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Chemical Analysis and Effect of Blueberry and Lingonberry Fruits and Leaves against Glutamate-Mediated Excitotoxicity

机译:蓝莓和越橘果实和叶片对谷氨酸介导的兴奋性毒性的化学分析和作用

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Phenolic compounds are a large class of phytochemicals that are widespread in the plant kingdom and known to have antioxidant capacities. This study aimed to determine the antioxidant capacities as well as the content of total soluble phenolics, anthocyanins, tannins, and flavonoids in the fruits and leaves of blueberries and lingonberries growing in Newfoundland. This study also determined the potential neuroprotective effect of extracts from fruits and leaves against glutamate-mediated excitotoxicity, which is believed to contribute to disorders such as stroke and neurodegenerative diseases. Lingonberry and blueberry plants were found to be rich sources of phenolic compounds. Total antioxidant capacities in terms of radical scavenging activity and reducing power were much higher in leaves of both plants as compared to their fruits. These results were in correlation with phenolic contents including total flavonoids; anthocyanins, and tannins. Brain-derived cell cultures from rats were prepared and grown for about 2 weeks. Cell cultures were treated with glutamate (100 μM) for 24 h, and the effect of extracts was determined on cells subjected to this excitotoxicity. Glutamate treatment caused a ~23% cell loss when measured after 24 h of exposure. Whereas lingonberry fruit extract did not provide protection from glutamate toxicity, blueberry fruit extracts were extremely protective. Leaf extracts of both lingonberry and blueberry showed a significant neuroprotective effect. The greater protective effect of leaf extracts was in correlation with the levels of phenolics and antioxidant capacity. These findings suggest that berries or their components may contribute to protecting the brain from various pathologies.
机译:酚类化合物是一大类植物化学物质,广泛存在于植物界,并具有抗氧化能力。这项研究旨在确定纽芬兰生长的蓝莓和越橘的果实和叶片中的抗氧化能力以及总可溶性酚类,花色苷,单宁和类黄酮的含量。这项研究还确定了水果和树叶中的提取物对谷氨酸介导的兴奋性中毒的潜在神经保护作用,据信这可导致中风和神经退行性疾病等疾病。越橘和蓝莓植物被发现是酚类化合物的丰富来源。与它们的果实​​相比,两种植物的叶片在自由基清除活性和还原能力方面的总抗氧化剂能力都高得多。这些结果与包括总黄酮在内的酚含量有关。花青素和单宁酸。制备来自大鼠的脑源性细胞培养物,并使其生长约2周。细胞培养物用谷氨酸(100μM)处理24小时,并确定提取物对遭受这种兴奋性毒性作用的细胞的作用。当在暴露24小时后进行测量时,谷氨酸盐处理导致约23%的细胞损失。越橘果提取物未提供针对谷氨酸毒性的保护作用,而蓝莓果提取物则具有极强的保护作用。越橘和蓝莓的叶提取物均显示出显着的神经保护作用。叶提取物的更大保护作用与酚类和抗氧化能力有关。这些发现表明浆果或其成分可能有助于保护大脑免受各种疾病的侵害。

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