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Impaired AMPA signaling and cytoskeletal alterations induce early synaptic dysfunction in a mouse model of Alzheimer's disease.

David Baglietto-Vargas | Gilberto Aleph Prieto | Agenor Limon | Stefania Forner | Carlos J Rodriguez-Ortiz | Kenji Ikemura | Rahasson R Ager | Rodrigo Medeiros | Laura Trujillo-Estrada | Alessandra C Martini | Masashi Kitazawa | Jose C Davila | Carl W Cotman | Antonia Gutierrez | Frank M LaFerla
Aging cell | 2018

Alzheimer's disease (AD) is a devastating neurodegenerative disorder that impairs memory and causes cognitive and psychiatric deficits. New evidences indicate that AD is conceptualized as a disease of synaptic failure, although the molecular and cellular mechanisms underlying these defects remain to be elucidated. Determining the timing and nature of the early synaptic deficits is critical for understanding the progression of the disease and for identifying effective targets for therapeutic intervention. Using single-synapse functional and morphological analyses, we find that AMPA signaling, which mediates fast glutamatergic synaptic transmission in the central nervous system (CNS), is compromised early in the disease course in an AD mouse model. The decline in AMPA signaling is associated with changes in actin cytoskeleton integrity, which alters the number and the structure of dendritic spines. AMPA dysfunction and spine alteration correlate with the presence of soluble but not insoluble Aβ and tau species. In particular, we demonstrate that these synaptic impairments can be mitigated by Aβ immunotherapy. Together, our data suggest that alterations in AMPA signaling and cytoskeletal processes occur early in AD. Most important, these deficits are prevented by Aβ immunotherapy, suggesting that existing therapies, if administered earlier, could confer functional benefits.

Pubmed ID: 29877034

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Associated grants

  • Agency: University of California and Institute for Mexico, International
    Id: CN-13-613
  • Agency: NIA NIH HHS, United States
    Id: R01 AG027544
  • Agency: Alzheimer's Association, International
    Id: NIRG-15-363477
  • Agency: The Larry Hillblom Foundation, International
    Id: 2016-A-016-FEL
  • Agency: NIA NIH HHS, United States
    Id: P01 AG000538
  • Agency: University of California and Institute for Mexico, International
    Id: CN-16-170
  • Agency: National Institute of Health (NIH), International
    Id: OD010420
  • Agency: FEDER Funds from European Union, International
  • Agency: Alzheimer's Association, International
    Id: AARF-16-440760
  • Agency: National Institute of Health (NIH), International
    Id: AG00538
  • Agency: National Institute of Health (NIH), International
    Id: AG048506
  • Agency: The Larry Hillblom Foundation, International
    Id: 2013-A-016-FEL
  • Agency: BrightFocus Foundation, International
    Id: A2015535S
  • Agency: Institute of Health Carlos III (ISCiii), International
    Id: PI15/00796
  • Agency: Alzheimer's Association, International
    Id: MNIRGD-15-363229
  • Agency: NIA NIH HHS, United States
    Id: R21 AG053740

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RRID:SCR_002798

Statistical analysis software that combines scientific graphing, comprehensive curve fitting (nonlinear regression), understandable statistics, and data organization. Designed for biological research applications in pharmacology, physiology, and other biological fields for data analysis, hypothesis testing, and modeling.

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