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首页> 外文期刊>Molecular Neurobiology >Silencing of Long Noncoding RNA SOX21-AS1 Relieves Neuronal Oxidative Stress Injury in Mice with Alzheimer's Disease by Upregulating FZD3/5 via the Wnt Signaling Pathway
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Silencing of Long Noncoding RNA SOX21-AS1 Relieves Neuronal Oxidative Stress Injury in Mice with Alzheimer's Disease by Upregulating FZD3/5 via the Wnt Signaling Pathway

机译:通过WNT信号通路上调FZD3 / 5,沉默长的非分量RNA SOX21-AS1减轻了与阿尔茨海默病的小鼠中的神经元氧化应激损伤

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Alzheimer's disease (AD) represents a progressive neurodegenerative disorder characterized by distinctive neuropathological changes. Recently, long noncoding RNAs (lncRNAs) have become a key area of interest due to their potential in AD therapy. Hence, the aim of the current study was to investigate the effect of lncRNA SOX21-AS1 on neuronal oxidative stress injury in mice with AD via the Wnt signaling pathway by targeting FZD3/5. Microarray analysis was performed to screen AD-related differentially expressed genes (DEGs). Following verification of the target relationship between SOX21-AS1 and FZD3/5, the contents of OH-, malondialdehyde (MDA), superoxide dismutase (SOD), catalase (CAT), and glutathione peroxidase (GSH-Px) were determined, with the expressions of SOX21-AS1, FZD3/5, -catenin, cyclin D1, and 4-HNE in hippocampal neuron cells subsequently detected. Cell cycle distribution and apoptosis were evaluated. Bioinformatics analysis revealed that SOX21-AS1 was upregulated in AD, while highlighting the co-expression of SOX21-AS1 and FZD3/5 genes and their involvement in the Wnt signaling pathway. AD mice exhibited diminished memory and learning ability, increased rates of MDA, OH-, SOX21-AS1, 4-HNE, and elevated levels of hippocampal neuron cell apoptosis, accompanied by decreased levels of SOD, CAT, GSH-Px, FZD3/5, -catenin, and cyclin D1. Silencing of SOX21-AS1 resulted in decreased OH-, MDA contents, SOX21-AS1, and 4-HNE, and increased SOD, CAT, GSH-Px, FZD3/5, -catenin, and cyclin D1, as well as reduced apoptosis of hippocampal neuron cells. Taken together, the key findings of the present study demonstrated that silencing of lncRNA SOX21-AS1 could act to alleviate neuronal oxidative stress and suppress neuronal apoptosis in AD mice through the upregulation of FZD3/5 and subsequent activation of the Wnt signaling pathway.
机译:阿尔茨海默病(AD)代表了一种渐进神经退行性疾病,其特征是具有独特的神经病理学变化。最近,由于其在AD治疗中的潜力,Long Noncoding RNA(LNCRNA)已成为感兴趣的关键领域。因此,目前研究的目的是通过靶向FZD3 / 5来研究LNCRNA SOX21-AS1对通过WNT信号传导途径的小鼠神经元氧化应激损伤的影响。进行微阵列分析以筛选筛选与差异表达基因(DEG)。在核实SOX21-AS1和FZD3 / 5之间的靶向关系之后,确定OH-,丙二醛(MDA),超氧化物歧化酶(SOD),过氧化氢酶(CAT)和谷胱甘肽过氧化物酶(GSH-PX)的含量。随后检测到海马神经元细胞中SOX21-AS1,FZD3 / 5,-Catenin,Cyclin D1和4-HNE的表达。评估细胞周期分布和细胞凋亡。生物信息学分析显示,SOX21-AS1在AD中上调,同时突出了SOX21-AS1和FZD3 / 5基因的共表达及其参与WNT信号通路。广告鼠标表现出减少的记忆和学习能力,MDA,OH-,SOX21-AS1,4-HNE和海马神经元细胞凋亡的升高,伴随着SOD,CAT,GSH-PX,FZD3 / 5水平的升高。 ,-catenin和cyclin d1。 SOX21-AS1的沉默导致OH-,MDA含量,SOX21-AS1和4-HNE减少,SOD,CAT,GSH-PX,FZD3 / 5,-Catenin和细胞周期蛋白D1增加,以及降低的凋亡海马神经元细胞。本研究的关键发现表明,LNCRNA SOX21-AS1的沉默可以通过FZD3 / 5的上调和随后的WNT信号通路激活来减轻神经元氧化应激并抑制AD小鼠中的神经元凋亡。

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