Characterization of early markers of disease progression in the mouse model of Mucopolysaccharidosis IIIB

Author:

McCullough Katherine B1,Titus Amanda2,Reardon Kate M2,Conyers Sara B2,Dougherty Joseph D2,Ge Xia2,Garbow Joel R2,Dickson Patricia2,Yuede Carla M2,Maloney Susan E1ORCID

Affiliation:

1. Washington University in St Louis School of Medicine

2. Washington University School of Medicine in Saint Louis: Washington University in St Louis School of Medicine

Abstract

Abstract Mucopolysaccharidosis (MPS) IIIB, also known as Sanfilippo Syndrome B, is a devastating childhood disease. Unfortunately, there are currently no available treatments for MPS IIIB patients. Yet, animal models of lysosomal storage diseases have been valuable tools in identifying promising avenues of treatment. Enzyme replacement therapy, gene therapy, and bone marrow transplant have all shown efficacy in the MPS IIIB model systems. A ubiquitous finding across rodent models of lysosomal storage diseases is that the best treatment outcomes resulted from intervention prior to symptom onset. Therefore, the aim of the current study was to identify early markers of disease progression in the MPS IIIB mouse model as well as examine clinically-relevant behavioral domains not yet explored in this model. We observed reduced maternal isolation-induced ultrasonic vocalizations in MPS IIIB mice relative to controls, as well as disruption in a number of the spectrotemporal features. MPS IIIB also exhibited disrupted thermoregulation during the first two postnatal weeks without any differences in body weight. The developmental trajectories of gait were largely normal. In early adulthood, we observed intact visual acuity and sociability yet a more submissive phenotype and increased aggressive behavior relative to controls. MPS IIIB mice showed greater inhibition of startle in response to a pretone with a decrease in overall startle response and reduced cued fear memory. MPS IIIB also weighed significantly more than controls throughout adulthood and showed larger whole brain volumes and normalized regional volumes with intact tissue integrity as measured with magnetic resonance and diffusion tensor imaging, respectively. Together, these results indicate disease markers are present as early as the first two weeks postnatal in this model. Further, this model recapitulates social, sensory and fear-related clinical features. Our study using a mouse model of MPS IIIB provides essential baseline information that will be useful in future evaluations of potential treatments.

Publisher

Research Square Platform LLC

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