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Chemical Composition Antioxidant and Antimicrobial Activity of Raspberry Blackberry and Raspberry-Blackberry Hybrid Leaf Buds

机译:覆盆子黑莓和覆盆子 - 黑莓杂交叶芽的化学成分抗氧化剂和抗微生物活性

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摘要

In our investigation, the chemical composition and bioactive potential of leaf buds of raspberry, blackberry, and a raspberry-blackberry hybrid were determined. Antioxidant and antimicrobial properties were tested in water (W), ethanol-water (EW), and glycerol-water (GW) extracts from the buds. These plant organs contain relatively large amounts of minerals, especially Fe. The total antioxidant capacity (TAC) measured by the ABTS and DPPH methods ranged from 2.86 to 12.19 and 6.75 to 24.26 mmol per 100 g fresh weight (FW) of buds, respectively. TAC values were generally higher in the raspberry than in the case of blackberry and raspberry-blackberry hybrid extracts. The antioxidant properties of the extracts were strongly positively correlated with their content of total phenolic (TP). No such relationship was noted for ascorbic acid (AA), whose concentration in all extracts was at a similarly low level. Antioxidant properties determined in vitro were confirmed for the GW extract from raspberry leaf buds in biological test based on the growth parameters of Δsod1 Saccharomyces cerevisiae mutant cells in hypertonic medium. The extracts also exhibited strong antibacterial properties against Staphylococcus aureus and Enterococcus faecalis and weaker against Enterobacter aerogenes. The studied leaf buds could be therefore an unconventional source of minerals, natural antioxidants and antibacterial compounds with potential applications in the food, pharmaceutical, and cosmetics industries.
机译:在我们的调查中,确定了覆盆子,黑莓和覆盆子 - 黑莓杂种叶芽的化学成分和生物活性潜力。在水(W),乙醇 - 水(EW)和来自芽的甘油 - 水(GW)萃取物中测试抗氧化剂和抗微生物性质。这些植物器官含有相对大量的矿物质,特别是Fe。通过ABTS和DPPH方法测量的总抗氧化能力(TAC)分别为2.86至12.19和6.75至6.75至24.26 mmol,分别为每100克芽(FW)的芽。覆盆子中的TAC值通常比黑莓和覆盆子 - 黑莓杂交提取物的情况更高。提取物的抗氧化性能与其总酚醛(TP)的含量强烈呈正相关。没有针对抗坏血酸(AA)的这种关系,其所有提取物中的浓度在类似的低水平。基于高渗培养基中的ΔSod1酿酒酵母凝虫细胞的生物试验,确认在体外测定的抗氧化性能。提取物还表现出对金黄色葡萄球菌和肠球菌粪便的强抗菌性质,越来越抗肠杆菌空气。因此,研究的叶芽可能是矿物质,天然抗氧化剂和抗菌化合物的非传统来源,具有食品,制药和化妆品行业的潜在应用。

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