Neuroanatomical and cognitive biomarkers of alpha‐synuclein propagation in a mouse model of synucleinopathy prior to onset of motor symptoms

Author:

Tullo Stephanie12ORCID,Miranda Aline S.34,del Cid‐Pellitero Esther5,Lim Mei Peng3,Gallino Daniel2,Attaran Anoosha3,Patel Raihaan26,Novikov Vladislav3,Park Megan2,Beraldo Flavio H.3,Luo Wen7,Shlaifer Irina7,Durcan Thomas M.7,Bussey Timothy J.38,Saksida Lisa M.38,Fon Edward A.5,Prado Vania F.389,Prado Marco A. M.389ORCID,Chakravarty M. Mallar2610

Affiliation:

1. Integrated Program in Neuroscience McGill University Montreal Quebec Canada

2. Computational Brain Anatomy (CoBrA) Laboratory, Cerebral Imaging Center Douglas Mental Health University Institute, McGill University Verdun Quebec Canada

3. Robarts Research Institute, Schulich School of Medicine and Dentistry, The University of Western Ontario London Ontario Canada

4. Departamento de Morfologia Instituto de Ciencias Biologicas, Universidade Federal de Minas Gerais Belo Horizonte Brazil

5. McGill Parkinson Program, Neurodegenerative Diseases Group, Department of Neurology and Neurosurgery, Montreal Neurological Institute‐Hospital McGill University Montreal Quebec Canada

6. Department of Biological & Biomedical Engineering McGill University Montreal Quebec Canada

7. Early Drug Discovery Unit Montreal Neurological Institute, McGill University Montreal Quebec Canada

8. Department of Physiology and Pharmacology, Schulich School of Medicine and Dentistry The University of Western Ontario London Ontario Canada

9. Department of Anatomy & Cell Biology, Schulich School of Medicine and Dentistry The University of Western Ontario London Ontario Canada

10. Department of Psychiatry McGill University Montreal Quebec Canada

Abstract

AbstractSignificant evidence suggests that misfolded alpha‐synuclein (aSyn), a major component of Lewy bodies, propagates in a prion‐like manner contributing to disease progression in Parkinson's disease (PD) and other synucleinopathies. In fact, timed inoculation of M83 hemizygous mice with recombinant human aSyn preformed fibrils (PFF) has shown symptomatic deficits after substantial spreading of pathogenic alpha‐synuclein, as detected by markers for the phosphorylation of S129 of aSyn. However, whether accumulated toxicity impact human‐relevant cognitive and structural neuroanatomical measures is not fully understood. Here we performed a single unilateral striatal PFF injection in M83 hemizygous mice, and using two assays with translational potential, ex vivo magnetic resonance imaging (MRI) and touchscreen testing, we examined the combined neuroanatomical and behavioral impact of aSyn propagation. In PFF‐injected mice, we observed widespread atrophy in bilateral regions that project to or receive input from the injection site using MRI. We also identified early deficits in reversal learning prior to the emergence of motor symptoms. Our findings highlight a network of regions with related cellular correlates of pathology that follow the progression of aSyn spreading, and that affect brain areas relevant for reversal learning. Our experiments suggest that M83 hemizygous mice injected with human PFF provides a model to understand how misfolded aSyn affects human‐relevant pre‐clinical measures and suggest that these pre‐clinical biomarkers could be used to detect early toxicity of aSyn and provide better translational measures between mice and human disease.image

Funder

Canadian Institutes of Health Research

Publisher

Wiley

Subject

Cellular and Molecular Neuroscience,Biochemistry

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