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提高西洋参细胞生长和皂甙生产的几种方法研究 被引量:3
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作者 袁丽红 欧阳平凯 冯新 《南京化工学院学报》 1994年第1期72-77,共6页
以三年生西洋参根为材料进行了愈伤组织的诱导和细胞株系的筛选;同时探讨了不同培养基、不同碳源、不同添加物以及不同钙离子浓度对西洋参细胞生长和总皂甙生产的影响,试验结果发现;MS培养基有利于西洋参细胞的生长,而皂甙含量的... 以三年生西洋参根为材料进行了愈伤组织的诱导和细胞株系的筛选;同时探讨了不同培养基、不同碳源、不同添加物以及不同钙离子浓度对西洋参细胞生长和总皂甙生产的影响,试验结果发现;MS培养基有利于西洋参细胞的生长,而皂甙含量的B5培养基的培养结果为最佳。用白糖替代蔗糖(AR),可促进细胞生长及提高皂甙的产量,在MS培养基中添加2g/L酵母提取物时,细胞生长速率显著提高,细胞生长的最佳Ca2+浓度为4.49mmol/L,而皂甙生产的最佳Ca2+浓度为0.90mmol/L。 展开更多
关键词 西洋参 皂甙生产 细胞生长
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人参皂甙香口胶的制备及提高智力和运动功能的观察(英文) 被引量:3
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作者 丁玉玲 霍玉书 +3 位作者 顾清水 程永根 陈玉珍 陈寿农 《中国临床康复》 CSCD 2004年第16期3206-3207,共2页
目的:为增加人参皂甙的稳定性和提高生物利用度,研制了人参皂甙香口胶,并观察其保健作用。方法:将人参皂甙作为添加剂,按香口胶制备工艺制备,利用相关的药学方法进行了质量检测。观察人参皂甙对63名小学生及中学生(皂甙组)的学习成绩,... 目的:为增加人参皂甙的稳定性和提高生物利用度,研制了人参皂甙香口胶,并观察其保健作用。方法:将人参皂甙作为添加剂,按香口胶制备工艺制备,利用相关的药学方法进行了质量检测。观察人参皂甙对63名小学生及中学生(皂甙组)的学习成绩,同时观察其对老年人免疫功能的作用。结果:皂甙组学生数学考试成绩提高的人数明显比对照组多(P<0.01);老年人免疫功能、动作及平衡力也明显提高(P<0.01)结论:人参皂甙香口胶质量稳定,具有保健作用。 展开更多
关键词 人参/生产和制备 生物利用度 卫生保健提供
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High efficiency production of ginsenoside compound K by catalyzing ginsenoside Rb1 using snailase 被引量:5
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作者 Zhiguang Duan Chenhui Zhu +5 位作者 Jingjing Shi Daidi Fan Jianjun Deng Rongzhan Fu Rong Huang Cuiying Fan 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2018年第7期1591-1597,共7页
The rare ginsenoside Compound K (C-K) is attracting more attention because of its good physiological activity and urgent need. There are many pathways to obtain ginsenoside C-K, including chemical and biological met... The rare ginsenoside Compound K (C-K) is attracting more attention because of its good physiological activity and urgent need. There are many pathways to obtain ginsenoside C-K, including chemical and biological methods. Among these, the conversion of PPD-type ginsenosides by enzymatic hydrolysis is a trend due to its high efficiency and mild conditions. For effectively extracting from the other panaxadiol saponins, the conversion process for ginsenoside C-K was investigated using snailases in this study. The univariate experimental design and response surface methodology were used to determine the optimal hydrolysis conditions for the conversion of ginsenoside Rbl into ginsenoside C-K by snailases. The optimum conditions were as follows: pH 5,12, temperature 51 ℃, ratio of snailase/substrate 0.21, and reaction time 48 h. On the basis of these parameters, the addition of 1.0 mmol· L- 1 ferric ion was found to significantly improve the enzymolysis ofsnailases for the first time. With the above conditions, the maximum conversion rate reached 89.7%, suggesting that the process can obviously increase the yield of ginsenoside C-K. The bioassay tests indicated that the ginsenoside C-K showed anti-tumor activity in a series of tumor cell lines. Based on these results, we can conclude that the process of rare ginsenoside C- K production by enzymolysis with snailase is feasible, efficient, and suitable for the industrial production and application. 展开更多
关键词 GINSENOSIDE Rb1 Ginsenoside Compound K Snailase ENZYMOLYSIS
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