School of Physics and Optoelectronics, South China University of Technology, Guangzhou 510640, China.
Institute of Light Industry and Food Engineering, Guangxi University, Nanning 530004, China.
Ultrason Sonochem. 2017 Jan;34:571-579. doi: 10.1016/j.ultsonch.2016.06.037. Epub 2016 Jun 24.
The total flavonoids from Hemerocallis citrina baroni are regarded as a green and natural health care product with many beneficial impacts on human health. In this study, ultrasound-synergized electrostatic field extraction (UEE) of the total flavonoids (TF) from H. citrina was investigated. Significant independent variables of the extraction, including the electrostatic field, ultrasonic power, ethanol concentration and extraction time, were optimized using the Box-Behnken (BB) method, and the optimal extraction conditions were obtained by response surface methodology (RSM). The extraction yield using UEE was compared with the yields obtained using only ultrasound extraction (UE) and water bath extraction (WE), using a UV-vis spectrophotometer. The best extraction yield of 1.536% using UEE was achieved under the following optimal conditions: electrostatic field of 7kV, ultrasonic power of 500W, ethanol concentration of 70% and extraction time of 20min. The optimal solid-liquid ratio (1:25g/mL) and extraction temperature (55°C) were determined by single factor experiments. Compared to other extraction methods, UEE not only increases the extraction yield of TF but also exhibits an excellent antioxidant activity in assays of the scavenging capacity for DPPH, hydroxyl and superoxide anion radicals. The availability of the UEE method can be supported by the ultrasonic cavitation effect, which plays the most important role in the UEE method. The electrostatic field can be regarded as a random disturbance for sonication, which can strengthen the cavitation effect and increase the cavitation yield. Moreover, the amount of iodine release in potassium iodide solution well validated the synergetic effect between the ultrasound and electrostatic field.
从黄花萱草中提取的总黄酮被认为是一种绿色天然的保健品,对人体健康有许多有益的影响。本研究采用超声协同静电场提取(UEE)法从黄花萱草中提取总黄酮(TF)。利用 Box-Behnken(BB)法优化了提取的显著独立变量,包括静电场、超声功率、乙醇浓度和提取时间,并通过响应面法(RSM)获得了最佳提取条件。用紫外分光光度计比较了 UEE 与仅超声提取(UE)和水浴提取(WE)的提取效果。在最佳条件下(静电场 7kV,超声功率 500W,乙醇浓度 70%,提取时间 20min),UEE 的最佳提取率为 1.536%。通过单因素实验确定了最佳固液比(1:25g/mL)和提取温度(55°C)。与其他提取方法相比,UEE 不仅提高了 TF 的提取率,而且在 DPPH、羟基和超氧阴离子自由基清除能力测定中表现出了优异的抗氧化活性。超声空化效应在 UEE 方法中起着最重要的作用,因此 UEE 方法的有效性可以得到支持。静电场可以看作是对超声的随机干扰,它可以增强空化效应,增加空化产率。此外,在碘化钾溶液中碘释放量也很好地验证了超声和静电场之间的协同效应。