新型抑制剂,New depressant
1)New depressant新型抑制剂
英文短句/例句

1.Establishment of Human DPPIV High-throughput Screening Assay and Discovery of Novel Inhibitors;人源DPPIV抑制剂高通量筛选模型的建立和新型抑制剂的发现
2.Study on Anti-coking Performance of a New Mixed Coking Inhibitor LPA-Ⅰ新型结焦抑制剂LPA-Ⅰ抑焦性能研究
3.Studies on a Novel Non-Nucleoside Reverse Transcriptase Inhibitor--Nevirapine;新型逆转录酶抑制剂Nevirapine的研制
4.Synthesis of the Novel Immunosuppressant FTY-720;新型免疫抑制剂FTY-720的合成(一)
5.Synthesis of a New Immunosuppressant FTY-720 (Second);新型免疫抑制剂FTY-720的合成(二)
6.The Discovery of Novel Caspse-1 Inhibitors;新型Caspase-1小分子抑制剂的发现
7.Design, Synthesis and Evaluation of Benzimidazole Derivatives as a Novel Class of HIV Non-nucleoside Reverse Transcriptase Inhibitors (NNRTIs);新型HIV非核苷类逆转录酶抑制剂(NNRTIs)
8.R10, a Novel Inhibitor of p38 Mitogen-activated Protein KinaseR10,新型p38 MAPK抑制剂生物学功能研究
9.Design and Synthesis of New γ-Secretase Inhibitors新型γ-分泌酶抑制剂的设计与合成
10.A new nonpeptidic protease inhibitor--darunavir新型非肽类蛋白酶抑制剂——地瑞那韦
11.Design and discovery of novel small-molecule inhibitor of CDK9新型CDK9小分子抑制剂的设计和发现
12.Synthesis of J2 as a novel CD4 antagonist新型CD4抑制剂J2的合成及其活性评价
13.Investigationgs on Properties of Chemical Dust Suppressants and Development of a New Wetting Agent;化学抑尘剂抑尘性能的动力法评价及新型润湿剂的研制
14.Preperation of Mycophenolic Acid and Mycophenolate Mofetil as a New Immunosuppressant;新型免疫抑制剂霉酚酸及霉酚酸酯的研制
15.Studies on Preparation of New Flotation Reagents and Structure-Activity Relationship新型有机抑制剂的合成及结构与性能关系研究
16.The Synthesis and Activity Evaluation of Novel CETP Inhibitors;新型CETP抑制剂的化学合成及其活性评价
17.Design and Synthesis of Novel HCV NS3/NS4 Protease Inhibitors;新型HCV NS3/NS4A蛋白酶抑制剂的设计与合成
18.Molecule Design and Synthesize New COX-2 Selective Inhibitors;新型COX-2选择性抑制剂的分子设计研究
相关短句/例句

new depressant DZ新型抑制剂DZ
3)New nitrifying inhibitor新型硝化抑制剂
4)New depressor DT-3 #新型抑制剂DT-3
5)Neotype immunosuppressant新型免疫抑制剂
6)K_(202) of a new type depressant新型抑制剂K_(202)
延伸阅读

YGO-1308新型硅烷偶联剂 YGO-1308新型硅烷偶联剂属阳离子型,含99%N-二甲基氨基三甲氧基硅烷。 一般的氨基硅烷偶联剂其氨基在水中易与本身的烷氧基水解为硅醇,并发生内螯合作用而形成一种环状化合物,或缩聚成有机硅氧烷醇,从而减弱了硅烷的偶联作用,甚至失效。而阳离子型硅烷则是使氨基硅烷与酸结合成离子型盐,因而具有良好的水溶性和稳定性,提高了偶联效果,同时赋予该类硅烷抗静电功能。