Naturally occurring autoantibodies against beta-amyloid: investigating their role in transgenic animal and in vitro models of Alzheimer's disease

天然存在的抗β-淀粉样蛋白自身抗体:研究其在转基因动物和阿尔茨海默病体外模型中的作用

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作者:Richard Dodel, Karthikeyan Balakrishnan, Kathy Keyvani, Oliver Deuster, Frauke Neff, Luminita-Cornelia Andrei-Selmer, Stephan Röskam, Carsten Stüer, Yousef Al-Abed, Carmen Noelker, Monika Balzer-Geldsetzer, Wolfgang Oertel, Yansheng Du, Michael Bacher

Abstract

Alzheimer's disease (AD) is a neurodegenerative disorder primarily affecting regions of the brain responsible for higher cognitive functions. Immunization against β-amyloid (Aβ) in animal models of AD has been shown to be effective on the molecular level but also on the behavioral level. Recently, we reported naturally occurring autoantibodies against Aβ (NAbs-Aβ) being reduced in Alzheimer's disease patients. Here, we further investigated their physiological role: in epitope mapping studies, NAbs-Aβ recognized the mid-/C-terminal end of Aβ and preferentially bound to oligomers but failed to bind to monomers/fibrils. NAbs-Aβ were able to interfere with Aβ peptide toxicity, but NAbs-Aβ did not readily clear senile plaques although early fleecy-like plaques were reduced. Administration of NAbs-Aβ in transgenic mice improved the object location memory significantly, almost reaching performance levels of wild-type control mice. These findings suggest a novel physiological mechanism involving NAbs-Aβ to dispose of proteins or peptides that are prone to forming toxic aggregates.

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