| Literature DB >> 27699273 |
Sandra Motas1,2, Virginia Haurigot1,2,3, Miguel Garcia1,2,3, Sara Marcó1,2, Albert Ribera1,2,3, Carles Roca1,2,3, Xavier Sánchez1,2, Víctor Sánchez1,2, Maria Molas1,2,3, Joan Bertolin1,2, Luca Maggioni1,2,3, Xavier León1,2,3, Jesús Ruberte1,3,4, Fatima Bosch1,2,3.
Abstract
Mucopolysaccharidosis type II (MPSII) is an X-linked lysosomal storage disease characterized by severe neurologic and somatic disease caused by deficiency of iduronate-2-sulfatase (IDS), an enzyme that catabolizes the glycosaminoglycans heparan and dermatan sulphate. Intravenous enzyme replacement therapy (ERT) currently constitutes the only approved therapeutic option for MPSII. However, the inability of recombinant IDS to efficiently cross the blood-brain barrier (BBB) limits ERT efficacy in treating neurological symptoms. Here, we report a gene therapy approach for MPSII through direct delivery of vectors to the CNS. Through a minimally invasive procedure, we administered adeno-associated virus vectors encoding IDS (AAV9-Ids) to the cerebrospinal fluid of MPSII mice with already established disease. Treated mice showed a significant increase in IDS activity throughout the encephalon, with full resolution of lysosomal storage lesions, reversal of lysosomal dysfunction, normalization of brain transcriptomic signature, and disappearance of neuroinflammation. Moreover, our vector also transduced the liver, providing a peripheral source of therapeutic protein that corrected storage pathology in visceral organs, with evidence of cross-correction of nontransduced organs by circulating enzyme. Importantly, AAV9-Ids-treated MPSII mice showed normalization of behavioral deficits and considerably prolonged survival. These results provide a strong proof of concept for the clinical translation of our approach for the treatment of Hunter syndrome patients with cognitive impairment.Entities:
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Year: 2016 PMID: 27699273 PMCID: PMC5033872 DOI: 10.1172/jci.insight.86696
Source DB: PubMed Journal: JCI Insight ISSN: 2379-3708