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Artemisia annua Extract Improves the Cognitive Deficits and Reverses the Pathological Changes of Alzheimer’s Disease via Regulating YAP Signaling
Zhou,Wenshu1; Lei,Bingxi1; Yang,Chao1; Silva,Marta1; Xing,Xingan1; Yu,Hua2; Lu,Jiahong2; Zheng,Wenhua1,3
2023-03-01
Source PublicationInternational Journal of Molecular Sciences
ISSN1661-6596
Volume24Issue:6
Abstract

Alzheimer’s disease (AD) is a chronic neurodegenerative disease characterized by the occurrence of cognitive deficits. With no effective treatments available, the search for new effective therapies has become a major focus of interest. In the present study, we describe the potential therapeutic effect of Artemisia annua (A. annua) extract on AD. Nine-month-old female 3xTg AD mice were treated with A. annua extract for three months via oral administration. Animals assigned to WT and model groups were administrated with an equal volume of water for the same period. Treated AD mice significantly improved the cognitive deficits and exhibited reduced Aβ accumulation, hyper-phosphorylation of tau, inflammatory factor release and apoptosis when compared with untreated AD mice. Moreover, A. annua extract promoted the survival and proliferation of neural progenitor cells (NPS) and increased the expression of synaptic proteins. Further assessment of the implicated mechanisms revealed that A. annua extract regulates the YAP signaling pathway in 3xTg AD mice. Further studies comprised the incubation of PC12 cells with Aβ at a concentration of 8 μM with or without different concentrations of A. annua extract for 24 h. Obtained ROS levels, mitochondrial membrane potential, caspase-3 activity, neuronal cell apoptosis and assessment of the signaling pathways involved was performed using western blot and immunofluorescence staining. The obtained results showed that A. annua extract significantly reversed the Aβ-induced increase in ROS levels, caspase-3 activity and neuronal cell apoptosis in vitro. Moreover, either inhibition of the YAP signaling pathway, using a specific inhibitor or CRISPR cas9 knockout of YAP gene, reduced the neuroprotective effect of the A. annua extract. These findings suggest that A. annua extract may be a new multi-target anti-AD drug with potential use in the prevention and treatment of AD.

KeywordAd-type Pathologies Alzheimer’s Disease Artemisia Annua Neuroprotective Effect Yap Signaling Pathway
DOI10.3390/ijms24065259
URLView the original
Indexed BySCIE
Language英語English
WOS Research AreaBiochemistry & Molecular Biology ; Chemistry
WOS SubjectBiochemistry & Molecular Biology ; Chemistry, Multidisciplinary
WOS IDWOS:000958720900001
Scopus ID2-s2.0-85151488353
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Document TypeJournal article
CollectionFaculty of Health Sciences
Institute of Chinese Medical Sciences
DEPARTMENT OF PHARMACEUTICAL SCIENCES
Corresponding AuthorZheng,Wenhua
Affiliation1.Center of Reproduction,Development & Aging and Institute of Translation Medicine,Faculty of Health Sciences,University of Macau,Taipa,999078,Macao
2.State Key Laboratory of Quality Research in Chinese Medicine,Institute of Chinese Medical Sciences,University of Macau,Taipa,999078,Macao
3.Zhuhai UM Science & Technology Research Institute,Zhuhai,519000,China
First Author AffilicationFaculty of Health Sciences
Corresponding Author AffilicationFaculty of Health Sciences
Recommended Citation
GB/T 7714
Zhou,Wenshu,Lei,Bingxi,Yang,Chao,et al. Artemisia annua Extract Improves the Cognitive Deficits and Reverses the Pathological Changes of Alzheimer’s Disease via Regulating YAP Signaling[J]. International Journal of Molecular Sciences, 2023, 24(6).
APA Zhou,Wenshu., Lei,Bingxi., Yang,Chao., Silva,Marta., Xing,Xingan., Yu,Hua., Lu,Jiahong., & Zheng,Wenhua (2023). Artemisia annua Extract Improves the Cognitive Deficits and Reverses the Pathological Changes of Alzheimer’s Disease via Regulating YAP Signaling. International Journal of Molecular Sciences, 24(6).
MLA Zhou,Wenshu,et al."Artemisia annua Extract Improves the Cognitive Deficits and Reverses the Pathological Changes of Alzheimer’s Disease via Regulating YAP Signaling".International Journal of Molecular Sciences 24.6(2023).
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