1) glabrene
光甘草素
2) isoliquiritigenin
异甘草素
1.
Optimization ultrasonic extraction process of isoliquiritigenin by orthogonal method;
正交实验优化异甘草素超声提取工艺
2.
Cytoprotective effect and its mechanisms of isoliquiritigenin on acetaminophen induced acute injury of hepatocytes;
异甘草素对醋氨酚诱导的急性肝细胞损伤的保护作用
3.
Inhibitive effects of isoliquiritigenin combined with Flutamide on proliferation of human prostate cancer cells in vitro;
异甘草素和Flutamide联合应用对人前列腺癌细胞体外增殖的抑制作用
3) glycyrrhizin
甘草甜素
1.
The physiological function of glycyrrhizin and its application in food industry;
甘草甜素的生理功能及其在食品工业中的应用
2.
Study on extracting technics of natural sweet agent glycyrrhizin;
甘草甜素的提取工艺研究
3.
Effects of Glycyrrhizin on the Expression of Hepatitis B Virus and Toll Like Receptors 2,4 in HepG2.2.15 Cells Expressing Low HBsAg;
甘草甜素对HBsAg低表达HepG2.2.15细胞株HBV感染及TLR2、4的影响
4) liquiritigenin
甘草素
1.
Determination of liquiritin、liquiritigenin and iso-liquiritigenin in Licorice Mixture by HPLC;
HPLC双波长法测定复方甘草合剂中甘草苷、甘草素及异甘草素的含量
2.
In vitro inhibition of rat monoamine oxidase by liquiritigenin and isoliquiritigenin isolated from Sinofranchetia chinensis;
串果藤中甘草素和异甘草素对大鼠单胺氧化酶的体外抑制作用(英文)
3.
Investigation of the detection of double stranded DNA and its damage by liquiritigenin with copper(II) on multi-walled carbon nanotubes;
DNA在纳米碳管上的检测及甘草素-Cu(II)对DNA的损伤研究
5) licorice root sheet
甘草纤素
1.
Objective: Through investigiting the protective effect of licorice root sheet on acute chemical hepatic injury inratmodels.
目的:了解甘草纤素对大鼠化学性肝损伤的保护作用。
6) glycyrrhizine
甘草素
1.
The effect of glycyrrhizine (Gly) from licorice( Glycyrrhiza glabra ) as a adjuvant in vaccines against bacterial septicemia in mandarinfish( Siniperca chuatsi Basilewsky) was studied.
从甘草中提取的甘草素 (Gly)添加在翘嘴鳜细菌性败血症的 2种疫苗 ,即福尔马林灭活嗜水气单胞菌 (FKC)和菌体脂多糖 (LPS)中 ,经添加Gly的疫苗接种后 ,受免翘嘴鳜头肾中白细胞的吞噬活性和经活菌攻毒后的免疫保护率显著高于未添加Gly疫苗的免疫组 (t测验 ,P <0 。
补充资料:光甘草素
分子式:
CAS号:
性质:无色板状结晶(由苯-丙酮95:5),熔点198~202℃(分解),吉布斯反应(Gibbs reac.)呈阳性,但筱田反应(Shinoda reac.)呈阴性,UV248,281,297,324cm-1,性质不稳定。从甘草(Glycyrrhiza glabra L.)中提取。医药上用作抗氧化剂,并可美容。
CAS号:
性质:无色板状结晶(由苯-丙酮95:5),熔点198~202℃(分解),吉布斯反应(Gibbs reac.)呈阳性,但筱田反应(Shinoda reac.)呈阴性,UV248,281,297,324cm-1,性质不稳定。从甘草(Glycyrrhiza glabra L.)中提取。医药上用作抗氧化剂,并可美容。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条