Zhang Ruifen, Su Dongxiao, Hou Fangli, Liu Lei, Huang Fei, Dong Lihong, Deng Yuanyuan, Zhang Yan, Wei Zhencheng, Zhang Mingwei
a Key Laboratory of Environment Correlative Food Science, Ministry of Education, Department of Food Science and Technology , Huazhong Agricultural University , Wuhan , P.R. China.
c Sericultural & Agri-Food Research Institute, Guangdong Academy of Agricultural Sciences/Key Laboratory of Functional Foods, Ministry of Agriculture/Guangdong Key Laboratory of Agricultural Products Processing , Guangzhou , P.R. China.
Biosci Biotechnol Biochem. 2017 Aug;81(8):1576-1585. doi: 10.1080/09168451.2017.1321953. Epub 2017 May 4.
To establish optimal ultra-high-pressure (UHP)-assisted extraction conditions for procyanidins from lychee pericarp, a response surface analysis method with four factors and three levels was adopted. The optimum conditions were as follows: 295 MPa pressure, 13 min pressure holding time, 16.0 mL/g liquid-to-solid ratio, and 70% ethanol concentration. Compared with conventional ethanol extraction and ultrasonic-assisted extraction methods, the yields of the total procyanidins, flavonoids, and phenolics extracted using the UHP process were significantly increased; consequently, the oxygen radical absorbance capacity and cellular antioxidant activity of UHP-assisted lychee pericarp extracts were substantially enhanced. LC-MS/MS and high-performance liquid chromatography quantification results for individual phenolic compounds revealed that the yield of procyanidin compounds, including epicatechin, procyanidin A2, and procyanidin B2, from lychee pericarp could be significantly improved by the UHP-assisted extraction process. This UHP-assisted extraction process is thus a practical method for the extraction of procyanidins from lychee pericarp.
为确定从荔枝果皮中提取原花青素的最佳超高压(UHP)辅助提取条件,采用了四因素三水平的响应面分析方法。最佳条件如下:压力295MPa、保压时间13分钟、液固比16.0mL/g、乙醇浓度70%。与传统乙醇提取法和超声辅助提取法相比,采用超高压工艺提取的总原花青素、黄酮类化合物和酚类化合物的产量显著提高;因此,超高压辅助荔枝果皮提取物的氧自由基吸收能力和细胞抗氧化活性也大幅增强。对单个酚类化合物的液相色谱-串联质谱(LC-MS/MS)和高效液相色谱定量结果表明,超高压辅助提取工艺可显著提高荔枝果皮中原花青素化合物(包括表儿茶素、原花青素A2和原花青素B2)的产量。因此,这种超高压辅助提取工艺是从荔枝果皮中提取原花青素的一种实用方法。