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香港海藻网胰藻中抗病毒活性多糖的分离与纯化 被引量:2
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作者 王辉 黄荣春 伍泽赓 《中国科学(C辑)》 CSCD 北大核心 2007年第5期508-515,共8页
采用生物活性追踪的方法从香港海藻网胰藻(Hydroclathrus clathratus)中分离具有抗病毒活性的多糖,其中H3-a1和H3-b1纯度较高,它们表现出很强的抗单纯疱疹病毒Ⅱ型活性,且细胞毒性很小.通过高压液相色谱(HPLC)、紫外扫描、气相色谱、红... 采用生物活性追踪的方法从香港海藻网胰藻(Hydroclathrus clathratus)中分离具有抗病毒活性的多糖,其中H3-a1和H3-b1纯度较高,它们表现出很强的抗单纯疱疹病毒Ⅱ型活性,且细胞毒性很小.通过高压液相色谱(HPLC)、紫外扫描、气相色谱、红外分光光谱和元素分析等方法对这2种多糖进行鉴定,发现它们是2种由不同单糖成分组成的高分子量硫酸多糖,分别含有一定量的蛋白质和糖醛酸.同时,从网胰藻水提物中分离到的多糖显示较低的抗凝血活性.在分离纯化过程中,多糖的抗病毒活性随着硫酸基含量的变化而变化. 展开更多
关键词 香港海藻 网胰藻 抗病毒多糖 多糖鉴定
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In Vitro Anti-influenza Virus Activities of Sulfated Polysaccharide Fractions from Gracilaria lemaneiformis 被引量:21
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作者 Mei-zhen CHEN Hao-gui XIE La-wei YANG Zao-hui LIAO Jie YU 《Virologica Sinica》 SCIE CAS CSCD 2010年第5期341-351,共11页
In this paper, in vitro anti-influenza virus activities of sulfated polysaccharide fractions from Gracilaria lemaneiforrnis were investigated. Cytotoxicities and antiviral activities of Gracilaria lemaneiformis polysa... In this paper, in vitro anti-influenza virus activities of sulfated polysaccharide fractions from Gracilaria lemaneiforrnis were investigated. Cytotoxicities and antiviral activities of Gracilaria lemaneiformis polysaccharides (PGL), Gracilaria lemaneiformis polysaccharide fraction-1 (GL-1), Gracilaria lemaneiformis polysaccharide fraction-2 (GL-2) and Gracilaria lemaneiformis polysaccharide fraction-3 (GL-3) were studied by the Methyl thiazolyl tetrazolium (MTT) method, and the inhibitory effect against Human influenza virus H1-364 induced cytopathic effect (CPE) on MDCK cells were observed by the CPE method. In addition, the antiviral mechanism of PGL was explored by Plaque forming unit (PFU), MTT and CPE methods. The results showed: i) Cytotoxicities were not significantly revealed, and H1-364 induced CPE was also reduced treated with sulfated polysaccharide fractions from Gracilaria lemaneiformis; ii) Antiviral activities were associated with the mass percentage content of sulfate groups in polysaccharide fractions, which was about 13%, in polysaccharides (PGL and GL-2) both of which exhibited higher antiviral activity; iii) A potential antiviral mechanism to explain these observations is that viral adsorption and replication on host cells were inhibited by sulfated polysaccharides from Gracilaria lemaneiformis. In conclusion, Anti-influenza virus activities of sulfated polysaccharide fractions from Gracilaria lemaneiformis were revealed, and the antiviral activities were associated with content of sulfate groups in polysaccharide fractions 展开更多
关键词 Gracilaria lemaneiformis Sulfated polysaccharide Antiviral activity Human influenza virusH1-364
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Properties of Polysaccharides in Several Seaweeds from Atlantic Canada and Their Potential Anti-Influenza Viral Activities 被引量:6
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作者 JIAO Guangling YU Guangli +3 位作者 WANG Wei ZHAO Xiaoliang ZHANG Junzeng Stephen H. Ewart 《Journal of Ocean University of China》 SCIE CAS 2012年第2期205-212,共8页
To explore the polysaccharides from selected seaweeds of Atlantic Canada and to evaluate their potential anti-influenza virus activities, polysaccharides were isolated from several Atlantic Canadian seaweeds, includin... To explore the polysaccharides from selected seaweeds of Atlantic Canada and to evaluate their potential anti-influenza virus activities, polysaccharides were isolated from several Atlantic Canadian seaweeds, including three red algae (Polysiphonia lanosa, Furcellaria lumbricalis, and Palmaria palmata), two brown algae (Ascophyllum nodosum and Fucus vesiculosus), and one green alga (Ulva lactuca) by sequential extraction with cold water, hot water, and alkali solutions. These polysaccharides were ana-lyzed for monosaccharide composition and other general chemical properties, and they were evaluated for anti-influenza virus activities. Total sugar contents in these polysaccharides ranged from 15.4% (in U. lactuca) to 91.4% (in F. lumbricalis); sulfation level was as high as 17.6% in a polysaccharide from U. lactuca, whereas it could not be detected in an alikali-extract from P. palmaria. For polysaccharides from red seaweeds, the main sugar units were sulfated galactans (agar or carrageenan) for P. lanosa, F. lumbricalis, and xylans for P. palmata. In brown seaweeds, the polysaccharides largely contained sulfated fucans, whereas the polysaccharides in green seaweed were mainly composed of heteroglycuronans. Screening for antiviral activity against influenza A/PR/8/34 (H1N1) virus revealed that brown algal polysaccharides were particularly effective. Seaweeds from Atlantic Canada are a good source of marine polysaccharides with potential antiviral properties. 展开更多
关键词 POLYSACCHARIDES anti-influenza viral activity monosaccharide composition H1N1
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Antiviral Activity of GuiQi Polysaccharides against Enterovirus 71 in vitro 被引量:6
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作者 Xiuying Pu Hengrui Wang +2 位作者 Yan Li Wenbo Fan Shuang Yu 《Virologica Sinica》 SCIE CAS CSCD 2013年第6期352-359,共8页
In this study,we have investigated the antiviral activity of GuiQi polysaccharides (GQP) upon enterovirus 71 (EV71) in vitro.An assay using methyl thiazolyl tetrazolium (MTT),and analyses of cytopathic effects (CPE)we... In this study,we have investigated the antiviral activity of GuiQi polysaccharides (GQP) upon enterovirus 71 (EV71) in vitro.An assay using methyl thiazolyl tetrazolium (MTT),and analyses of cytopathic effects (CPE)were used to examine the antiviral activity of GQP upon Vero cells infected with EV71.The results revealed that GQP at concentrations below 31.2μg/mL exhibited significant antiviral effects upon EV71 when applied under three different experimental protocols.GQP was most strongly active in preventing the adsorption of EV71 to target cells and in this respect it was significantly more effective than ribavirin.In addition,it was clear that GQP could inhibit viral replication when added to cells 2 h after infection,but if added at the point of infection its effect was weak.GQP is considered to be less toxic than ribavirin,and may warrant further evaluation as a possible agent in the treatment of hand,foot and mouth disease (HFMD). 展开更多
关键词 Enterovirus 71(EV71) GuiQi polysaccharides (GQP) Vero cells Antiviral activity In vitro
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