Department of Biological Engineering, College of Life Sciences, Yantai University, Shandong 264005, PR China.
Department of Biological Engineering, College of Life Sciences, Yantai University, Shandong 264005, PR China.
Life Sci. 2016 Jan 1;144:156-61. doi: 10.1016/j.lfs.2015.11.013. Epub 2015 Dec 2.
Polysaccharides synthesized by microalgae can be used as the functional ingredients of food or drugs. Here, we investigated the physicochemical properties and bioactivities of the polysaccharide from microalgae Pavlova viridis, and indicated the structure-activity relationship.
The polysaccharides (PPS0) were degraded with H2O2-vitamin C assisted by ultrasonic waves. The functional group content, monosaccharide composition, and average molecular weight (avg-MW) were detected by chemical or chromatographic method. The immunomodulatory activities were evaluated in vitro by detecting nitric oxide (NO) emission, neutral red uptake and macrophage proliferation. Antitumor activities of degraded fragments were detected using S180-tumor-bearing mouse model by intragastric administration.
Degraded polysaccharides PPS1 and PPS2 were obtained at avg-MW of 386.96 and 54.99 kDa. The sulfate group content of polysaccharide was 16%, and the uronic acid content was 5.88 and 8.48%. PPS mainly consisted of fructose, glucose and mannose. All the degraded PPSs could increase phagocytosis and proliferation of macrophages, and stimulated NO emission in a dose-dependently way. PPS2 in Low-MW fragments had the strongest immunoenhancing activities. Different doses of PPS all could inhibit the growth of implanted S180 tumor. At dose of 200 mg/kg/day, the tumor inhibition rate of PPS2 was 57.06%, about 23.6% less than that of CTX-treated group. Different-MW PPS significantly increased lymphocyte proliferation. At 200 mg/L, the proliferation index of PPS2 was 1.37, 2.03 times higher than that of CTX-treated group.
The polysaccharides of Pavlova viridis had potential antitumor activities by improving immune response. Moreover, the bioactivities depend on their molecular weight.
微藻合成的多糖可用作食品或药物的功能成分。在这里,我们研究了微藻拟菱形藻多糖的理化性质和生物活性,并指出了其结构-活性关系。
用过氧化氢-维生素 C 辅助超声降解多糖(PPS0)。采用化学或色谱法检测功能基团含量、单糖组成和平均分子量(avg-MW)。通过检测一氧化氮(NO)排放、中性红摄取和巨噬细胞增殖,体外评估免疫调节活性。通过灌胃 S180 荷瘤小鼠模型检测降解片段的抗肿瘤活性。
得到平均分子量分别为 386.96 和 54.99 kDa 的降解多糖 PPS1 和 PPS2。多糖硫酸根含量为 16%,糖醛酸含量分别为 5.88%和 8.48%。PPS 主要由果糖、葡萄糖和甘露糖组成。所有降解的 PPS 均可增加巨噬细胞的吞噬和增殖,并呈剂量依赖性刺激 NO 释放。低分子量碎片 PPS2 具有最强的免疫增强活性。不同剂量的 PPS 均可抑制植入 S180 肿瘤的生长。在 200mg/kg/天的剂量下,PPS2 的肿瘤抑制率为 57.06%,比 CTX 处理组低约 23.6%。不同分子量的 PPS 均能显著增加淋巴细胞增殖。在 200mg/L 时,PPS2 的增殖指数为 1.37,比 CTX 处理组高 2.03 倍。
拟菱形藻多糖通过改善免疫反应具有潜在的抗肿瘤活性。此外,生物活性取决于其分子量。