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Updated: Jun 21, 2026

Preparation of Oligomeric β-amyloid1-42 and Induction of Synaptic Plasticity Impairment on Hippocampal Slices
Published on: July 14, 2010
Synaptic targeting by A beta oligomers (ADDLS) as a basis for memory loss in early Alzheimer's disease
1Department of Neurobiology & Physiology, Cognitive Neurology and Alzehimer's Disease Center, Northwestern University Institute for Neuroscience, Northwestern University, Evanston, IL 60208, USA.
Abstract:
Early diagnosis and treatment of Alzheimer's Disease (AD) ultimately will require identification of its pathogenic mechanism. Such a mechanism must explain the hallmark of early AD--a profound inability to form new memories. For many years, the most promising hypothesis maintained that memory failure derived from neuron death induced by insoluble deposits of amyloid fibrils. Newer findings, however, suggest that memory loss, especially in early AD, may be a failure in synaptic plasticity caused by small soluble A beta oligomers ("ADDLs"). ADDLs are neurologically potent toxins that rapidly inhibit long-term potentiation and reversal of long-term depression, classic paradigms for learning and memory. In human samples, ADDLs show striking increases in AD brain and CSF. The ADDL hypothesis is considerably reinforced by nerve cell biology studies showing that ADDLs specifically attack synapses, essentially acting as gain-of-function pathogenic ligands. Selective damage by ADDLs to memory-linked synaptic mechanisms provides an appealing explanation for early AD memory loss and suggests that ADDLs provide a valid target for therapeutics and diagnostics.
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