Seed-induced Aβ deposition alters neuronal function and impairs olfaction in a mouse model of Alzheimer’s disease

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作者
Stephanie Ziegler-Waldkirch
Marina Friesen
Desirée Loreth
Jonas-Frederic Sauer
Solveig Kemna
Alexandra Hilse
Daniel Erny
Christina Helm
Paolo d´Errico
Marco Prinz
Marlene Bartos
Melanie Meyer-Luehmann
机构
[1] Medical Center – University of Freiburg,Department of Neurology
[2] University of Freiburg,Faculty of Medicine
[3] University of Freiburg,Faculty of Biology
[4] University Medical Center Hamburg-Eppendorf,Institute of Cellular and Integrative Physiology
[5] University of Freiburg,Institute for Physiology I, Systemic and Cellular Neurophysiology
[6] University of Freiburg,Institute of Neuropathology
[7] University of Freiburg,Berta
[8] Faculty of Medicine University of Freiburg,Ottenstein
[9] University of Freiburg,Programme, Faculty of Medicine
来源
Molecular Psychiatry | 2022年 / 27卷
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摘要
Alzheimer’s disease (AD) is characterized by the accumulation of amyloid-β (Aβ) which ultimately forms plaques. These Aβ deposits can be induced in APP transgenic mouse models by prion-like seeding. It has been widely accepted that anosmia and hyposmia occur during the early stages of AD, even before cognitive deficits are present. In order to determine the impact of seed-induced Aβ deposits on olfaction, we performed intracerebral injections of seed-competent brain homogenate into the olfactory bulb of young pre-depositing APP transgenic mice. Remarkably, we observed a dramatic olfactory impairment in those mice. Furthermore, the number of newborn neurons as well as the activity of cells in the mitral cell layer was decreased. Notably, exposure to an enriched environment reduced Aβ seeding, vivified neurogenesis and most importantly reversed olfactory deficits. Based on our findings, we conclude that altered neuronal function as a result of induced Aβ pathology might contribute to olfactory dysfunction in AD.
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页码:4274 / 4284
页数:10
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