Fibrillar amyloid deposition leads to local synaptic abnormalities and breakage of neuronal branches
Top Cited Papers
- 10 October 2004
- journal article
- research article
- Published by Springer Nature in Nature Neuroscience
- Vol. 7 (11) , 1181-1183
- https://doi.org/10.1038/nn1335
Abstract
Amyloid plaques are a hallmark of Alzheimer disease, but their importance in its pathogenesis is controversial. By neuronal labeling and transcranial two-photon imaging, we show in a transgenic mouse model of Alzheimer disease that dendrites passing through or near fibrillar amyloid deposits undergo spine loss and shaft atrophy, and nearby axons develop large varicosities, together leading to neurite breakage and large-scale, permanent disruption of neuronal connections. Thus, fibrillar amyloid deposition is more detrimental to neuronal circuitry than previously thought, underscoring the importance of prevention and early clearance of plaques.Keywords
This publication has 15 references indexed in Scilit:
- Toxicity of Amyloid β Peptide: Tales of Calcium, Mitochondria, and Oxidative StressNeurochemical Research, 2004
- Neuronal and glial calcium signaling in Alzheimer’s diseaseCell Calcium, 2003
- Amyloid-β immunotherapy for Alzheimer's disease: the end of the beginningNature Reviews Neuroscience, 2002
- The Amyloid Hypothesis of Alzheimer's Disease: Progress and Problems on the Road to TherapeuticsScience, 2002
- Targeting small Aβ oligomers: the solution to an Alzheimer's disease conundrum?Trends in Neurosciences, 2001
- The Pathogenesis of Alzheimer Disease: An Alternative to the Amyloid HypothesisJournal of Neuropathology and Experimental Neurology, 1996
- Re-Evaluation of the Structural Organization of Neuritic Plaques in Alzheimerʼs DiseaseJournal of Neuropathology and Experimental Neurology, 1993
- Immunoelectron microscopic study of synaptic pathology in Alzheimer's diseaseActa Neuropathologica, 1991
- Two-Photon Laser Scanning Fluorescence MicroscopyScience, 1990
- Dendritic sprouting in Alzheimer's presenile dementiaExperimental Neurology, 1978