Intravitreal gene therapy reduces lysosomal storage in specific areas of the CNS in mucopolysaccharidosis VII mice

AK Hennig, B Levy, JM Ogilvie, CA Vogler… - Journal of …, 2003 - Soc Neuroscience
AK Hennig, B Levy, JM Ogilvie, CA Vogler, N Galvin, S Bassnett, MS Sands
Journal of Neuroscience, 2003Soc Neuroscience
The mucopolysaccharidoses (MPSs) are lysosomal storage diseases resulting from
impaired catabolism of sulfated glycosaminoglycans. MPS VII mice lack lysosomal β-
glucuronidase (GUSB) activity, leading to the accumulation of partially degraded
chondroitin, dermatan, and heparan sulfates in most tissues. Consequently, these mice
develop most of the symptoms exhibited by human MPS VII patients, including progressive
visual and cognitive deficits. To investigate the effects of reducing lysosomal storage in …
The mucopolysaccharidoses (MPSs) are lysosomal storage diseases resulting from impaired catabolism of sulfated glycosaminoglycans. MPS VII mice lack lysosomal β-glucuronidase (GUSB) activity, leading to the accumulation of partially degraded chondroitin, dermatan, and heparan sulfates in most tissues. Consequently, these mice develop most of the symptoms exhibited by human MPS VII patients, including progressive visual and cognitive deficits. To investigate the effects of reducing lysosomal storage in nervous tissues, we injected recombinant adeno-associated virus encoding GUSB directly into the vitreous humor of young adult mice. Interestingly, GUSB activity was subsequently detected in the brains of the recipients. At 8–12 weeks after treatment, increased GUSB activity and reduced lysosomal distension were found in regions of the thalamus and tectum that received inputs from the injected eye. Lysosomal storage was also reduced in adjacent nonvisual regions, including the hippocampus, as well as in the visual cortex. The findings suggest that both diffusion and trans-synaptic transfer contribute to the dissemination of enzyme activity within the CNS. Intravitreal injection may thus provide a means of delivering certain therapeutic gene products to specific areas within the CNS.
Soc Neuroscience