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Donepezil Regulates LPS and Aβ-Stimulated Neuroinflammation through MAPK/NLRP3 Inflammasome/STAT3 Signaling

Title
Donepezil Regulates LPS and Aβ-Stimulated Neuroinflammation through MAPK/NLRP3 Inflammasome/STAT3 Signaling
Author(s)
Kim, JieunLee, Hyun-juPark, Seon KyeongPark, Jin-HeeJeong, Ha-RamLee, SoojungLee, HeeyongSeol, EunyoungHoe, Hyang-Sook
DGIST Authors
Kim, JieunLee, Hyun-juPark, Seon KyeongPark, Jin-HeeJeong, Ha-RamLee, SoojungLee, HeeyongSeol, EunyoungHoe, Hyang-Sook
Issued Date
2021-10
Type
Article
Author Keywords
AstrocytedonepezilMicrogliaNLRP3 inflammasomeRivastigmineROSSTAT3
Keywords
NF-KAPPA-BMITOCHONDRIAL DYSFUNCTIONINFLAMMATORY RESPONSEACETYLCHOLINESTERASE INHIBITORAMYLOID-BETALINKLIPOPOLYSACCHARIDEINTERLEUKIN-1-BETARIVASTIGMINEACTIVATION
ISSN
1661-6596
Abstract
The acetylcholinesterase inhibitors donepezil and rivastigmine have been used as therapeutic drugs for Alzheimer’s disease (AD), but their effects on LPS-and Aβ-induced neuroinflam-matory responses and the underlying molecular pathways have not been studied in detail in vitro and in vivo. In the present study, we found that 10 or 50 μM donepezil significantly decreased the LPS-induced increases in the mRNA levels of a number of proinflammatory cytokines in BV2 mi-croglial cells, whereas 50 μM rivastigmine significantly diminished only LPS-stimulated IL-6 mRNA levels. In subsequent experiments in primary astrocytes, donepezil suppressed only LPS-stimulated iNOS mRNA levels. To identify the molecular mechanisms by which donepezil regulates LPS-induced neuroinflammation, we examined whether donepezil alters LPS-stimulated proin-flammatory responses by modulating LPS-induced downstream signaling and the NLRP3 inflam-masome. Importantly, we found that donepezil suppressed LPS-induced AKT/MAPK signaling, the NLRP3 inflammasome, and transcription factor NF-kB/STAT3 phosphorylation to reduce neuroin-flammatory responses. In LPS-treated wild-type mice, a model of neuroinflammatory disease, donepezil significantly attenuated LPS-induced microglial activation, microglial density/morphol-ogy, and proinflammatory cytokine COX-2 and IL-6 levels. In a mouse model of AD (5xFAD mice), donepezil significantly reduced Aβ-induced microglial and astrocytic activation, density, and mor-phology. Taken together, our findings indicate that donepezil significantly downregulates LPS-and Aβ-evoked neuroinflammatory responses in vitro and in vivo and may be a therapeutic agent for neuroinflammation-associated diseases such as AD. © 2021 by the authors. Licensee MDPI, Basel, Switzerland.
URI
http://hdl.handle.net/20.500.11750/15606
DOI
10.3390/ijms221910637
Publisher
Multidisciplinary Digital Publishing Institute (MDPI)
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Appears in Collections:
ETC 1. Journal Articles

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