Position: Home > Articles > Extraction,Purification and Structural Characterization of Polysaccharide from Transgenic Aloe vera L.
FOOD SCIENCE
2009,30
(15)
17-20
转基因库拉索芦荟多糖的分离纯化与结构表征
作 者:
赵华;赵进;何聪芬;董银卯;钟秦
单 位:
南京理工大学化工学院;北京工商大学化学与环境工程学院
关键词:
转基因库拉索芦荟;芦荟多糖;分离纯化;结构表征
摘 要:
以3年生转基因的库拉索芦荟凝胶为材料,冷处理法醇沉提取粗多糖AP-1,苯酚-硫酸法检测糖含量为57.3%,考马斯亮蓝染色法检测蛋白质含量为2.892%。经IR鉴定,AP-1为含有乙酰化β-D-吡喃甘露聚糖的混合物;质谱测定表明,分子量测定范围在12900D和13100D。纯化后所得多糖半精品AP-2为白色粉末,糖含量比AP-1提高9.6%。用DEAE Sephadex A-25分级分离AP-2,得到中性糖(AP-3)和酸性糖(AP-4)。用Sepharose CL-6B凝胶分离AP-3,得到AP-5和AP-6。用IR、MS、GC对AP-1、AP-2、AP-3、AP-4、AP-5、AP-6进行鉴定和表征分析,结果表明,中性糖AP-3为多甘露糖型的多糖,并推测AP-5生物活性较AP-6高。
译 名:
Extraction,Purification and Structural Characterization of Polysaccharide from Transgenic Aloe vera L.
作 者:
ZHAO Hua1,2,ZHAO Jin2,HE Cong-fen2,DONG Yin-mao2,ZHONG Qin1 (1. School of Chemical Engineering,Nanjing University of Science and Technology,Nanjing 210094,China ; 2. College of Chemistry and Environment Engineering,Beijing Technology and Business University,Beijing 100048,China)
关键词:
transgenic Aloe vera L.;aloe polysaccharide;extraction and purification;structure characterization
摘 要:
Aloe has been used in Chinese traditional medicine for over two thousand of years. Polysaccharides as main active components in Aloe vera L. have aroused much interest. Aloe polysaccharide (AP-1) was extracted from fresh leaves of three-year-old transgenic Aloe vera L. by cold ethanol precipitation. The amount of total carbohydrates in AP-1 was measured by phenolsulfuric acid method to be 57.3%. AP-1 was proved to be a mixture of acetylated β-D-pyranmannans and the molecular weight was within the range of 12900-13100 dalton detected by IR spectrometry analysis. The amount of total carbohydrates in AP-2 was increased by 9.6% when compared with that in AP-1 after purification by Sevag method. Neutral polysaccharide (AP-3) and acidic polysaccharide (AP-4) were obtained from AP-2 by DEAE Sephadex A-25 and AP-5 and AP-6 were obtained from AP-3 by Sepharose CL-6B. The monosaccharide composition analysis indicated that AP-3 was structurally identified as a polymannan type polysaccharide and the bioactivity of AP-5 was deduced to be higher than that of AP-6.