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Enhancement of microwave-assisted extraction of bioactive compounds from cabbage outer leaves via the application of ultrasonic pretreatment

机译:通过超声预处理提高微波辅助从白菜外叶中提取生物活性化合物的能力

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摘要

Although microwave-assisted extraction (MAE) has proved to be a rapid alternative to extract bioactive compounds from plant materials, it might be possible to enhance MAE further through structural modification of the plant matrix. In this study, the effect of plant structure modification via ultrasonic pretreatment prior to MAE was investigated. The evolutions of selected bioactive compounds, namely, glucosinolates, sulforaphane, vitamin C and phenolics, and antioxidant activity of the extract from cabbage outer leaves during sonication, which is indeed equivalent to ultrasonic-assisted extraction (UAE), were first monitored to identify a suitable time for the pretreatment prior to subsequent MAE. For comparison MAE and Soxhlet extraction were conducted and their results compared with those belonging to UAE and UAE + MAE. Microstructural changes of cabbages, as observed via confocal laser scanning microscopy (C1SM) and quantified via the use of the fractal dimension, undergone different extraction methods were observed and used to explain the extraction results. Energy consumption of different extraction methods was also evaluated. UAE + MAE led to higher contents of extractable bioactive compounds due to the effects of acoustic cavitation and subsequent internal heating within the plant cells by microwave irradiation, which resulted in more structural damage and hence better release of the compounds. The contents of the extractable bioactive compounds from UAE, MAE and UAE + MAE were significantly lower than those from Soxhlet extraction in almost all cases; Soxhlet extraction time was much longer, however. MAE exhibited the highest energy efficiency compared with UAE, UAE + MAE and Soxhlet extraction. (C) 2015 Elsevier B.V. All rights reserved.
机译:尽管微波辅助提取(MAE)已被证明是从植物材料中提取生物活性化合物的快速替代方法,但通过对植物基质进行结构修饰,有可能进一步增强MAE。在这项研究中,研究了在MAE之前通过超声预处理对植物结构进行修饰的效果。首先监测选定的生物活性化合物,即芥子油苷,萝卜硫烷,维生素C和酚类的演变以及超声处理过程中白菜外叶提取物的抗氧化活性(实际上等同于超声辅助提取(UAE)),以鉴定出在随后的MAE之前进行预处理的合适时间。为了进行比较,进行了MAE和索氏提取,并将其结果与阿联酋和阿联酋+ MAE的结果进行了比较。通过共聚焦激光扫描显微镜(C1SM)观察并通过使用分形维数进行量化,对甘蓝的微结构变化进行了观察,并观察了不同的提取方法,并将其用于解释提取结果。还评估了不同提取方法的能耗。由于声空化和随后通过微波辐射在植物细胞内内部加热的影响,UAE + MAE导致可提取生物活性化合物的含量更高,这导致更多的结构破坏并因此更好地释放了这些化合物。在几乎所有情况下,来自阿联酋,MAE和阿联酋+ MAE的可提取生物活性化合物的含量均显着低于索氏提取法。但是,索氏提取时间要长得多。与阿联酋,阿联酋+ MAE和索氏提取相比,MAE表现出最高的能源效率。 (C)2015 Elsevier B.V.保留所有权利。

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