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首页> 外文期刊>Oxidative Medicine and Cellular Longevity >Effects of the Aphanizomenon flos-aquae Extract (Klamin®) on a Neurodegeneration Cellular Model
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Effects of the Aphanizomenon flos-aquae Extract (Klamin®) on a Neurodegeneration Cellular Model

机译:Aphanizomenon Flos-Aquae提取物(Klamin®)对神经变性蜂窝模型的影响

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Cyanobacteria have been recognized as a source of bioactive molecules to be employed in nutraceuticals, pharmaceuticals, and functional foods. An extract of Aphanizomenon flos-aquae (AFA), commercialized as Klamin®, was subjected to chemical analysis to determine its compounds. The AFA extract Klamin® resulted to be nontoxic, also at high doses, when administered onto LAN5 neuronal cells. Its scavenging properties against ROS generation were evaluated by using DCFH-DA assay, and its mitochondrial protective role was determined by JC-1 and MitoSOX assays. Klamin® exerts a protective role against beta amyloid- (Aβ-) induced toxicity and against oxidative stress. Anti-inflammatory properties were demonstrated by NFβB nuclear localization and activation of IL-6 and IL-1β inflammatory cytokines through ELISA. Finally, by using thioflavin T (ThT) and fluorimetric measures, we found that Klamin® interferes with Aβ aggregation kinetics, supporting the formation of smaller and nontoxic structures compared to toxic Aβ aggregates alone. Altogether, these data indicate that the AFA extract may play a protective role against mechanisms leading to neurodegeneration.
机译:Cyanobacteria被认为是营养素,药物和功能性食品中使用的生物活性分子的来源。经过商业化作为Klamin®的Aphanizomenon Flos-Aquae(AFA)的提取物,进行化学分析以确定其化合物。当施用到LAN5神经元细胞上时,AFA提取物Klamin®也是高剂量的。通过使用DCFH-DA测定评估其对ROS生成的清除性能,并且其线粒体保护作用由JC-1和Mitosox测定法测定。 Klamin®对β淀粉样蛋白(Aβ-)诱导的毒性和抗氧性应激施加保护作用。通过ELISA通过NFβB核定位和激活IL-6和IL-1β炎性细胞因子的抗炎性能。最后,通过使用硫蛋白T(THT)和荧光措施,我们发现Klamin®干扰Aβ聚集动力学,与单独的毒性Aβ聚集体相比,支持形成较小和无毒结构的形成。总共,这些数据表明AFA提取物可能对导致神经变性的机制起到保护作用。

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