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Tau oligomers mediate α-synuclein toxicity and can be targeted by immunotherapy

  • University of Texas Medical Branch at Galveston
Research Output:
Contribution to journal
Article
Peer-review

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SciVal
FWCI
2.76
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Author count
8
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Citations
68
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Paper percentile
92
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Top percentile
10
Scopus
Citations

Abstract

Background: We have evaluated the efficacy of targeting the toxic, oligomeric form of tau protein by passive immunotherapy in a mouse model of synucleinopathy. Parkinson's disease and Lewy body dementia are two of the most common neurodegenerative disorders and are primarily characterized by the accumulation of α-synuclein in Lewy bodies. However, evidence shows that smaller, oligomeric aggregates are likely the most toxic form of the protein. Moreover, a large body of research suggests that α-synuclein interacts with tau in disease and may act in a synergistic mechanism, implicating tau oligomers as a potential therapeutic target. Methods: We treated seven-month-old mice overexpressing mutated α-synuclein (A53T mice) with tau oligomer-specific monoclonal antibody (TOMA) and a control antibody and assessed both behavioral and pathological phenotypes. Results: We found that A53T mice treated with TOMA were protected from cognitive and motor deficits two weeks after a single injection. Levels of toxic tau oligomers were specifically decreased in the brains of TOMA-treated mice. Tau oligomer depletion also protected against dopamine and synaptic protein loss. Conclusion: These results indicate that targeting tau oligomers is beneficial for a mouse model of synucleinopathy and may be a viable therapeutic strategy for treating diseases in which tau and α-synuclein have a synergistic toxicity.

Publication Information

Output type

Research Output:
Contribution to journal
Article
Peer-review

Original language

English

Pages from-to (Number of pages)

Pages 13

Journal (Volume, Issue Number)

Molecular Neurodegeneration (Volume 13, Issue 1)

Publication milestones

  • Published - 15/03/2018

Publication status

Published - 15/03/2018

ISSN

1750-1326

Publication IDs

  • ORCID: /0000-0003-2511-949X/work/43281160
  • Scopus: 85043761395
  • PubMed: 29544548
  • WOS: 000427732000001

Funding Details

FundersFunding numbers
Gilson Longerbaugh foundation
-
Mitchell Center for Neurodegenerative Disease
-
Sealy Center for Vaccine Development
-
NIH
R01NS094557, R01AG054025
NIA
RF1AG055771
MJFF
-