硒-甲基硒代半胱氨酸,Se-methylselenocysteine
1)Se-methylselenocysteine硒-甲基硒代半胱氨酸
1.Apoptosis Induced by Se-methylselenocysteine in Liver Carcinoma Cells HepG_2;硒-甲基硒代半胱氨酸诱导肝癌HepG_2细胞凋亡作用
2.Inhibition on liver carcinoma cells HepG_2 by Se-methylselenocysteine;硒-甲基硒代半胱氨酸对肝癌HepG_2细胞的抑制作用
3.Synthesis and resolution of Se-methylselenocysteine;硒-甲基硒代半胱氨酸的合成与拆分研究
英文短句/例句

1.Determination of Se-methylselenocysteine by HPLC高效液相色谱法测定硒-甲基硒代半胱氨酸
2.Overexpression of Selenocysteine Methyltransferase Gene on Physiological Effect of Selenate Stress in Tobacco超表达硒代半胱氨酸甲基转移酶基因对烟草硒酸盐胁迫的生理效应
3.Studies on the Transcription and Expression Levels of Selenocysteine Methyltransferase in the Leaves of Camellia Sinensis茶树叶片中硒代半胱氨酸甲基转移酶转录与表达水平的研究
4.The Bioelectrochemistry Study of Cysteine and Seleno-cystine;半胱氨酸和硒代胱氨酸的生物电化学研究
5.Studies on the Synthesis of Thiocarbamates by Selenium-Catalyzed Carbonylation;硒催化羰基化合成硫代氨基甲酸脂的研究
6.The optimization of the expression condition of Sec in Escherichia coli大肠杆菌表达系统中硒代半胱氨酸表达条件的优化
7.Amino acid, especially Cys and Met of tea protein was increased with increasing selenium content of tea.富硒茶粗蛋白质中胱氨酸、甲硫氨酸的含量随茶叶含硒量提高而增加。
8.Mechanism of Selenium-Catalyzed Carbonylation to Thiocarbamates under Mild Conditions温和条件下硒催化羰基化合成硫代氨基甲酸酯机理
9.Electrochemical Properties of Sodium Selenite on a Bionic Membrane of Gold Electrode Modified by L-Cysteine Self-assembled Monolayer亚硒酸钠在L-半胱氨酸自组装类生物膜修饰电极上的电化学行为
10.Electrochemical Studies on Interaction between Selenocystine Self-Assembled Monolayers and Inorganic Ions;硒代胱氨酸自组装膜与无机离子相互作用的电化学研究
11.Electrochemical Reaction of Cytochrome c at Selenocystine Self-assembled Monolayers Modified Electrodes细胞色素c在硒代胱氨酸修饰电极上的直接电化学
12.Study on Electrochemical Feature of Seleno-amino Acids and its Application in Analysis;硒代氨基酸的电化学性质及其分析应用研究
13.Cysteine A sulfur-containing AMINO ACID synthesized from methionine and serine.半胱氨酸:由甲硫氨酸和丝氨酸合成的含硫的氨基酸。
14.Process Improvement on the Synthesis of (R)-2-methylcysteine Hydrochloride(R)-2-甲基半胱氨酸盐酸盐的合成方法改进
15.This method is based on the selective reaction of 2,3diaminonaphthalene with Se() in acid medium, and the Se() can be directly determined.基于酸性介质中2,3-二氨基萘与硒(Ⅳ)的选择性反应,直接测定硒(Ⅳ);
16.The Prepare of Selenocystine Self-assembly Monolayers Modified Electrodes and It s Application in Study on Electrochemistry Reaction of Cytochrome c;硒代胱氨酸修饰电极的研制及其在细胞色素c电化学研究中的应用
17.Synthesis of mPEG-Succinylcysteine聚乙二醇单甲醚-琥珀酰基半胱氨酸的合成
18.EFFECTS OF SELENOMETHIONINE ON PERFORMANCE AND PORK QUALITY IN FINISHING PIGS硒代蛋氨酸对肥育猪生产性能和肉质的影响
相关短句/例句

MethylselenocysteineL-硒甲基硒代半胱氨酸
1.Quantitaion of Methylselenocysteine in Broccoli Powder with Liquid Chromatography-Tandem Mass Spectrometry;液相色谱串联质谱法定量检测青花菜中L-硒甲基硒代半胱氨酸
3)Se-MSC甲基硒代半胱氨酸
1.The bio-availabl selenium in plant foods mainly exists in the form of Se-MSC.植物性食品中生物可利用的硒是以甲基硒代半胱氨酸的形式存在。
4)MeSeCys硒甲基半胱氨酸
1.In the present study,the concentration and speciation of selenium in Laminaria,enriched with selenite during its growth,was performed by establishing a RP-HPLC-ICP-MS method to separate selenite,MeSeCys and SeMet successively.建立了反相离子对缓冲盐等3个色谱系统的高效液相色谱与电感耦合等离子体质谱联用(RP-HPLC-ICP-MS)技术测定亚硒酸钠、硒甲基半胱氨酸(MeSeCys)、硒代蛋氨酸(SeMet)三种硒形态。
5)met-Se-cys硒甲基硒半胱氨酸
1.A rapid GC-MS/MS method has been developed for the determination of Se-methylselenocysteine(met-Se-cys)and selenomethionine(Se-met)in selenium-enriched cabbage by using ethyl chloroformate(ECF)as a derivation reagent under multiple reaction monitor(MRM) mode.建立了一种快速分析富硒包菜汁中硒甲基硒半胱氨酸和硒蛋氨酸含量的方法。
6)selenocysteine methyltransferase硒半胱氨酸甲基转移酶
1.Construction of plant expressing vectors of ATP sulfurylase and selenocysteine methyltransferase genes from Camellia sinensis;茶树ATP硫化酶和硒半胱氨酸甲基转移酶基因植物表达载体的构建
延伸阅读

氯化硒国标编号 61019 CAS号 10025-68-0分子式 SeCl2分子量 228.83深棕红色液体;沸 点 130℃/分解;熔点-85℃;溶解性:溶于氯仿、苯、四氯化碳、二硫化碳;密度:相对密度(水=1)2.91;稳定性:稳定;危险标记 14(剧毒品);主要用途 用作分析试剂、还原剂 2.对环境的影响:一、健康危害侵入途径:吸入、食入。健康危害:本品毒作用及中毒症状目前不详。硒化合物对呼吸道、皮肤和粘膜有强烈刺激性。二、毒理性资料及环境行为危险特性:本身不能燃烧。受高热分解放出有毒的气体。与磷、钾能发生猛烈的化学反应。燃烧(分解)产物:氯化氢、氧化硒。3.现场应急监测方法: 4.实验室监测方法:原子吸收法5.环境标准:美国 车间卫生标准 0.2mg[Se]/m36.应急处理处置方法:一、泄漏应急处理疏散泄漏污染区人员至安全区,禁止无并人员进入污染区,建议应急处理人员戴好防毒面具,穿相应的工作服。不要直接接触泄漏物,在确保安全情况下堵漏。喷雾状水,减少蒸发。用沙土或其它不燃性吸附剂混合吸收。然后收集于密闭容器中作好标记,等待处理。如大量泄漏,利用围堤收容,然后收集、回收或无害处理后废弃。二、防护措施呼吸系统防护:可能接触其蒸气时,应该佩带防毒面具。紧急事态抢救或逃生时,建议佩带自给式呼吸器。眼睛防护:戴化学安全防护眼镜。防护服:穿相应的防护服。手防护:戴防化学品手套。其它:工作现场禁止吸烟、进食和饮水。工作后,彻底清洗。单独存放被毒物污染的衣服,洗后再用。保持良好的卫生习惯。三、急救措施皮肤接触:脱去污染的衣着,立即用水冲洗至少15分钟。眼睛接触:立即提起眼睑,用流动清水或生理盐水冲洗至少15分钟,就医。吸入:迅速脱离现场至空气新鲜处。保持呼吸道通畅。必要时进行人工呼吸。就医。食入:误服者立即漱口,给饮大量温水,催吐,就医。灭火方法:消防人员必须穿戴全身专用防护服。灭火剂:二氧化碳、砂土。