Ye Danyan, Jiang Zebin, Zheng Fuchun, Wang Hongmei, Zhang Yanmei, Gao Fenfei, Chen Peihong, Chen Yicun, Shi Ganggang
Department of Pharmacology, Shantou University Medical College, Shantou 515041, China.
Department of Pharmacy, First Affiliated Hospital, Shantou University Medical College, Shantou 515041, China.
Molecules. 2015 Sep 16;20(9):16817-32. doi: 10.3390/molecules200916817.
Polysaccharides from Grateloupia livida (Harv.) Yamada (GL) were extracted by a heating circumfluence method. Single-factor experiments were performed for the three parameters: extraction time (X₁), extraction temperature (X₂) and the ratio of water to raw material (X₃) and their test range. From preliminary experimental results, one type of the response surface methodology, the Box-Behnken design was applied for the optimizing polysaccharide extraction conditions. The experimental data obtained were fitted to a second-order polynomial equation. The optimal conditions were extraction time 5 h, extraction temperature 100 °C and ratio of water to raw material 70 mL/g. Under these conditions, the experimental yield was 39.22% ± 0.09%, which well matched the predicted value (39.25%), with 0.9774 coefficient of determination (R²). GL polysaccharides had scavenging activities for DPPH and hydroxyl radicals in vitro. The scavenging rates for both radicals peaked at 20 mg/mL GL concentration. However, the positive standard, VC (ascorbic acid), possessed stronger antioxidant activities than GL polysaccharides. Furthermore, the anticancer activity of GL polysaccharides on HepG2 cell proliferation increased dose- and time-dependently, but the positive standard, 5-fluorouracil (5-fu) showed more significant anticancer activity in this study. Overall, GL polysaccharides may have potential applications in the medical and food industries.
采用加热回流法提取了石花菜(Grateloupia livida (Harv.) Yamada,GL)多糖。对提取时间(X₁)、提取温度(X₂)和料液比(X₃)这三个参数及其试验范围进行了单因素实验。根据初步实验结果,应用响应面法中的Box-Behnken设计对多糖提取条件进行优化。将获得的实验数据拟合为二阶多项式方程。最佳条件为提取时间5 h、提取温度100℃、料液比70 mL/g。在此条件下,实验得率为39.22%±0.09%,与预测值(39.25%)吻合良好,决定系数(R²)为0.9774。GL多糖在体外对DPPH和羟基自由基具有清除活性。两种自由基的清除率在GL浓度为20 mg/mL时达到峰值。然而,阳性对照品VC(抗坏血酸)的抗氧化活性比GL多糖更强。此外,GL多糖对HepG2细胞增殖的抗癌活性呈剂量和时间依赖性增加,但本研究中阳性对照品5-氟尿嘧啶(5-fu)的抗癌活性更显著。总体而言,GL多糖在医药和食品工业中可能具有潜在应用。