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Thermal and Antioxidant Properties of Polysaccharides Sequentially Extracted from Mulberry Leaves (Morus alba L.)

机译:从桑叶中连续提取的多糖的热学和抗氧化性能

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摘要

Polysaccharides from natural plant products are gaining considerable attention due to their multi-faceted health effects, as well their functional applications in food production. We reported the sequential extraction of mulberry leaf polysaccharides (MLPs) with hot buffer (HBSS), chelating agent (CHSS), dilute alkali (DASS) and concentrated alkali (CASS), in order to obtain polysaccharide fractions. Monosaccharide analysis proved that galactose (27.07%) and arabinose (25.99%) were the major sugars in HBSS, whereas arabinose (30.55%) was the major sugar in CHSS, and glucose was the major sugar in DASS (24.96%) and CASS (27.51%). The molecular weights of the polysaccharide fractions were 7.812 × 103 (HBSS), 3.279 × 103 (CHSS), 6.912 × 103 (DASS), and 1.408 × 103 kDa (CASS). HBSS and CASS showed the largest peak temperature and the highest endothermic enthalpy, respectively. Different antioxidant assays showed that the MLPs possessed appreciable antioxidant activities in a dose-dependent manner. At 5 mg/mL, HBSS and DASS possessed the largest 2,2-diphenyl-1-picryl-hydrazyl-hydrate (DPPH) radical scavenging activity (96.82%). HBSS exhibited the highest reducing power, and DASS rendered the strongest ABTS radical scavenging activity (99.69%). CHSS performed the best hydroxyl radical scavenging activity (64.22%) and Fe2+-chelating ability (96.36%). Our results suggested that MLPs could be a promising source of natural antioxidants for use in the food, pharmaceutical, and cosmetic industries.
机译:天然植物产品中的多糖由于其多方面的健康影响以及其在食品生产中的功能性应用而受到了广泛的关注。我们报道了用热缓冲液(HBSS),螯合剂(CHSS),稀碱(DASS)和浓碱(CASS)顺序提取桑叶多糖(MLP),以获得多糖级分。单糖分析证明,半乳糖(27.07%)和阿拉伯糖(25.99%)是HBSS中的主要糖,而阿拉伯糖(30.55%)是CHSS中的主要糖,葡萄糖是DASS(24.96%)和CASS( 27.51%)。多糖部分的分子量分别为7.812×10 3 (HBSS),3.279×10 3 (CHSS),6.912×10 3 ( DASS)和1.408×10 3 kDa(CASS)。 HBSS和CASS分别显示出最大的峰值温度和最高的吸热焓。不同的抗氧化剂测定表明,MLP以剂量依赖性方式具有明显的抗氧化剂活性。 HBSS和DASS在5 mg / mL时具有最大的2,2-二苯基-1-吡啶基-肼基水合物(DPPH)自由基清除活性(96.82%)。 HBSS表现出最高的还原能力,而DASS表现出最强的ABTS自由基清除活性(99.69%)。 CHSS具有最佳的清除自由基能力(64.22%)和Fe 2 + 螯合能力(96.36%)。我们的结果表明,MLP可能是用于食品,制药和化妆品行业的天然抗氧化剂的有希望的来源。

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