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首页> 外文期刊>Molecules >Optimization of Microwave-Assisted Extraction of Antioxidants from Bamboo Shoots of Phyllostachys pubescens
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Optimization of Microwave-Assisted Extraction of Antioxidants from Bamboo Shoots of Phyllostachys pubescens

机译:从竹芽中抗氧化剂的微波辅助提取优化Phyllostachys Pubescens

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Bamboo is a well-known medicinal plant in Southeast Asia that recently has attracted attention for its high polyphenol content and its medical and nutraceutical applications. In this work, polyphenols have been recovered for the first time by microwave-assisted extraction (MAE) from an unusual Italian cultivar of Phyllostachys pubescens bamboo shoots. The effects of three independent variables, such as extraction time, temperature, and solid/liquid ratio, on polyphenol recovery yield were investigated and successfully optimized through the response surface methodology. We demonstrated that MAE is an excellent polyphenols extraction technique from bamboo shoots because the total phenolic content obtained under microwave irradiation optimal conditions (4 min at 105 °C with 6.25 mg/mL ratio) was about eight-fold higher than that obtained with the conventional extraction method. Furthermore, higher total flavonoid content was also obtained under MAE. Consistent with these results, MAE enhanced the extract antioxidant properties with significant improved DPPH, ABTS, and FRAP scavenging ability. Therefore, this innovative extraction process enhances the recovery of biologically active compounds from Phyllostachys pubescens bamboo shoots with a dramatic reduction of time and energy consumption, which paves the way for its industrial application in functional food production.
机译:竹是东南亚的着名药用植物,最近引起了其高多酚含量及其医疗和保健应用的关注。在这项工作中,通过来自植物竹粒竹笋的不寻常的意大利品种,通过微波辅助提取(MAE)首次回收多酚。研究并通过响应面方法研究了三种独立变量,例如提取时间,温度和固体/液体比例的萃取时间,温度和固体/液体比。我们证明了MAE是来自竹笋的优异的多酚萃取技术,因为在微波照射下获得的总酚含量最佳条件(在105℃下为6.25mg / ml的比率为4分钟)比与常规所获得的脂肪含量约为8倍提取方法。此外,在MAE下也获得了更高的总黄酮含量。与这些结果一致,MAE增强了提取物抗氧化性能,具有显着改善的DPPH,ABT和FRAP清除能力。因此,这种创新的提取方法增强了从Phyllostachys Pubescens竹笋的生物活性化合物的恢复,其时间和能量消耗剧烈降低,这为其在功能性食品中的工业应用铺平了道路。

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