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    Life-Limiting Peripheral Organ Dysfunction in Feline Sandhoff Disease Emerges after Effective CNS Gene Therapy

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    Authors
    Johnson, Aime K
    McCurdy, Victoria J
    Gray-Edwards, Heather L
    Maguire, Anne S
    Cochran, J Nicholas
    Gross, Amanda L
    Skinner, Haleigh E
    Randle, Ashley N
    Shirley, Jamie L
    Brunson, Brandon L
    Bradbury, Allison M
    Leroy, Stanley G
    Hwang, Misako
    Rockwell, Hannah E
    Cox, Nancy R
    Baker, Henry J
    Seyfried, Thomas N
    Sena-Esteves, Miguel
    Martin, Douglas R
    Show allShow less
    UMass Chan Affiliations
    Horae Gene Therapy Center
    Neurology
    Radiology
    Document Type
    Journal Article
    Publication Date
    2023-08-01
    
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    Link to Full Text
    https://doi.org/10.1002/ana.26756
    Abstract
    Objective: GM2 gangliosidosis is usually fatal by 5 years of age in its 2 major subtypes, Tay-Sachs and Sandhoff disease. First reported in 1881, GM2 gangliosidosis has no effective treatment today, and children succumb to the disease after a protracted neurodegenerative course and semi-vegetative state. This study seeks to further develop adeno-associated virus (AAV) gene therapy for human translation. Methods: Cats with Sandhoff disease were treated by intracranial injection of vectors expressing feline β-N-acetylhexosaminidase, the enzyme deficient in GM2 gangliosidosis. Results: Hexosaminidase activity throughout the brain and spinal cord was above normal after treatment, with highest activities at the injection sites (thalamus and deep cerebellar nuclei). Ganglioside storage was reduced throughout the brain and spinal cord, with near complete clearance in many regions. While untreated cats with Sandhoff disease lived for 4.4 ± 0.6 months, AAV-treated cats lived to 19.1 ± 8.6 months, and 3 of 9 cats lived >21 months. Correction of the central nervous system was so effective that significant increases in lifespan led to the emergence of otherwise subclinical peripheral disease, including megacolon, enlarged stomach and urinary bladder, soft tissue spinal cord compression, and patellar luxation. Throughout the gastrointestinal tract, neurons of the myenteric and submucosal plexuses developed profound pathology, demonstrating that the enteric nervous system was inadequately treated. Interpretation: The vector formulation in the current study effectively treats neuropathology in feline Sandhoff disease, but whole-body targeting will be an important consideration in next-generation approaches. ANN NEUROL 2023.
    Source
    Johnson AK, McCurdy VJ, Gray-Edwards HL, Maguire AS, Cochran JN, Gross AL, Skinner HE, Randle AN, Shirley JL, Brunson BL, Bradbury AM, Leroy SG, Hwang M, Rockwell HE, Cox NR, Baker HJ, Seyfried TN, Sena-Esteves M, Martin DR. Life-Limiting Peripheral Organ Dysfunction in Feline Sandhoff Disease Emerges after Effective CNS Gene Therapy. Ann Neurol. 2023 Aug 1. doi: 10.1002/ana.26756. Epub ahead of print. PMID: 37526361.
    DOI
    10.1002/ana.26756
    Permanent Link to this Item
    http://hdl.handle.net/20.500.14038/52438
    PubMed ID
    37526361
    Rights
    © 2023 American Neurological Association.
    ae974a485f413a2113503eed53cd6c53
    10.1002/ana.26756
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