Construction and Application of siRNA Plasmid for Glucagons-like Peptide 1 Receptor Study on the antagonist effects of caffeic acid, ferulic acid and their analogs on ET1 biological responses GLP-1受体siRNA表达载体的构建咖啡酸和阿魏酸及其类似物对内皮素-1生物效应的拮抗作用
RP-HPLC simultaneous determination of chlorogenic acid, caffeic acid and 4-hydroxyacetophenone in herb of Artemisia capillaris Thunb. under different UV-vis wavelengths hydroxy acetophenone 双波长RP-HPLC法同时测定茵陈蒿中绿原酸、咖啡酸和对羟基苯乙酮的含量
Simultaneous determination of caffeic acid, quercetin and campherenol from Hedyotis diffusa Willd by HPLC HPLC同时测定白花蛇舌草中咖啡酸、槲皮素和山柰酚
Objective: To observe the inhibitory effect of germanium caffeic acid on the tumor U14. 目的:观察咖啡酸锗对小鼠子宫颈癌14号(U14)的作用。
Simultaneous determination of the contents of chlorogenic acid and caffeic acid in Solanum lyratum Thunb. by RP-HPLC RP-HPLC法同时测定白英中绿原酸及咖啡酸的含量
Objective: To investigate the effects of Caffeic acid Ge on telomerase activity and apoptosis on H22 cancer cells in mice. 目的:探讨咖啡酸锗对小鼠肝癌H22端粒酶活性及细胞凋亡的影响。
Determination of Esculetin and Caffeic Acid in Puding Mixture by RP-HPLC HPLC法同时测定蒲丁合剂中秦皮乙素和咖啡酸的含量
The Characterization of the Metabolites of Caffeic Acid in Rats by LC/ MS~ n LC/MS~n鉴定咖啡酸在大鼠体内的代谢产物
In addition, the effect of caffeic acid on the conformation of BSA was analyzed using synchronous fluorescence spectroscopy. 另外,利用同步荧光法考察了咖啡酸对牛血清白蛋白构象的影响。
Extraction of Total Polyphenols in Mesona Blume and Determination of their Caffeic Acid 凉粉草总多酚的提取及其咖啡酸的检测
Methyl ester of caffeic acid and3,4-diacetyl-caffeic acid can cross the BBB and can thus be used as brain targets. 咖啡酸甲酯和3,4-二乙酰基咖啡酸能突破血脑屏障具有脑靶向性特点。
Results: Caffeic acid Ge could induced H22 cells apoptosis and inhibit telomerase activity by different concentrations. 结果:咖啡酸锗能诱导H22细胞凋亡以及抑制端粒酶的活性,并与药物浓度有关。
The Effects of Caffeic Acid and Ferulic Acid on ET 1 of DOCA salt Hypertensive Rats 咖啡酸、阿魏酸对醋酸去氧皮质酮-盐高血压大鼠内皮素1作用的研究
Protective effect of caffeic acid on damage induced by aluminum-overload in primary cultured rat hippocampal neuron 咖啡酸对大鼠海马神经元铝盐损伤的保护作用
Caffeic acid quenched the fluorescence of BSA through a static process. 实验表明,咖啡酸对BSA的荧光猝灭为静态猝灭。
Conclusion: Caffeic acid Ge could inhibit H22 cells telomerase activity and cell proliferation obviously and could also induce apoptosis. 结论:咖啡酸锗能显著抑制H22细胞端粒酶的活性,抑制其细胞增殖,诱导其细胞凋亡。
Clinical Observation of Caffeic Acid Combined with Cyclosporine, Androgen Treatment of Anemia Aplastic Anemia 联合咖啡酸治疗再生障碍性贫血临床观察
The primary binding pattern between caffeic acid and BSA included electrostatic and hydrophobic interaction, and the latter was identified to be the main force under physiological condition. 二者之间的作用力为静电引力和疏水作用力。在离子强度符合生理条件的情况下,以疏水作用力为主。
Effects of caffeic acid on brain damage induced by chronic aluminum overload in rats 咖啡酸对慢性铝过负荷致大鼠脑损伤的保护作用
Effects of caffeic acid on brain damage of alzheimer's disease model rats 咖啡酸对老年性痴呆模型大鼠脑损伤的保护作用
The effect of caffeic acid on absorption spectrum, color and composition of anthocyanins extracted from purple corn cobs were investigated. 研究咖啡酸对紫玉米花色苷溶液的吸收光谱、颜色和花色苷组分的影响。
Thermal stability experiments also exhibited that caffeic acid could inhibit the fading rate of anthocyanins, and increase their half-life and activation energy. 热稳定性实验结果表明,添加咖啡酸能抑制花色苷因热褪色的速率,而增加花色苷褪色反应的半衰期和活化能。
OBJECTIVE To determine the content of caffeic acid and chlorogenic acid in Taraxacum from different habitats. 目的比较不同产地姜厚朴气相指纹图谱,以确定最佳指纹图谱模式。
The binding reaction of caffeic acid with bovine serum albumin ( BSA) was studied using fluorescence spectroscopy. 采用荧光光谱法研究咖啡酸与牛血清白蛋白(BSA)结合反应。
Simultaneous Determination of Caffeic Acid and Ferulic Acid in Oral Liquid by RP-HPLC RP-HPLC同时测定口服液中的咖啡酸和阿魏酸
Introduce the advance in the research of caffeic acid phenethyl ester ( CAPE) in recent years. 介绍蜂胶中咖啡酸苯乙酯(CAPE)的最近研究进展;
Caffeic acid O-methyltransferase ( COMT) is an important methyltransferase in lignin biosynthesis. 咖啡酸3-O-甲基转移酶(COMT)是木质素合成途径中的一个重要甲基转移酶。
Conclusion Caffeic acid and ferulic acid are a new kind non-peptide ET antagonists. 放射性受体-配体结合实验表明,咖啡酸和阿魏酸可竞争性地抑制ET1与其受体结合。结论咖啡酸和阿魏酸为新的非肽类ET1拮抗剂。
But the polymerization and RA of chlorogenic acid and caffeic acid basically had no changes. 绿原酸和咖啡酸的聚合度和涩度则基本上没有太大的变化。
Luteolin ( 12) and caffeic acid ( 14) were the ACE inhibitory components of this plant. 其中木犀草素(12)和咖啡酸(14)为袋花忍冬中具有ACE抑制活性的化合物。