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Effects of drying on caffeoylquinic acid derivative content and antioxidant capacity of sweet potato leaves

机译:干燥对甘薯叶中咖啡酰奎尼酸衍生物含量和抗氧化能力的影响

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摘要

Caffeoylquinic acid (CQA) derivatives are known to possess antioxidative potential and have many beneficial effects on human health. The present study compared the CQA contents and antioxidant activities of aerial parts of sweet potato plants. The effects of drying methods (freeze drying, and drying at 30 degrees C, 70 degrees C, and 100 degrees C) on these two parameters of the first fully expanded leaves were also assessed. The results indicated that the CQA derivatives were detectable in leaves, stem, and flowers of sweet potato plants (varied from 39.34 mg/g dry weight to 154.05 mg/g dry weight), with the leaves (particularly expanding and first fully expanded leaves) containing more CQA derivatives than other aerial plant parts. The expanding and first fully expanded leaves also exhibited greater antioxidant activities than other aerial plant parts, possibly due to their higher contents of CQA derivatives. Drying method significantly affected the content of CQA derivatives in dried sweet potato leaf tissues. Drying treatments at both 70 degrees C and 100 degrees C significantly reduced the CQA derivative content and antioxidant activity in the first fully expanded leaves. Among the tested drying methods, the freeze-drying method demonstrated the preservation of the highest amount of CQA derivatives (147.84 mg/g) and antioxidant property. However, 30 degrees C cool air drying was also a desirable choice (total CQA derivative content was reduced to only 129.52 mg/g), compared to 70 degrees C and 100 degrees C hot air drying, for commercial-scale processing of sweet potato leaves, if the higher operation cost of freeze drying was a major concern. Copyright (C) 2014, Food and Drug Administration, Taiwan. Published by Elsevier Taiwan LLC. All rights reserved.
机译:已知咖啡酰奎尼酸(CQA)衍生物具有抗氧化潜力,对人体健康具有许多有益作用。本研究比较了甘薯地上部分的CQA含量和抗氧化活性。还评估了干燥方法(冷冻干燥,以及在30摄氏度,70摄氏度和100摄氏度下干燥)对第一张完全展开的叶子的这两个参数的影响。结果表明,CQA衍生物可在甘薯植物的叶,茎和花中检测到(从39.34 mg / g干重变化到154.05 mg / g干重),并且具有叶子(特别是膨胀的叶子和第一个完全膨胀的叶子)含有比其他航空植物部件更多的CQA衍生物。膨大和初次完全膨大的叶片还比其他空中植物部分表现出更大的抗氧化活性,这可能是由于它们的CQA衍生物含量更高。干燥方法显着影响干燥的甘薯叶组织中CQA衍生物的含量。在70摄氏度和100摄氏度下进行干燥处理,可显着降低第一张完全膨胀叶片的CQA衍生物含量和抗氧化活性。在测试的干燥方法中,冷冻干燥方法显示了最高量的CQA衍生物(147.84 mg / g)的保存和抗氧化性能。但是,与70摄氏度和100摄氏度的热风干燥相比,30摄氏度的冷空气干燥也是理想的选择(CQA衍生物的总含量降低至仅129.52 mg / g),用于商业规模的红薯叶加工,如果冷冻干燥的运营成本较高是一个主要问题。台湾食品药品监督管理局(C)2014。由Elsevier Taiwan LLC发布。版权所有。

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