Qinghai Key Laboratory of Qinghai-Tibet Plateau Biological Resources, Northwest Institute of Plateau Biology, Chinese Academy of Sciences, Xining, PR China; State Key Laboratory of Plateau Ecology and Agriculture, Qinghai University, Xining, PR China; University of the Chinese Academy of Sciences, Beijing, PR China.
Qinghai Key Laboratory of Qinghai-Tibet Plateau Biological Resources, Northwest Institute of Plateau Biology, Chinese Academy of Sciences, Xining, PR China; University of the Chinese Academy of Sciences, Beijing, PR China.
Food Chem. 2018 May 30;249:119-126. doi: 10.1016/j.foodchem.2017.12.078. Epub 2018 Jan 2.
In this work, it has been developed an efficient method for extraction of anthocyanin from Lycium ruthenicum Murr. and the antioxidative activities research. Subcritical water extraction was investigated as a green technology for the extraction of anthocyanin from L. ruthenicum. Several key parameters affecting extraction efficiency were investigated and optimized by response surface methodology (RSM) combined with Box-Behnken design (BBD). The optimum extraction conditions and the desirability of model were the time of extraction = 55 min and the flow rate was 3 mL/min at 170 °C. At this operating condition, the content of anthocyanin was high to 26.33%. Subcritical water extraction was more efficient than using hot water or methyl alcohol for the extraction of anthocyanin. The composition of anthocyanins from L. ruthenicum has been investigated by high-performance liquid chromatography with diode array detector (HPLC-DAD) and Ultra Performance Liquid Chromatography-Triple-Time of Flight Mass Spectrometer (UPLC-Triple-TOF/MS). Seven anthocyanins have been detected, all of which were identified and quantified. Furthermore, the anthocyanins extracted by SWE showed significantly better antioxidant activity than the anthocyanins extracted by hot water or methyl alcohol according to DPPH and ABTS assay. SWE with significantly higher anthocyanin and antioxidant activity were achieved compared to conventional methods.
本工作开发了一种从黑果枸杞中提取花色苷的高效方法,并研究了其抗氧化活性。亚临界水萃取作为一种绿色技术,用于从黑果枸杞中提取花色苷。通过响应面法(RSM)结合 Box-Behnken 设计(BBD),研究了影响提取效率的几个关键参数,并对其进行了优化。最佳提取条件和模型的适宜性为提取时间=55 分钟,流速为 170°C 时为 3mL/min。在此操作条件下,花色苷的含量高达 26.33%。与热水或甲醇相比,亚临界水萃取更有效地提取花色苷。采用高效液相色谱-二极管阵列检测器(HPLC-DAD)和超高效液相色谱-三重飞行时间质谱(UPLC-Triple-TOF/MS)对黑果枸杞中的花色苷组成进行了研究。共检测到 7 种花色苷,均进行了鉴定和定量。此外,根据 DPPH 和 ABTS 测定,SWE 提取的花色苷的抗氧化活性明显优于热水或甲醇提取的花色苷。与传统方法相比,SWE 具有更高的花色苷和抗氧化活性。