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1)  ECV cell
ECV细胞
2)  ECV-304 cells
ECV-304细胞
1.
Protective effect of Ligustrazine bisphenylmethyl piperazine derivatives on ECV-304 cells injured by hydrogen peroxide;
川芎嗪二苯甲基哌嗪衍生物对ECV-304细胞氧化损伤的保护作用
2.
The effect of homocysteine on the production of nitric oxide and reactivated oxygen species in ECV-304 cells;
同型半胱氨酸对ECV-304细胞NO和ROS形成的影响
3.
Aim To observe the influence of carvedilol on the injury and expression of intercellular adhesion molecule-1 induced by hydrogen peroxide in ECV-304 cells and investigate the anti-atherosclerotic effect of carvedilol.
方法采用H2O2作为外源性自由基生成系统,模拟内皮细胞的脂质过氧化损伤,建立离体培养的ECV-304细胞氧化应激损伤模型,观察卡维地洛对H2O2致内皮细胞损伤及表面粘附分子表达的影响。
3)  ECV-304 cell
ECV-304细胞
1.
Effects of artemether on cell proliferation and cell cycle in SGC-7901 cells and ECV-304 cells in vitro
蒿甲醚对体外培养SGC-7901细胞及ECV-304细胞增殖及细胞周期的影响
2.
Objective To investigate whether low dose vinblastine(VBL) could inhibit migration and tubular morphogenesis of ECV-304 cells in vitro.
目的研究在体外培养中低浓度长春花碱(VBL)对ECV-304细胞的迁移及管样结构生成的影响。
4)  ECV-304
ECV-304细胞
1.
Searching for Altered Altered Gene Expression of Homocysteine Treated ECV-304 Cells by cDNA Microarry;
应用基因芯片研究同型半胱氨酸对ECV-304细胞基因谱表达的影响
2.
Protective Effects of Radix Astragali on Diabetic Rats and ECV-304 Exposed to High Glucose;
黄芪注射液对糖尿病大鼠及高糖环境下ECV-304细胞的保护作用
3.
Human umbilical endothelium cells (ECV-304) were induced by different concentrations of Aβ40 (0.
Aβ40诱导ECV-304细胞损伤30min、3h、3d后,倒置显微镜观察形态学变化;四甲基偶氮唑蓝(methyl thiazolyl tetrazolium,MTT)法检测3d时Aβ40(0。
5)  ECV-304 cell line
ECV-304细胞系
1.
Methods The ECV-304 cell line was supplemented with Sodium Morrhuate and lipo-Sodium Morrhuate in order,and the result on morphology(microscope,Giemsa Staining and electron microscope),cell activity(MTT),and flow cytometer between the two preparation were compared.
目的对比研究鱼肝油酸钠的普通剂型和脂质体剂型对ECV-304细胞系的病理作用。
6)  advanced oxidation protein products
内皮细胞ECV-304
1.
Effects of advanced oxidation protein products modified protein on human umbilical vein endothelial cells;
高级蛋白氧化产物对人脐静脉内皮细胞ECV-304的作用
补充资料:EC
    乙基纤维素分子式为[C6H7O2(OC2H5)3]n。是由氯乙烷与碱纤维素醚化而得。白色粒状固体或纤维,相对密度1.07-1.18。软化点100-130 ℃。耐寒性优良,-40℃时仍有足够的弹性。不易燃烧,吸湿性小,透明度高。具有高度的化学稳定性。
    EC醚化度大小影响溶解性、吸水性、力学性能和热性能。醚化度升高,在碱液中溶解变小,而在有机溶剂中溶解度增大。溶于许多有机溶剂。常用的溶剂是甲苯/乙醇为4/1〔重量〕的混合溶剂。醚化度提高,软化点和吸湿性降低,使用温度-60 ℃~85℃。拉伸强度13.7-54.9 MPa。耐热性(120 ℃/16h)无变黄、结块、焦化。可用于配制胶粘剂。贮存于阴凉、通风、干燥的库房内。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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