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Erratum
Modeling α-Synuclein Propagation with Preformed Fibril Injections
Hyun Kyung Chung, Hoang-Anh Ho, Dayana Pérez-Acuña, Seung-Jae Lee
J Mov Disord. 2020;13(1):77-79.   Published online October 14, 2019
DOI: https://doi.org/10.14802/jmd.19046.e
Corrects: J Mov Disord 2019;12(3):139
  • 5,878 View
  • 138 Download
  • 8 Web of Science
  • 8 Crossref
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Review Article
Article image
Modeling α-Synuclein Propagation with Preformed Fibril Injections
Hyun Kyung Chung, Hoang-Anh Ho, Dayana Pérez-Acuña, Seung-Jae Lee
J Mov Disord. 2019;12(3):139-151.   Published online September 30, 2019
DOI: https://doi.org/10.14802/jmd.19046
Correction in: J Mov Disord 2020;13(1):77
  • 18,549 View
  • 932 Download
  • 62 Web of Science
  • 57 Crossref
AbstractAbstract PDF
The aggregation of α-synuclein (α-syn) has been implicated in the pathogenesis of many neurodegenerative disorders, including Parkinson’s disease (PD), dementia with Lewy bodies (DLB), and multiple system atrophy (MSA). Postmortem analyses of α-syn pathology, especially that of PD, have suggested that aggregates progressively spread from a few discrete locations to wider brain regions. The neuron-to-neuron propagation of α-syn has been suggested to be the underlying mechanism by which aggregates spread throughout the brain. Many cellular and animal models has been created to study cell-to-cell propagation. Recently, it has been shown that a single injection of preformed fibrils (PFFs) made of recombinant α-syn proteins into various tissues and organs of many different animal species results in widespread α-syn pathology in the central nervous system (CNS). These PFF models have been extensively used to study the mechanism by which aggregates spread throughout the brain. Here, we review what we have learned from PFF models, describe the nature of PFFs and the neuropathological features, neurophysiological characteristics, and behavioral outcomes of the models.

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