| Literature DB >> 23998637 |
Claudio Canale1, Silvia Seghezza, Silvia Vilasi, Rita Carrotta, Donatella Bulone, Alberto Diaspro, Pier Luigi San Biagio, Silvia Dante.
Abstract
Beta-amyloid (1-40) is one of the two most abundant species of amyloid-beta peptides present as fibrils in the extracellular senile plaques in the brain of Alzheimer's patients. Recently, the molecular aggregates constituting the early stage of fibril formation, i.e., oligomers and protofibrils, have been investigated as the main responsible for amyloid-beta cytotoxic effect. The molecular mechanism leading to neurodegeneration is still under debate, and it is common opinion that it may reside in the interaction between amyloid species and the neural membrane. In this investigation Atomic Force Microscopy and spectroscopy have been used to understand how structural (and mechanical) properties of POPC/POPS lipid bilayers, simulating the phospholipid composition and negative net charge of neuritic cell membranes, are influenced by the interaction with Aβ(1-40), in different stages of the peptide aggregation. Substantial differences in the damage caused to the lipid bilayers have been observed, confirming the toxic effect exerted especially by Aβ(1-40) prefibrillar oligomers.Entities:
Keywords: Aβ toxicity; Force spectroscopy; In liquid AFM; Supported lipid bilayers
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Year: 2013 PMID: 23998637 DOI: 10.1016/j.bpc.2013.07.010
Source DB: PubMed Journal: Biophys Chem ISSN: 0301-4622 Impact factor: 2.352