Water-soluble polysaccharide was isolated from grapefruit with the method of water-dissolving and ethanol-precipitating. By single factor test and orthogonal experimental method, the extraction conditions of the water...Water-soluble polysaccharide was isolated from grapefruit with the method of water-dissolving and ethanol-precipitating. By single factor test and orthogonal experimental method, the extraction conditions of the water-soluble polysaccharide were investigated, which contained liquid-solid ratio, temperature, time and pH. The results showed that pH was the most important factor of polysaccharide extraction, followed by temperature. The optimized extraction technology conditions were obtained. The liquid-solid ratio was 1:40, temperature was 90?C, time was 2.0 h, and pH was 2. The highest extraction rate of crude polysaccharide was 8.30%.展开更多
Carboxymethylpachyman(Ⅰ)was formed by carboxymethylation of β-pachyman.The antitumour activity of carboxymethylpachyman(Ⅰ)against S_(180)、EAC、 MA、U_(14)was measured.The structure of carboxymethylpachyman(Ⅰ)was ...Carboxymethylpachyman(Ⅰ)was formed by carboxymethylation of β-pachyman.The antitumour activity of carboxymethylpachyman(Ⅰ)against S_(180)、EAC、 MA、U_(14)was measured.The structure of carboxymethylpachyman(Ⅰ)was proved by IR ^(13)CNMR spectroscopy.展开更多
A polysaccharide,PS(1),has been isolated from the pollen of papaver somniferum.PS(1)is a highly branched arabinogalactan,which,mainly contains α—L—arabinofuranosyl(1→)and(3,6→1)— β—D—galactopyranosyl residues...A polysaccharide,PS(1),has been isolated from the pollen of papaver somniferum.PS(1)is a highly branched arabinogalactan,which,mainly contains α—L—arabinofuranosyl(1→)and(3,6→1)— β—D—galactopyranosyl residues.We also studied the circular dichroism and immunoactivity of PS(1).展开更多
对豆皮采用热水浸提得到豆皮水溶性多糖,通过DEAE-cellulose离子交换柱洗脱,得到3个组分。本文主要研究了采用0.3 M NaOH溶液洗脱纯化得到的组分SHP-3的物化性质。对SHP-3进行凝胶渗透色谱、气相色谱分析、紫外光谱及高碘酸氧化-Smith...对豆皮采用热水浸提得到豆皮水溶性多糖,通过DEAE-cellulose离子交换柱洗脱,得到3个组分。本文主要研究了采用0.3 M NaOH溶液洗脱纯化得到的组分SHP-3的物化性质。对SHP-3进行凝胶渗透色谱、气相色谱分析、紫外光谱及高碘酸氧化-Smith降解分析,结果表明:SHP-3的分子量为45554,其糖醛酸含量为26.71%(wt.%),单糖组成摩尔比为Rah:Fuc:Ara:Xyl:Man:Gal:Glu=3.55:0.44:11.58:1:7.45:5.12:1.12,紫外光谱在260~280 nm没有吸收峰,表明没有蛋白质或核酸等物质;高碘酸氧化-Smith降解结果表明SHP-3的连接结构以为(1→4)糖苷键为主,其摩尔比例占68.9%,(1→2)糖苷键占11.4%,(1→6)糖苷键占19.7%。展开更多
目的以黄精生品及酒制品中水溶性多糖为研究对象,对两者抗氧化活性进行研究。方法通过水提、醇沉、除蛋白透析得黄精生品水溶性多糖和酒制品水溶性多糖;采用还原力实验、1-二苯基-2-三硝基苯肼(DPPH)、羟基自由基(·OH)及超氧阴离...目的以黄精生品及酒制品中水溶性多糖为研究对象,对两者抗氧化活性进行研究。方法通过水提、醇沉、除蛋白透析得黄精生品水溶性多糖和酒制品水溶性多糖;采用还原力实验、1-二苯基-2-三硝基苯肼(DPPH)、羟基自由基(·OH)及超氧阴离子自由基(·O-2)清除法对其抗氧化活性进行评价;建立Cu^(2+)/H_(2)O_(2)诱导的BSA蛋白损伤模型,评价两者对氧化损伤蛋白的保护作用;建立体外H_(2)O_(2)诱导的RAW264.7细胞氧化损伤模型,对细胞活力、细胞中T-SOD、CAT、GSH酶活力及MDA、ROS含量进行测定,评价两者对氧化损伤细胞的保护作用。结果通过水提醇沉得黄精生品水溶性多糖(Polysaccharides from crude Polygonatum sibiricum,PSPC)和酒制品水溶性多糖(Polysaccharides from wine-processed Polygonatum sibiricum,PSPW)。抗氧化研究结果表明PSPC和PSPW均有一定的还原力、清除DPPH自由基、清除超氧阴离子自由基和清除羟基自由基能力;PSPC和PSPW对Cu^(2+)/H_(2)O_(2)诱导的BSA蛋白损伤有一定的保护作用;PSPC和PSPW对H_(2)O_(2)诱导的RAW264.7细胞活力降低有保护作用,对氧化损伤细胞内T-SOD和GSH酶活力降低有恢复作用,对MDA和ROS升高有抑制作用并呈一定的浓度依赖性,PSPW抗氧化活性均显著强于PSPC(P<0.05)。结论黄精酒制后其水溶性多糖PSPW抗氧化活性增强,PSPW可作为一种潜在天然抗氧化剂,为后续黄精酒制机制深入研究以及黄精多糖保健品开发提供研究基础。展开更多
文摘Water-soluble polysaccharide was isolated from grapefruit with the method of water-dissolving and ethanol-precipitating. By single factor test and orthogonal experimental method, the extraction conditions of the water-soluble polysaccharide were investigated, which contained liquid-solid ratio, temperature, time and pH. The results showed that pH was the most important factor of polysaccharide extraction, followed by temperature. The optimized extraction technology conditions were obtained. The liquid-solid ratio was 1:40, temperature was 90?C, time was 2.0 h, and pH was 2. The highest extraction rate of crude polysaccharide was 8.30%.
文摘Carboxymethylpachyman(Ⅰ)was formed by carboxymethylation of β-pachyman.The antitumour activity of carboxymethylpachyman(Ⅰ)against S_(180)、EAC、 MA、U_(14)was measured.The structure of carboxymethylpachyman(Ⅰ)was proved by IR ^(13)CNMR spectroscopy.
文摘A polysaccharide,PS(1),has been isolated from the pollen of papaver somniferum.PS(1)is a highly branched arabinogalactan,which,mainly contains α—L—arabinofuranosyl(1→)and(3,6→1)— β—D—galactopyranosyl residues.We also studied the circular dichroism and immunoactivity of PS(1).
基金supported by Program for New Century Excellent Talents in University(NCET-06-0746)
文摘对豆皮采用热水浸提得到豆皮水溶性多糖,通过DEAE-cellulose离子交换柱洗脱,得到3个组分。本文主要研究了采用0.3 M NaOH溶液洗脱纯化得到的组分SHP-3的物化性质。对SHP-3进行凝胶渗透色谱、气相色谱分析、紫外光谱及高碘酸氧化-Smith降解分析,结果表明:SHP-3的分子量为45554,其糖醛酸含量为26.71%(wt.%),单糖组成摩尔比为Rah:Fuc:Ara:Xyl:Man:Gal:Glu=3.55:0.44:11.58:1:7.45:5.12:1.12,紫外光谱在260~280 nm没有吸收峰,表明没有蛋白质或核酸等物质;高碘酸氧化-Smith降解结果表明SHP-3的连接结构以为(1→4)糖苷键为主,其摩尔比例占68.9%,(1→2)糖苷键占11.4%,(1→6)糖苷键占19.7%。
文摘目的以黄精生品及酒制品中水溶性多糖为研究对象,对两者抗氧化活性进行研究。方法通过水提、醇沉、除蛋白透析得黄精生品水溶性多糖和酒制品水溶性多糖;采用还原力实验、1-二苯基-2-三硝基苯肼(DPPH)、羟基自由基(·OH)及超氧阴离子自由基(·O-2)清除法对其抗氧化活性进行评价;建立Cu^(2+)/H_(2)O_(2)诱导的BSA蛋白损伤模型,评价两者对氧化损伤蛋白的保护作用;建立体外H_(2)O_(2)诱导的RAW264.7细胞氧化损伤模型,对细胞活力、细胞中T-SOD、CAT、GSH酶活力及MDA、ROS含量进行测定,评价两者对氧化损伤细胞的保护作用。结果通过水提醇沉得黄精生品水溶性多糖(Polysaccharides from crude Polygonatum sibiricum,PSPC)和酒制品水溶性多糖(Polysaccharides from wine-processed Polygonatum sibiricum,PSPW)。抗氧化研究结果表明PSPC和PSPW均有一定的还原力、清除DPPH自由基、清除超氧阴离子自由基和清除羟基自由基能力;PSPC和PSPW对Cu^(2+)/H_(2)O_(2)诱导的BSA蛋白损伤有一定的保护作用;PSPC和PSPW对H_(2)O_(2)诱导的RAW264.7细胞活力降低有保护作用,对氧化损伤细胞内T-SOD和GSH酶活力降低有恢复作用,对MDA和ROS升高有抑制作用并呈一定的浓度依赖性,PSPW抗氧化活性均显著强于PSPC(P<0.05)。结论黄精酒制后其水溶性多糖PSPW抗氧化活性增强,PSPW可作为一种潜在天然抗氧化剂,为后续黄精酒制机制深入研究以及黄精多糖保健品开发提供研究基础。