دورية أكاديمية

Honokiol Alleviates Cognitive Deficits of Alzheimer's Disease (PS1V97L) Transgenic Mice by Activating Mitochondrial SIRT3.

التفاصيل البيبلوغرافية
العنوان: Honokiol Alleviates Cognitive Deficits of Alzheimer's Disease (PS1V97L) Transgenic Mice by Activating Mitochondrial SIRT3.
المؤلفون: Li, Haitao, Hou, Tingting, Tian,, Yuanruhua, Wang, Xiu, Jia, Jianping, Wang, Wei, Xu, Lingzhi, Wei, Yiping, Wu, Qiaoqi
المصدر: Journal of Alzheimer's Disease; 2018, Vol. 64 Issue 1, p291-302, 12p
مصطلحات موضوعية: COGNITION disorders, TRANSGENIC mice, ALZHEIMER'S disease, AMYLOID beta-protein, MITOCHONDRIA, ENZYME inhibitors, LIGNANS, BIPHENYL compounds, ANIMAL experimentation, APOPTOSIS, BIOLOGICAL models, BIOLOGICAL transport, CELL culture, COMPARATIVE studies, HIPPOCAMPUS (Brain), RESEARCH methodology, MEDICAL cooperation, MEMBRANE proteins, MICE, NEURONS, NUCLEOTIDES, PEPTIDES, RATS, RESEARCH, TRANSFERASES, EMBRYOS, OXIDATIVE stress, EVALUATION research, DISEASE complications, THERAPEUTICS
مستخلص: Accumulating evidence has demonstrated that mitochondrial dysfunction is a prominent early event in the progression of Alzheimer's disease (AD). Whether protecting mitochondrial function can reduce amyloid-β oligomer (AβO)-induced neurotoxicity in PS1V97L transgenic mice remains unknown. In this study, we examined the possible protective effects of honokiol (HKL) on mitochondrial dysfunction induced by AβOs in neurons, and cognitive function in AD PS1V97Ltransgenic mice. We determined that HKL increased mitochondrial sirtuin 3 (SIRT3) expression levels and activity, which in turn markedly improved ATP production and weakened mitochondrial reactive oxygen species production. We demonstrated that the enhanced energy metabolism and attenuated oxidative stress of HKL restores AβO-mediated mitochondrial dysfunction in vitro and in vivo. Consequently, memory deficits in the PS1V97L transgenic mice were rescued by HKL in the early stages. These results suggest that HKL has therapeutic potential for delaying the onset of AD symptoms by alleviating mitochondrial impairment and increasing hyperactivation of SIRT3 in the pathogenesis of preclinical AD. [ABSTRACT FROM AUTHOR]
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قاعدة البيانات: Complementary Index
الوصف
تدمد:13872877
DOI:10.3233/JAD-180126