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Published on: October 30, 2018
Olanzapine attenuates amyloid-β-induced microglia-mediated progressive neurite lesions
Anjila Dongol1, Yuanyi Xie1, Peng Zheng1
1School of Medical, Indigenous and Health Sciences, University of Wollongong, Wollongong, Northfields Avenue, NSW 2522, Australia.
Abstract:
The accumulation of amyloid-β (Aβ) in the brain is the first pathological mechanism to initiate Alzheimer's disease (AD) pathogenesis. However, the precise role of Aβ in the disease progression remains unclear. Through decades of research, prolonged inflammation has emerged as an important core pathology in AD. Previously, a study has demonstrated the neurotoxic effect of Aβ-induced neuroinflammation in neuron-glia co-culture at 72 h. Here, we hypothesise that initial stage Aβ may trigger microglial inflammation, synergistically contributing to the progression of neurite lesions relevant to AD progression. In the present study, we aimed to determine whether olanzapine, an antipsychotic drug possessing anti-inflammatory properties, can ameliorate Aβ-induced progressive neurite lesions. Our study reports that Aβ induces neurite lesions with or without inflammatory microglial cells in vitro. More intriguingly, the present study revealed that Aβ exacerbates neurite lesions in synergy with microglia. Moreover, the time course study revealed that Aβ promotes microglia-mediated neurite lesions by eliciting the secretion of pro-inflammatory cytokines. Furthermore, our study shows that olanzapine at lower doses prevents Aβ-induced microglia-mediated progressive neurite lesions. The increase in pro-inflammatory cytokines induced by Aβ is attenuated by olanzapine administration, associated with a reduction in microglial inflammation. Finally, this study reports that microglial senescence induced by Aβ was rescued by olanzapine. Thus, our study provides the first evidence that 1 µM to 5 µM of olanzapine can effectively prevent Aβ-induced microglia-mediated progressive neurite lesions by modulating microglial inflammation. These observations reinforce the potential of targeting microglial remodelling to slow disease progression in AD.
Insights
Amyloid-beta (Aβ) accelerates Alzheimer
Area of Science:
- Neuroscience
- Pathology
- Pharmacology
Background:
- Amyloid-beta (Aβ) accumulation initiates Alzheimer's disease (AD) pathogenesis, but its role in disease progression is unclear.
- Neuroinflammation is a key pathological feature of AD.
- Previous research indicated Aβ-induced neuroinflammation can be toxic to neurons.
Purpose of the Study:
- To investigate if initial Aβ triggers microglial inflammation, contributing to neurite lesions in AD.
- To determine if olanzapine, an antipsychotic with anti-inflammatory properties, can reduce Aβ-induced neurite lesions.
Main Methods:
- In vitro neuron-glia co-culture models were used to study Aβ effects.
- Time-course analysis assessed Aβ-induced changes and microglial responses.
- The impact of olanzapine on Aβ-induced lesions, cytokine secretion, and microglial senescence was evaluated.
Main Results:
- Aβ alone induced neurite lesions, which were significantly exacerbated by microglia.
- Aβ stimulated microglia to secrete pro-inflammatory cytokines, worsening neurite lesions over time.
- Low doses of olanzapine (1-5 µM) prevented Aβ-induced microglia-mediated neurite lesions and microglial inflammation, and rescued microglial senescence.
Conclusions:
- Aβ synergizes with microglia to drive progressive neurite lesions in AD models.
- Olanzapine effectively mitigates Aβ-induced neuroinflammation and neurite damage by modulating microglial activity.
- Targeting microglial remodelling with drugs like olanzapine shows promise for slowing AD progression.

