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1.
The Effects of ARNT on the Growth and Metastasis of Hepatocellular Carcinoma
芳香烃受体核易位蛋白ARNT对肝癌生长和侵袭转移的影响
2.
The Protemic Research of Aromatic Hydrocarbon Biodegradation Pathway;
芳香烃生物降解途径蛋白质组学研究
3.
"Toluene: Colourless, flammable, toxic liquid hydrocarbon aromatic compound (C6H5CH3), the methyl derivative of Benzene."
甲苯: 无色、易燃、有毒的液体烃芳香族化合物,是由苯衍生出甲基。
4.
The Study of Calix(4) Arene for Aromatic Positional Isomer;
杯[4]芳烃聚硅氧烷固定相分离芳香异构体
5.
Study on relationship between HSP70 and polycyclic aromatic hydrocarbons-related lung cancer
热休克蛋白70与多环芳烃相关肺癌关系的研究
6.
Cloning and Expression of JC Virus VP2 Protein, and Identification of NLS and Importin Protein;
JC病毒VP2蛋白的抗原抗体制备及核定位信号与入核转运受体的鉴定
7.
"Benzene (1825) Simplest aromatic hydrocarbon (see aromatic compound), parent substance of a large class of chemical compounds. "
苯(1825):最简单的芳香烃,是一大类化合物的母体。
8.
Theoretical Study of Blue-shifting Hydrogen Bond between π-conjugate Hetero-cyclic Molecules and Some Proton Donors;
含杂环芳香烃体系分子间蓝移氢键的理论研究
9.
Identification of Interaction between MARVELD1 and Importin β1
核蛋白MARVELD1与核质转运受体蛋白Importin β1相互作用的鉴定
10.
Prepare Monoclonal Antibody of HCV Core Protein and Interreaction of Core Protein and Apolipoprotein AⅠ and Translin;
HCV核心蛋白单克隆抗体制备及其与载脂蛋白A1、转位蛋白相互作用
11.
pyrenoid-like body
淀粉[蛋白]核状体
12.
ribosome-polysome cycle
核蛋白体-多核蛋白体周期,核糖体-多核糖体周期
13.
Studies on Synthesis, Characterization and Supramolecular Recognition of Novel Redox Active Thiacalix[4]arene Multisite Receptors;
新型电化学活性硫杂杯[4]芳烃多位点受体的合成、表征及超分子识别研究
14.
Studies on Synthesis, Characterization and Recognition Properties of Ferrocene-Based Redox Active Calix[4]arene Multisite Receptors;
基于二茂铁的电化学活性杯[4]芳烃多位点受体的合成、表征及识别性质研究
15.
Acception of Baijuyi s Poetry in Song Dynasty--Take the Xiangshan style in the beginning of Song Dynasty for example;
白居易诗歌在宋代的接受——以宋初香山体为中心
16.
Study on the Recognition Interaction of Functionalized Calix[4]arene Receptor with Ions;
功能化的杯[4]芳烃受体对离子的识别作用研究
17.
Natural Bond Orbital Analysis of Nucleus-Independent Chemical Shifts of Aromaticity and Antiarmaticity;
自然键轨道法分析芳香性和反芳香性的核独立化学位移
18.
Plant Growth and Defense Regulation in Response to a Riboflavin Receptor Protein and a Harpin Protein (HpaG_(Xoo));
核黄素受体蛋白与HpaG_(Xoo)蛋白对植物生长与防卫反应的影响