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- Keywords myocardial;reperfusion injury;taurine;dimethyl amiloride; 心肌;再灌注损伤;牛磺酸;二甲基氨氯吡咪;
- Keywords Myocardial;Reperfusion injury;Dimethyl amiloride;Amiloride; 心肌;再灌注损伤;二甲基氨氯吡咪;氨氯吡咪;
- Keywords dimethyl amiloride;sodium-hydrogen exchanger inhibitor;oleic acid;vascular endotheliurn; 关键词二甲基氨氯吡咪;钠氢交换抑制剂;油酸;血管内皮;
- ve:To study the protective effect of sodium-hydrogen exchanger inhibitor (NHEI) dimethyl amiloride ( DMA) against vascular endothelial injury induced by oleic acid ( OA). 目的:探讨钠氢交换抑制剂二甲基氨氯吡咪(DMA)对低浓度油酸(OA)所致的血管内皮损伤的保护作用。
- dimethyl amiloride 二甲基氨氯吡咪
- The crossoer also included amiloride and losartan. 交叉试验还包括了阿米洛利和氯沙坦组。
- The Dimethyl Sulfate has an annual output of 15,000 tons. 同时我司也是国内最大的磺胺类产品出口基地。
- Dimethyl ether (DME) is produced normally from syngas or methanol. 介绍了二甲醚的应用及其下游产品的开发利用情况。
- Dimethyl 5-sulfoisophthalate sodium salt hydrate, 98... 二甲基5-磺酸异邻苯二酸钠盐;
- Triethylene glycol dimethyl ether, stabilized, 99%... 三乙二醇二甲醚/三甘醇二甲醚;
- Acetone (or dimethyl ketone): Simplest and most important ketone (CH3COCH3). 丙酮:亦称二甲基酮:分子式为CH3COCH3,最简单和最重要的酮。
- Acetone (or dimethyl ketone): Simplest and most important ketone (CH3COCH3). 丙酮:亦称二甲基酮:分子式为CH3COCH3,最简单和最重要的酮。
- Study on the kinetics of dimethyl ether one step synthesis from syngas. 合成气一步法制二甲醚的动力学研究
- Recent methods of dimethyl fumarate synthesis are reviewed in this article. 本文对近年来富马酸二甲酯的合成方法进行了评述。
- Dimethyl dioxirane was prepared with potassium monoperoxy sulfate and acetone. 通过过一硫酸和丙酮反应,合成了新型高效的氧化剂二甲二氧环烷。
- Secondary objecties were to compare the dose response for each diuretic and to ealuate amiloride as an alternatie to spironolactone. 其次我们比较了每一种利尿药的剂量反应并对阿米洛利作为安体舒通的替代药物进行药效评估。
- Green environmental protection, harmful solvents are free such as dimethyl benzene, methanal ect. 绿色环保,不含二甲苯、甲醛等有害溶剂。
- Methods of qualitative and quantitative analysis for benzene,toluene,ethyl benzene,dimethyl benzene in blood and urine. 血、尿中的苯、甲苯、乙苯、二甲苯的定性及定量分析方法.
- Pressure-Enhanced Molecular Clustering in Liquid Dimethyl Sulfoxide Studied by Raman Spectroscopy. 通过拉曼光谱镜观察到的:压力下液体二甲亚砜中分子聚类现象。
- Ketenes, notably dimethyl ketene, readily undergo oligomerization and polymerization. 烯酮,特别是二甲基烯酮,很容易齐聚和聚合。