From iPS Cells to Rodents and Nonhuman Primates: Filling Gaps in Modeling Parkinson's Disease

2020 | journal article; overview. A publication with affiliation to the University of Göttingen.

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​From iPS Cells to Rodents and Nonhuman Primates: Filling Gaps in Modeling Parkinson's Disease​
Outeiro, T. F. ; Heutink, P.; Bezard, E. & Cenci, A. M.​ (2020) 
Movement Disorders,.​ DOI: https://doi.org/10.1002/mds.28387 

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Authors
Outeiro, Tiago F. ; Heutink, Peter; Bezard, Erwan; Cenci, Angela M.
Abstract
ABSTRACT Parkinson's disease (PD) is primarily known as a movement disorder because of typical clinical manifestations associated with the loss of dopaminergic neurons in the substantia nigra. However, it is now widely recognized that PD is a much more complex condition, with multiple and severe nonmotor features implicating additional brain areas and organs in the disease process. Pathologically, typical forms of PD are characterized by the accumulation of α‐synuclein‐rich protein inclusions known as Lewy bodies and Lewy neurites, although other types of protein inclusions are also often present in the brain. Familial forms of PD have provided a wealth of information about molecular pathways leading to neurodegeneration, but only to add to the complexity of the problem and uncover new knowledge gaps. Therefore, modeling PD in the laboratory has become increasingly challenging. Here, we discuss knowledge gaps and challenges in the use of laboratory models for the study of a disease that is clinically heterogeneous and multifactorial. We propose that the combined use of patient‐derived cells and animal models, along with current technological tools, will not only expand our molecular and pathophysiological understanding of PD, but also assist in the identification of therapeutic strategies targeting relevant pathogenic pathways. © 2020 International Parkinson and Movement Disorder Society
Issue Date
2020
Journal
Movement Disorders 
Project
EXC 2067: Multiscale Bioimaging 
SFB 1286: Quantitative Synaptologie 
SFB 1286 | B06: Die Rolle von RNA in Synapsenphysiologie und Neurodegeneration 
SFB 1286 | B08: Definition von Kaskaden molekularer Veränderungen bei Synucleinopathien während der Neurodegeneration 
Working Group
RG Outeiro (Experimental Neurodegeneration) 
ISSN
0885-3185
eISSN
1531-8257
Language
English
Sponsor
Deutsche Forschungsgemeinschaft http://dx.doi.org/10.13039/501100001659
Michael J. Fox Foundation for Parkinson's Research http://dx.doi.org/10.13039/100000864
Swedish Research Council http://dx.doi.org/10.13039/501100004359

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