zhang, Martin Goulet, Christian Mueller
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Research Article Genetics Neuroscience

Cross-species efficacy of AAV-mediated ARSA replacement for metachromatic leukodystrophy

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Abstract

Metachromatic leukodystrophy (MLD) is an autosomal recessive neurodegenerative disorder caused by mutations in the arylsulfatase A (ARSA) gene, resulting in lower sulfatase activity and the toxic accumulation of sulfatides in the central and peripheral nervous system. Children account for 70% of cases and become progressively disabled, with death occurring within 10 years of disease onset. Gene therapy approaches to restore ARSA expression via adeno-associated virus (AAV) vectors have been promising but hampered by limited brain biodistribution. We report the development of an engineered capsid, AAV.GMU01, demonstrating superior biodistribution and transgene expression in the central nervous system of nonhuman primates (NHPs). Next, we show that AAV.GMU01-ARSA–treated MLD mice exhibit persistent, normal levels of sulfatase activity and a concomitant reduction in toxic sulfatides. Treated mice also show a reduction in MLD-associated pathology and auditory dysfunction. Lastly, we demonstrate that treatment with AAV.GMU01-ARSA in NHPs is well tolerated and results in potentially therapeutic ARSA expression in the brain. In summary, we propose AAV.GMU01-ARSA–mediated gene replacement as a clinically viable approach to achieve broad and therapeutic levels of ARSA.

Authors

Shyam Ramachandran, Jeffery Ardinger, Jie Bu, MiAngela Ramos, Lilu Guo, Dhiman Ghosh, Mahmud Hossain, Shih-Ching Chou, Yao Chen, Erik Wischhof, Swathi Ayloo, Roger Trullo, Yuxia Luo, Jessica M. Hogestyn, Daniel M. DuBreuil, Emily Crosier, Johanna G. Flyer-Adams, Amy M. Richards, Michael Tsabar, Giorgio Gaglia, Shelley Nass, Bindu Nambiar, Denise Woodcock, Catherine O’Riordan, Qi Tang, Bradford Elmer, Bailin Zhang, Martin Goulet, Christian Mueller

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Figure 1

The engineered capsid AAV.GMU01 shows higher transgene expression in the brain of NHPs compared with AAV.rh10.

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The engineered capsid AAV.GMU01 shows higher transgene expression in the...
Cynomolgus monkeys (male, Mauritius, 2 years old, 2–3 kg) seronegative for AAV.rh10 and AAV.GMU01 were dosed by intrathecal delivery at the cervical level 1–2 junction using a ported intrathecal catheter inserted at the lumbar region. Animals were dosed in the Trendelenburg position. One dose of AAV.GMU01 or rh10-CBA-eGFP was administrated at 2.75e13 VG/NHP (3.65e11 VG/g brain weight). At 16–29 days after dose, animals were euthanized. (A–H) Forty-one tissue biopsy punches from 19 different gray matter brain regions were taken. AAV VG copies (A–C) were measured in brain biopsy punches by bovine growth hormone-digital polymerase chain reaction and normalized to TUBB1 gene intron to obtain VG copies per cell, presented by animal (A) or by punch (B and C). eGFP expression (D–F) in the same regions was measured by ELISA, presented by animal (D) or by punch (E and F). (G and H) Correlation of vector exposure to eGFP expression in brain, presented by animal (G) or by punch (H). (I) Representative images depicting distinct brain regions from AAV.GMU01- and AAV.rh10-treated NHPs stained for eGFP. Scale bar: 5 mm. Data are shown as the mean ± SEM. Two-way ANOVA with Tukey’s or Šidák’s (B and D) multiple-comparison test. *P < 0.05; **P < 0.01; ***P < 0.001; ****P < 0.0001.

Copyright © 2026 American Society for Clinical Investigation
ISSN: 0021-9738 (print), 1558-8238 (online)

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