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Evaluation of therapeutic effects of tetramethylpyrazine nitrone in Alzheimer’s disease mouse model and proteomics analysis
Xinhua Zhou1,2,3; Kaipeng Huang3; Yuqiang Wang1,4; Zaijun Zhang4; Yingying Liu5; Qinghua Hou6; Xifei Yang7; Maggie Pui Man Hoi2,8
2023-03-06
Source PublicationFrontiers in Pharmacology
ISSN1663-9812
Volume14Pages:1082602
Abstract

The pathophysiology of Alzheimer’s disease (AD) is multifactorial with characteristic extracellular accumulation of amyloid-beta (Aβ) and intraneuronal aggregation of hyperphosphorylated tau in the brain. Development of disease-modifying treatment for AD has been challenging. Recent studies suggest that deleterious alterations in neurovascular cells happens in parallel with Aβ accumulation, inducing tau pathology and necroptosis. Therefore, therapies targeting cellular Aβ and tau pathologies may provide a more effective strategy of disease intervention. Tetramethylpyrazine nitrone (TBN) is a nitrone derivative of tetramethylpyrazine, an active ingredient from Ligusticum wallichii Franchat (Chuanxiong). We previously showed that TBN is a potent scavenger of free radicals with multi-targeted neuroprotective effects in rat and monkey models of ischemic stroke. The present study aimed to investigate the anti-AD properties of TBN. We employed AD-related cellular model (N2a/APPswe) and transgenic mouse model (3×Tg-AD mouse) for mechanistic and behavioral studies. Our results showed that TBN markedly improved cognitive functions and reduced Aβ and hyperphosphorylated tau levels in mouse model. Further investigation of the underlying mechanisms revealed that TBN promoted non-amyloidogenic processing pathway of amyloid precursor protein (APP) in N2a/APPswe in vitro. Moreover, TBN preserved synapses from dendritic spine loss and upregulated synaptic protein expressions in 3×Tg-AD mice. Proteomic analysis of 3×Tg-AD mouse hippocampal and cortical tissues showed that TBN induced neuroprotective effects through modulating mitophagy, MAPK and mTOR pathways. In particular, TBN significantly upregulated PINK1, a key protein for mitochondrial homeostasis, implicating PINK1 as a potential therapeutic target for AD. In summary, TBN improved cognitive functions in AD-related mouse model, inhibited Aβ production and tau hyperphosphorylation, and rescued synaptic loss and neuronal damage. Multiple mechanisms underlie the anti-AD effects of TBN including the modulation of APP processing, mTOR signaling and PINK1-related mitophagy.

KeywordAlhzheimer Disease Amyloid Beta Pink1 Proteomic Analysis Tetramethylpyrazine Nitrone
DOI10.3389/fphar.2023.1082602
URLView the original
Indexed BySCIE
Language英語English
WOS Research AreaPharmacology & Pharmacy
WOS SubjectPharmacology & Pharmacy
WOS IDWOS:000954467200001
PublisherFRONTIERS MEDIA SAAVENUE DU TRIBUNAL FEDERAL 34, LAUSANNE CH-1015, SWITZERLAND
Scopus ID2-s2.0-85150478197
Fulltext Access
Citation statistics
Document TypeJournal article
CollectionFaculty of Health Sciences
Institute of Chinese Medical Sciences
THE STATE KEY LABORATORY OF QUALITY RESEARCH IN CHINESE MEDICINE (UNIVERSITY OF MACAU)
Corresponding AuthorQinghua Hou; Xifei Yang; Maggie Pui Man Hoi
Affiliation1.Department of Neurology and Stroke Center,Jinan University College of Pharmacy,The First Affiliated Hospital of Jinan University and Institute of New Drug Research,Guangzhou,China
2.State Key Laboratory of Quality Research in Chinese Medicine,Institute of Chinse Medical Sciences,University of Macau,Macao
3.Institute of GCP,Guangzhou Eighth People’s Hospital Guangzhou Medical University,Guangzhou,China
4.Guangdong Province Key Laboratory of Pharmacodynamic,College of Pharmacy,Institute of New Drug Research,Constituents of Traditional Chinese Medicine & New Drug Research,Jinan University,Guangdong,China
5.Department of Neurology,Daqing People’s Hospital,Daqing,China
6.Department of Neurology,Clinical Neuroscience Center,the 7th Affiliated Hospital,Sun-Yat-sen University,Shenzhen,China
7.Key Laboratory of Modern Toxicology of Shenzhen,Shenzhen Center for Disease Control and Prevention,Shenzhen,China
8.DPS,Faculty of Health Sciences,University of Macau,Macao
First Author AffilicationUniversity of Macau
Corresponding Author AffilicationUniversity of Macau;  Faculty of Health Sciences
Recommended Citation
GB/T 7714
Xinhua Zhou,Kaipeng Huang,Yuqiang Wang,et al. Evaluation of therapeutic effects of tetramethylpyrazine nitrone in Alzheimer’s disease mouse model and proteomics analysis[J]. Frontiers in Pharmacology, 2023, 14, 1082602.
APA Xinhua Zhou., Kaipeng Huang., Yuqiang Wang., Zaijun Zhang., Yingying Liu., Qinghua Hou., Xifei Yang., & Maggie Pui Man Hoi (2023). Evaluation of therapeutic effects of tetramethylpyrazine nitrone in Alzheimer’s disease mouse model and proteomics analysis. Frontiers in Pharmacology, 14, 1082602.
MLA Xinhua Zhou,et al."Evaluation of therapeutic effects of tetramethylpyrazine nitrone in Alzheimer’s disease mouse model and proteomics analysis".Frontiers in Pharmacology 14(2023):1082602.
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