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The Co-oligomers of Aβ42 and Human Islet Amyloid Polypeptide Exacerbate Neurotoxicity and Alzheimer-like Pathology at Cellular Level.

Authors :
Deng, Jiajun
Liu, Bin
Tao, Qian
Luo, Yanyu
Zhu, Yi
Huang, Xinxin
Yue, Feng
Source :
Neuroscience. May2024, Vol. 547, p37-55. 19p.
Publication Year :
2024

Abstract

• Aβ42-hIAPP co-oligomers show 2.3–3.5 times higher toxicity than AβO. • Increased apoptosis in glutamatergic neurons exposed to Aβ42-hIAPP. • Aβ42-hIAPP co-oligomers induce more severe AD pathology than AβO. • Novel insights into AD pathogenesis, implicating hIAPP in AD pathology. • Potential for constructing animal models to study Alzheimer's disease. The Aβ hypothesis has long been central to Alzheimer's disease (AD) theory, with a recent surge in attention following drug approvals targeting Aβ plaque clearance. Aβ42 oligomers (AβO) are key neurotoxins. While β-amyloid (Aβ) buildup is a hallmark of AD, postmortem brain analyses have unveiled human islet amyloid polypeptide (hIAPP) deposition in AD patients, suggesting a potential role in Alzheimer's pathology. This study investigates the neurotoxic effects of co-aggregates of Aβ42 and hIAPP, specifically focusing on their impact on cell survival, apoptosis, and AD-like pathology. We analyzed and compared the impact of AβO and Aβ42-hIAPP on cell survival in SH-SY5Y cells, apoptosis and inducing AD-like pathology in glutamatergic neurons. Aβ42-hIAPP co-oligomers exhibited significantly greater toxicity, causing 2.3–3.5 times higher cell death compared to AβO alone. Furthermore, apoptosis rates were significantly exacerbated in glutamatergic neurons when exposed to Aβ42-hIAPP co-oligomers. The study also revealed that Aβ42-hIAPP co-oligomers induced typical AD-like pathology in glutamatergic neurons, including the presence of Aβ deposits (detected by 6E10 and 4G8 immunofluorescence) and alterations in tau protein (changes in total tau HT7, phosphorylated tau AT8, AT180). Notably, Aβ42-hIAPP co-oligomers induced a more severe AD pathology compared to AβO alone. These findings provide compelling evidence for the heightened toxicity of Aβ42-hIAPP co-oligomers on neurons and their role in exacerbating AD pathology. The study contributes novel insights into the pathogenesis of Alzheimer's disease, highlighting the potential involvement of hIAPP in AD pathology. Together, these findings offer novel insights into AD pathogenesis and routes for constructing animal models. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
03064522
Volume :
547
Database :
Academic Search Index
Journal :
Neuroscience
Publication Type :
Academic Journal
Accession number :
177536891
Full Text :
https://doi.org/10.1016/j.neuroscience.2024.04.002