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    Título
    Early Effects of Aβ Oligomers on Dendritic Spine Dynamics and Arborization in Hippocampal Neurons
    Autor(es)
    Ortiz-Sanz, Carolina
    Gaminde-Blasco, Adhara
    Valero , JorgeAutoridad USAL ORCID
    Bakota, Lidia
    Brandt, Roland
    Zugaza, José L.
    Matute, Carlos
    Alberdi, Elena
    Palabras clave
    Alzheimer’s disease
    Aβ oligomers
    CaMKII
    dendrites
    integrin β1
    spines
    Clasificación UNESCO
    6310.03 Enfermedad
    Fecha de publicación
    2020-02-12
    Resumen
    Alzheimer's disease (AD) is a neurodegenerative disorder that leads to impaired memory and cognitive deficits. Spine loss as well as changes in spine morphology correlates with cognitive impairment in this neurological disorder. Many studies in animal models and ex vivo cultures indicate that amyloid β-peptide (Aβ) oligomers induce synaptic damage early during the progression of the disease. Here, in order to determine the events that initiate synaptic alterations, we acutely applied oligomeric Aβ to primary hippocampal neurons and an ex vivo model of organotypic hippocampal cultures from a mouse after targeted expression of EGFP to allow high-resolution imaging and algorithm-based evaluation of spine changes. Dendritic spines were classified as thin, stubby or mushroom, based on morphology. In vivo, time-lapse imaging showed that the three spine types were relatively stable, although their stability significantly decreased after treatment with Aβ oligomers. Unexpectedly, we observed that the density of total dendritic spines increased in organotypic hippocampal slices treated with Aβ compared to control cultures. Specifically, the fraction of stubby spines significantly increased, while mushroom and thin spines remained unaltered. Pharmacological tools revealed that acute Aβ oligomers induced spine changes through mechanisms involving CaMKII and integrin β1 activities. Additionally, analysis of dendritic complexity based on a 3D reconstruction of the whole neuron morphology showed an increase in the apical dendrite length and branching points in CA1 organotypic hippocampal slices treated with Aβ. In contrast to spines, the morphological changes were affected by integrin β1 but not by CaMKII inhibition. Altogether, these data indicate that the Aβ oligomers exhibit early dual effects by acutely enhancing dendritic complexity and spine density.
    URI
    https://hdl.handle.net/10366/154863
    DOI
    10.3389/fnsyn.2020.00002
    Versión del editor
    https://doi.org/10.3389/fnsyn.2020.00002
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    • INCyL. Unidad de Excelencia iBRAINS-IN-CyL [141]
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