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1)  cichorigenin
七叶苷原
2)  esculin ['eskjulin]
七叶苷
1.
Method Ultraviolet mutation was employed to screen resistant mutants to esculin; on the basis,using the uniform design to optimize the ferment medium.
方法采用紫外线诱变处理 ,对大量抗七叶苷 (esculin)突变株进行初筛、复筛 ;在此基础上 ,利用均匀设计方法对发酵培养基成分进行优化组合。
2.
8-26 which can resist high level Esculin was obtained by using HNO2 to treat the parent strain and increasing the dosage of Esculin.
7-66(HS+,AECrr,TArr,ESr)为出发菌种,对菌体进行亚硝酸诱变处理,并且通过提高抗七叶苷[1,2]剂量,筛选得到高抗七叶苷突变株E0。
3)  aescin
七叶皂苷
1.
Extraction and purification of aesculi's aescin;
娑罗子中七叶皂苷的提取分离与纯化
2.
Determination of Aescin Ia in Aesculus Chinesis Bunge Preparation by HPLC;
测定七叶树制剂中七叶皂苷Ia含量的高效液相色谱法
3.
Change of brain aquaporin-4 mRNA expression and effect of aescin(七叶皂苷) treatment during cerebral edema following cardiopulmonary resuscitation in rats;
七叶皂苷对心肺复苏后大鼠脑水肿期脑水通道蛋白4 mRNA变化的作用
4)  escins
七叶皂苷
1.
Anti-Obesity Study on Panaxsaponins and Escins;
人参皂苷及七叶皂苷抗肥胖活性研究
2.
In order to develop the accelerated solvent extraction(ASE) method for escins in Aesculi and compare the advantage of this method with other extraction methods,the optimum technological parameters for ASE extraction were obtained by making the single factor experiments.
为了探讨快速溶剂提取法(ASE)提取娑罗子中七叶皂苷的可行性,并比较该方法与回流提取法和超声提取法的优越性。
5)  aescine
七叶皂苷
1.
Protective effects of aescine on cerebral damage caused by severe acute pancreatitis in rats;
七叶皂苷对胰腺炎大鼠脑损害保护作用的实验研究
2.
Efficacy and safety of aescine in treating post-traumatic and operative swellings of limbs;
七叶皂苷治疗四肢创伤及其手术后肿胀的疗效和安全性
3.
Intravenous infusion of aescine induced two patients with cutaneous eruption;
静脉输注七叶皂苷致皮疹2例
6)  escin ['eskin]
七叶皂苷
1.
Effect of sodium aescinate on neuron apoptosis in focal cerebral ischemia of rats;
七叶皂苷钠对大鼠脑缺血损伤中神经细胞凋亡的影响
2.
Protection of Sodium Aescinate on Focal Cerebral Ischemia;
七叶皂苷钠对缺血性脑损伤的保护作用机制
3.
Intellectual property protection for pharmaceuticals and application of escin preparations
知识产权保护与七叶皂苷制剂的应用
补充资料:七叶苷原
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性质:又称6,7-二羟基香豆素,七叶亭,七叶苷原,马栗树皮素。属香豆素类化合物。棱柱状结晶(冰醋酸)、叶状结晶真空升华,熔点268~270℃,溶于稀碱显蓝色荧光,可溶于热乙醇及冰醋酸,几乎不溶于乙醚和水。来源于芸香科植物柠檬(Citrus limonia Osbeck)的叶,木犀科植物苦杨白蜡树(Fraxinus rhychophylla Hance)的树皮及颠茄、曼陀罗、地黄植物等中。能使菲林氏液(FeHling’S Soln.)还原。遇三氯化铁呈绿色。可用作试剂。其衍生物6-甲醚即莨菪亭。动物实验显示具有显著的抗炎作用和一定的抑菌活性。还可用在紫外光吸收的滤波器中。

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