Multiple events lead to dendritic spine loss in triple transgenic Alzheimer's disease mice Medizin - Open Access LMU - Teil 16/22

    • Bildung

The pathology of Alzheimer's disease (AD) is characterized by the accumulation of amyloid-β (Aβ) peptide, hyperphosphorylated tau protein, neuronal death, and synaptic loss. By means of long-term two-photon in vivo imaging and confocal imaging, we characterized the spatio-temporal pattern of dendritic spine loss for the first time in 3xTg-AD mice. These mice exhibit an early loss of layer III neurons at 4 months of age, at a time when only soluble Aβ is abundant. Later on, dendritic spines are lost around amyloid plaques once they appear at 13 months of age. At the same age, we observed spine loss also in areas apart from amyloid plaques. This plaque independent spine loss manifests exclusively at dystrophic dendrites that accumulate both soluble Aβ and hyperphosphorylated tau intracellularly. Collectively, our data shows that three spatio-temporally independent events contribute to a net loss of dendritic spines. These events coincided either with the occurrence of intracellular soluble or extracellular fibrillar Aβ alone, or the combination of intracellular soluble Aβ and hyperphosphorylated tau.

The pathology of Alzheimer's disease (AD) is characterized by the accumulation of amyloid-β (Aβ) peptide, hyperphosphorylated tau protein, neuronal death, and synaptic loss. By means of long-term two-photon in vivo imaging and confocal imaging, we characterized the spatio-temporal pattern of dendritic spine loss for the first time in 3xTg-AD mice. These mice exhibit an early loss of layer III neurons at 4 months of age, at a time when only soluble Aβ is abundant. Later on, dendritic spines are lost around amyloid plaques once they appear at 13 months of age. At the same age, we observed spine loss also in areas apart from amyloid plaques. This plaque independent spine loss manifests exclusively at dystrophic dendrites that accumulate both soluble Aβ and hyperphosphorylated tau intracellularly. Collectively, our data shows that three spatio-temporally independent events contribute to a net loss of dendritic spines. These events coincided either with the occurrence of intracellular soluble or extracellular fibrillar Aβ alone, or the combination of intracellular soluble Aβ and hyperphosphorylated tau.

Top‑Podcasts in Bildung

Margrit Stamm Education to go
Margrit Stamm & Dominic Dillier
Eine Stunde History - Deutschlandfunk Nova
Deutschlandfunk Nova
G Spot - mit Stefanie Giesinger
Stefanie Giesinger & Studio Bummens
The Mel Robbins Podcast
Mel Robbins
Easy German: Learn German with native speakers | Deutsch lernen mit Muttersprachlern
Cari, Manuel und das Team von Easy German
TED Talks Daily
TED

Mehr von Ludwig-Maximilians-Universität München

Medizin - Open Access LMU - Teil 05/22
Ludwig-Maximilians-Universität München
LMU Grundkurs Strafrecht I (L-Z) WS 2017/18
Prof. Dr. Helmut Satzger
LMU Fakultät für Philosophie, Wissenschaftstheorie und Religionswissenschaft - Vorlesungen und Vorträge
Professoren der Fakultät für Philosophie, Wissenschaftstheorie und Religionswissenschaft
Theoriegeschichte der Kommunikationswissenschaft
Prof. Dr. Michael Meyen
LMU Erbrecht - Lehrstuhl für Bürgerliches Recht, Internationales Privatrecht und Rechtsvergleichung
Professor Dr. Stephan Lorenz
Der Mensch und sein Gehirn - Ringvorlesung (WiSe 2010-2011)
Ludwig-Maximilians-Universität München