Literature DB >> 25758611

Intracerebral Gene Therapy Using AAVrh.10-hARSA Recombinant Vector to Treat Patients with Early-Onset Forms of Metachromatic Leukodystrophy: Preclinical Feasibility and Safety Assessments in Nonhuman Primates.

Michel Zerah1,2, Françoise Piguet1, Marie-Anne Colle3,4, Sylvie Raoul5, Jack-Yves Deschamps3,4, Johan Deniaud3, Benoit Gautier1, Frédérique Toulgoat6, Ivan Bieche7, Ingrid Laurendeau7, Dolan Sondhi8, Mark M Souweidane9, Nathalie Cartier-Lacave1, Philippe Moullier10, Ronald G Crystal8, Thomas Roujeau11, Caroline Sevin1,12, Patrick Aubourg1,12.   

Abstract

No treatment is available for early-onset forms of metachromatic leukodystrophy (MLD), a lysosomal storage disease caused by autosomal recessive defect in arylsulfatase A (ARSA) gene causing severe demyelination in central and peripheral nervous systems. We have developed a gene therapy approach, based on intracerebral administration of AAVrh.10-hARSA vector, coding for human ARSA enzyme. We have previously demonstrated potency of this approach in MLD mice lacking ARSA expression. We describe herein the preclinical efficacy, safety, and biodistribution profile of intracerebral administration of AAVrh.10-hARSA to nonhuman primates (NHPs). NHPs received either the dose planned for patients adjusted to the brain volume ratio between child and NHP (1×dose, 1.1×10(11) vg/hemisphere, unilateral or bilateral injection) or 5-fold this dose (5×dose, 5.5×10(11) vg/hemisphere, bilateral injection). NHPs were subjected to clinical, biological, and brain imaging observations and were euthanized 7 or 90 days after injection. There was no toxicity based on clinical and biological parameters, nor treatment-related histological findings in peripheral organs. A neuroinflammatory process correlating with brain MRI T2 hypersignals was observed in the brain 90 days after administration of the 5×dose, but was absent or minimal after administration of the 1×dose. Antibody response to AAVrh.10 and hARSA was detected, without correlation with brain lesions. After injection of the 1×dose, AAVrh.10-hARSA vector was detected in a large part of the injected hemisphere, while ARSA activity exceeded the normal endogenous activity level by 14-31%. Consistently with other reports, vector genome was detected in off-target organs such as liver, spleen, lymph nodes, or blood, but not in gonads. Importantly, AAVrh.10-hARSA vector was no longer detectable in urine at day 7. Our data demonstrate requisite safe and effective profile for intracerebral AAVrh.10-hARSA delivery in NHPs, supporting its clinical use in children affected with MLD.

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Year:  2015        PMID: 25758611     DOI: 10.1089/humc.2014.139

Source DB:  PubMed          Journal:  Hum Gene Ther Clin Dev        ISSN: 2324-8637            Impact factor:   5.032


  27 in total

Review 1.  Lacritin and other autophagy associated proteins in ocular surface health.

Authors:  Roy Karnati; Venu Talla; Katherine Peterson; Gordon W Laurie
Journal:  Exp Eye Res       Date:  2015-08-25       Impact factor: 3.467

Review 2.  Gene therapy for metachromatic leukodystrophy.

Authors:  Jonathan B Rosenberg; Stephen M Kaminsky; Patrick Aubourg; Ronald G Crystal; Dolan Sondhi
Journal:  J Neurosci Res       Date:  2016-11       Impact factor: 4.164

3.  AAVrh.10-Mediated APOE2 Central Nervous System Gene Therapy for APOE4-Associated Alzheimer's Disease.

Authors:  Jonathan B Rosenberg; Michael G Kaplitt; Bishnu P De; Alvin Chen; Thomas Flagiello; Christiana Salami; Eduard Pey; Lingzhi Zhao; Rodolfo J Ricart Arbona; Sebastien Monette; Jonathan P Dyke; Douglas J Ballon; Stephen M Kaminsky; Dolan Sondhi; Gregory A Petsko; Steven M Paul; Ronald G Crystal
Journal:  Hum Gene Ther Clin Dev       Date:  2018-03-13       Impact factor: 5.032

4.  AAV-mediated delivery of optogenetic constructs to the macaque brain triggers humoral immune responses.

Authors:  Skyler D Mendoza; Yasmine El-Shamayleh; Gregory D Horwitz
Journal:  J Neurophysiol       Date:  2017-02-15       Impact factor: 2.714

Review 5.  Gene therapy for neurological disorders: progress and prospects.

Authors:  Benjamin E Deverman; Bernard M Ravina; Krystof S Bankiewicz; Steven M Paul; Dinah W Y Sah
Journal:  Nat Rev Drug Discov       Date:  2018-08-10       Impact factor: 84.694

6.  Efficient CNS targeting in adult mice by intrathecal infusion of single-stranded AAV9-GFP for gene therapy of neurological disorders.

Authors:  K Bey; C Ciron; L Dubreil; J Deniaud; M Ledevin; J Cristini; V Blouin; P Aubourg; M-A Colle
Journal:  Gene Ther       Date:  2017-04-20       Impact factor: 5.250

7.  Direct Intracranial Injection of AAVrh8 Encoding Monkey β-N-Acetylhexosaminidase Causes Neurotoxicity in the Primate Brain.

Authors:  Diane Golebiowski; Imramsjah M J van der Bom; Churl-Su Kwon; Andrew D Miller; Keiko Petrosky; Allison M Bradbury; Stacy Maitland; Anna Luisa Kühn; Nina Bishop; Elizabeth Curran; Nilsa Silva; Dwijit GuhaSarkar; Susan V Westmoreland; Douglas R Martin; Matthew J Gounis; Wael F Asaad; Miguel Sena-Esteves
Journal:  Hum Gene Ther       Date:  2017-01-26       Impact factor: 5.695

8.  Quantitative Whole-Body Imaging of I-124-Labeled Adeno-Associated Viral Vector Biodistribution in Nonhuman Primates.

Authors:  Douglas J Ballon; Jonathan B Rosenberg; Edward K Fung; Anastasia Nikolopoulou; Paresh Kothari; Bishnu P De; Bin He; Alvin Chen; Linda A Heier; Dolan Sondhi; Stephen M Kaminsky; Paul David Mozley; John W Babich; Ronald G Crystal
Journal:  Hum Gene Ther       Date:  2020-12       Impact factor: 5.695

Review 9.  Cell therapy for diverse central nervous system disorders: inherited metabolic diseases and autism.

Authors:  Jessica M Sun; Joanne Kurtzberg
Journal:  Pediatr Res       Date:  2017-11-08       Impact factor: 3.756

10.  Complete Correction of Brain and Spinal Cord Pathology in Metachromatic Leukodystrophy Mice.

Authors:  Emilie Audouard; Valentin Oger; Béatrix Meha; Nathalie Cartier; Caroline Sevin; Françoise Piguet
Journal:  Front Mol Neurosci       Date:  2021-05-21       Impact factor: 5.639

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