Cao Meng, Wang Shenglin, Gao Yumei, Pan Xiaoyan, Wang Xiuhai, Deng Ruru, Liu Pinghuai
School of Chemical Engineering and Technology, Hainan University, Haikou, China.
J Food Biochem. 2020 Jul;44(7):e13243. doi: 10.1111/jfbc.13243. Epub 2020 May 27.
Physicochemical properties and antioxidant activities of Desmodesmus armatus polysaccharides (DAP) were studied. They were extracted by microwave-assisted constant temperature extraction and purification by DEAE-cellulose 52. Four eluents of water (DAP1), 0.25 mol/L NaCl (DAP2), 0.5 mol/L NaCl (DAP3), and 1.0 mol/L NaCl (DAP4) were collected. Four polysaccharides fractions were analyzed, and they were all composed of mannose, rhamnose, glucuronic acid, galacturonic acid, arabinose, and fucose. Gel Permeation Chromatography (GPC) analysis showed that the four polysaccharides fractions have a uniform molecular weight distribution. Scanning electron microscope showed that DAP1 had a dense structure and a smooth but uneven surface, while DAP2, DAP3, and DAP4 were amorphous solids in sheets. Oxidation in vitro experiments showed that DAP2 and DAP3 had scavenging effects on ABTS, DPPH, and hydroxyl radicals. PRACTICAL APPLICATIONS: In the determination of the antioxidant activity, it was found that the antioxidative activity of the polysaccharide of Desmodesmus armatus measured was significantly stronger than the crude polysaccharide of other microalgae. After the polysaccharide was purified, two polysaccharide fractions (DAP2 and DAP3) of Desmodesmus armatus were found to have strong scavenging ability to ABTS, DPPH, and hydroxyl radicals. They can be regarded as a new type of antioxidant, and the differences in the physicochemical properties between the parts can provide a preliminary explanation for the differences in antioxidant activity. But the connection between them needs further analysis. The Desmodesmus armatus used in the experiment is easy to cultivate and easy to obtain, which greatly increases its applicability. This research opens up new possibilities for the development of antioxidants and provides favorable evidence for the use of Desmodesmus armatus in food and feed.
研究了刺果栅藻多糖(DAP)的理化性质和抗氧化活性。采用微波辅助恒温提取法进行提取,并用DEAE-纤维素52进行纯化。收集了水(DAP1)、0.25 mol/L氯化钠(DAP2)、0.5 mol/L氯化钠(DAP3)和1.0 mol/L氯化钠(DAP4)四种洗脱液。对四个多糖级分进行了分析,它们均由甘露糖、鼠李糖、葡萄糖醛酸、半乳糖醛酸、阿拉伯糖和岩藻糖组成。凝胶渗透色谱(GPC)分析表明,四个多糖级分具有均匀的分子量分布。扫描电子显微镜显示,DAP1结构致密,表面光滑但不均匀,而DAP2、DAP3和DAP4为片状无定形固体。体外抗氧化实验表明,DAP2和DAP3对ABTS、DPPH和羟基自由基具有清除作用。实际应用:在抗氧化活性测定中,发现所测刺果栅藻多糖的抗氧化活性明显强于其他微藻的粗多糖。多糖纯化后,发现刺果栅藻的两个多糖级分(DAP2和DAP3)对ABTS、DPPH和羟基自由基具有较强的清除能力。它们可被视为一种新型抗氧化剂,各部分理化性质的差异可为抗氧化活性的差异提供初步解释。但它们之间的联系需要进一步分析。实验所用的刺果栅藻易于培养且易于获得,大大提高了其适用性。本研究为抗氧化剂的开发开辟了新的可能性,并为刺果栅藻在食品和饲料中的应用提供了有利证据。