Progressive MRI brain volume changes in ovine models of CLN5 and CLN6 neuronal ceroid lipofuscinosis

Author:

Murray Samantha J1ORCID,Almuqbel Mustafa M23,Felton Simon A2,Palmer Nickolas J2,Myall Daniel J3,Shoorangiz Reza3,Ella Arsène4,Keller Matthieu4,Palmer David N5,Melzer Tracy R367,Mitchell Nadia L1

Affiliation:

1. Faculty of Agriculture and Life Sciences, Lincoln University , Lincoln 7647 , New Zealand

2. Pacific Radiology Group , Christchurch 8014 , New Zealand

3. New Zealand Brain Research Institute , Christchurch 8011 , New Zealand

4. UMR Physiologie de la Reproduction & des Comportements, INRAE/CNRS/University of Tours , F-37380 Nouzilly , France

5. Faculty of Agriculture and Life Sciences , Lincoln University, Lincoln 7647 , New Zealand

6. Department of Medicine, University of Otago , Christchurch 8011 , New Zealand

7. School of Psychology, Speech and Hearing, University of Canterbury , Christchurch 8041 , New Zealand

Abstract

AbstractNeuronal ceroid lipofuscinoses (Batten disease) are a group of inherited lysosomal storage disorders characterized by progressive neurodegeneration leading to motor and cognitive dysfunction, seizure activity and blindness. The disease can be caused by mutations in 1 of 13 ceroid lipofuscinosis neuronal (CLN) genes. Naturally occurring sheep models of the CLN5 and CLN6 neuronal ceroid lipofuscinoses recapitulate the clinical disease progression and post-mortem pathology of the human disease. We used longitudinal MRI to assess global and regional brain volume changes in CLN5 and CLN6 affected sheep compared to age-matched controls over 18 months. In both models, grey matter volume progressively decreased over time, while cerebrospinal fluid volume increased in affected sheep compared with controls. Total grey matter volume showed a strong positive correlation with clinical scores, while cerebrospinal fluid volume was negatively correlated with clinical scores. Cortical regions in affected animals showed significant atrophy at baseline (5 months of age) and progressively declined over the disease course. Subcortical regions were relatively spared with the exception of the caudate nucleus in CLN5 affected animals that degenerated rapidly at end-stage disease. Our results, which indicate selective vulnerability and provide a timeline of degeneration of specific brain regions in two sheep models of neuronal ceroid lipofuscinoses, will provide a clinically relevant benchmark for assessing therapeutic efficacy in subsequent trials of gene therapy for CLN5 and CLN6 disease.

Funder

Neurological Foundation of New Zealand

Neurogene Inc

Batten Disease Support and Research Association

Canterbury Medical Research Foundation

Lincoln University post-doctoral fellowship,

University of Otago Health Sciences Post-doctoral fellowship

Publisher

Oxford University Press (OUP)

Subject

Neurology,Cellular and Molecular Neuroscience,Biological Psychiatry,Psychiatry and Mental health

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