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LW-AFC Effects on N-glycan Profile in Senescence-Accelerated Mouse Prone 8 Strain a Mouse Model of Alzheimer’s Disease

机译:LW-AFC对衰老加速小鼠易感8株(阿尔茨海默氏病小鼠模型)中N-聚糖谱的影响

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摘要

Glycosylation is one of the most common eukaryotic post-translational modifications, and aberrant glycosylation has been linked to many diseases. However, glycosylation and glycome analysis is a significantly challenging task. Although several lines of evidence have indicated that protein glycosylation is defective in Alzheimer’s disease (AD), only a few studies have focused on AD glycomics. The etiology of AD is unclear and there are no effective disease-modifying treatments for AD. In this study, we found that the object recognition memory, passive avoidance, and spatial learning and memory of senescence-accelerated mouse prone 8 (SAMP8) strain, an AD animal model, were deficient, and LW-AFC, which was prepared from the traditional Chinese medicine prescription Liuwei Dihuang decoction, showed beneficial effects on the deterioration of cognitive capability in SAMP8 mice. Forty-three and 56 N-glycan were identified in the cerebral cortex and serum of SAMP8 mice, respectively. The N-glycan profile in SAMP8 mice was significantly different from that of senescence accelerated mouse resistant 1 (SAMR1) strains, the control of SAMP8 mice. Treatment with LW-AFC modulated the abundance of 21 and 6 N-glycan in the cerebral cortex and serum of SAMP8 mice, respectively. The abundance of (Hex)3(HexNAc)5(Fuc)1(Neu5Ac)1 and (Hex)2(HexNAc)4 decreased in the cerebral cortex and serum of SAMP8 mice compared with SAMR1 mice, decreases that were significantly correlated with learning and memory measures. The administration of LW-AFC could reverse or increase these levels in SAMP8 mice. These results indicated that the effects of LW-AFC on cognitive impairments in SAMP8 mice might be through modulation of N-glycan patterns, and LW-AFC may be a potential anti-AD agent.
机译:糖基化是最常见的真核翻译后修饰之一,异常糖基化已与许多疾病相关。但是,糖基化和糖组分析是一项具有挑战性的任务。尽管有几条证据表明蛋白质糖基化在阿尔茨海默氏病(AD)中存在缺陷,但只有少数研究集中在AD糖组学上。 AD的病因尚不清楚,目前尚无有效的缓解AD疾病的疗法。在这项研究中,我们发现AD动物模型的衰老加速小鼠易感8(SAMP8)品系的对象识别记忆,被动回避和空间学习与记忆不足,并且是由动物模型制备的LW-AFC中药六味地黄汤对SAMP8小鼠认知能力下降具有有益作用。在SAMP8小鼠的大脑皮层和血清中分别鉴定出43个N-聚糖和56个N-聚糖。 SAMP8小鼠中的N-聚糖谱与衰老加速小鼠抗性1(SAMR1)株(SAMP8小鼠的对照)显着不同。 LW-AFC处理分别调节了SAMP8小鼠的大脑皮层和血清中21 N和6 N-聚糖的丰度。与SAMR1小鼠相比,SAMP8小鼠的大脑皮质和血清中(Hex)3(HexNAc)5(Fuc)1(Neu5Ac)1和(Hex)2(HexNAc)4的丰度降低,与学习显着相关和记忆措施。 LW-AFC的给药可以逆转或增加SAMP8小鼠的这些水平。这些结果表明,LW-AFC对SAMP8小鼠认知障碍的影响可能是通过调节N-聚糖模式,而LW-AFC可能是潜在的抗AD药物。

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