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海洋小球藻多糖的制备及其体外抑制肿瘤血管生成活性的研究
引用本文:谭成玉,赵小霞,孟繁桐,孔亮,池晓会,陈春花,刘斌.海洋小球藻多糖的制备及其体外抑制肿瘤血管生成活性的研究[J].中国海洋药物,2014,33(4):33-38.
作者姓名:谭成玉  赵小霞  孟繁桐  孔亮  池晓会  陈春花  刘斌
作者单位:大连海洋大学海洋科技与环境学院,大连海洋大学海洋科技与环境学院,大连海洋大学海洋科技与环境学院,大连海洋大学海洋科技与环境学院,大连海洋大学海洋科技与环境学院,大连海洋大学海洋科技与环境学院,大连海洋大学海洋科技与环境学院
基金项目:由国家自然基金-具有抑制肿瘤血管生成活性海洋微藻多糖的快速发现、分离与作用机制研究(41306137),国家海洋局海洋公益性专项-海洋多糖(寡糖)活性筛选(201005024 -3),辽宁省自然基金-抑制肿瘤血管生成的海洋微藻活性多糖对VEGF和MMP9的作用机制研究(2013020127) , 大连市科技基金-海洋小球藻抑制肿瘤新生血管生成活性物质研究(2011J21DW012)支持。
摘    要:目的 研究海洋小球藻多糖的制备工艺及其抑制肿瘤血管生成的作用。 方法 比较多种提取方法提取多糖,确定最适提取工艺,经乙醇沉淀,并结合DEAE- Cellulose 52 柱色谱分离纯化;采用创伤愈合法测定小球藻多糖对肿瘤细胞培养液诱导的内皮细胞迁移的抑制作用。结果 选择闪式萃取结合酶法最适宜提取小球藻多糖,其最佳提取条件为胰蛋白酶酶用量为1.5%、酶解pH值为6.5、酶解温度为40℃、酶解时间为1.5h,经柱色谱分离得到的小球藻多糖在浓度50、100ug/mL时可抑制肿瘤细胞培养液诱导的内皮细胞迁移。结论 采用闪式萃取-酶解结合柱色谱可获得小球藻多糖,其具有一定的抑制肿瘤血管生成活性。

关 键 词:小球藻多糖,闪式萃取结合酶法  抑制血管生成
收稿时间:2014/2/12 0:00:00
修稿时间:2014/3/13 0:00:00

The Preparation and anti-angiogenic activity of chlorella polysaccharides
TAN Cheng-yu,ZHAO Xiao-xi,MENG Fan-tong,KONG Liang,CHI Xiao-hui,CHEN Chun-hua and LIU Bin.The Preparation and anti-angiogenic activity of chlorella polysaccharides[J].Chinese Journal of Marine Drugs,2014,33(4):33-38.
Authors:TAN Cheng-yu  ZHAO Xiao-xi  MENG Fan-tong  KONG Liang  CHI Xiao-hui  CHEN Chun-hua and LIU Bin
Institution:Marine Environmental Engineering College,Dalian Ocean University,Marine Environmental Engineering College,Dalian Ocean University,Marine Environmental Engineering College,Dalian Ocean University,Marine Environmental Engineering College,Dalian Ocean University,Marine Environmental Engineering College,Dalian Ocean University,Marine Environmental Engineering College,Dalian Ocean University,Marine Environmental Engineering College,Dalian Ocean University
Abstract:Objective To investigate the preparation method of chlorella polysaccharides and anti-angiogenic activity. Methods The optimum preparation process was assessed by comparing different extraction and combined with ethanol precipitation and isolation from DEAE- Cellulose 52. Results Flash extraction combined with enzymolysis method was the best for the extraction of chlorella polysaccharides. The optimal process conditions were determined as 1.5% trypsinase, pH 7.5, 45 ?C and 1.5h for enzyme dosage, pH value, enzymolysis temperature and time. The chlorella polysaccharides were obtained by using precipitation and column chromatography, which had some inhibition of the migration of induced human umbilical vein endothelial cells at the concentration of 50 and 100ug/mL. Conclusion The chlorella polysaccharides via flash extraction-enzymolysis and colume chromatography had certain anti-angiogenic activity.
Keywords:chlorella polysaccharides  Flash extraction combinedSwith enzymaticSmethod  anti-angiogenic activity
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