biomacromolecule
- n.生物大(高)分子
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Biomacromolecule Adduct Detection Methods and its Application to Environmental Risk Assessment
生物大分子加合物的检测及其在环境风险性评价中应用
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Method for calculation of the atomic charge distribution in biomacromolecule
生物大分子中的原子等效电荷分布计算
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The function of biomacromolecule is dependent on its space structure .
生物大分子的功能取决于它的空间结构。
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The Techniques of Biomacromolecule Separation : Past , Now and Future
生物大分子分离技术:过去、现状和未来
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Cross influences among many subjects promote the development of the techniques of biomacromolecule separation .
当前,各学科之间的交叉渗透为生物大分子分离技术的发展提供了更多的契机。
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Time-Resolved Fluorescence Anisotropy Measurement and Its Application in the Research of biomacromolecule
时间分辨荧光各向异性及其在生物大分子研究中的应用
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Affinity chromatography used to play important rule in the separation and purification of biomacromolecule .
亲和色谱多用于生物大分子的分离与纯化。
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Effects of Artificial Pollination on Germination , Forms and Biomacromolecule of Chinese Fir Seed
人工授粉对杉木种子发芽、形态及生物大分子的影响
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Separation and Recognition of Biomacromolecule by Molecular Imprinting Technique
分子印迹技术在生物大分子分离识别中的应用
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Deoxyribonucleic acid ( DNA ) is an important biomacromolecule .
脱氧核糖核酸(DNA)是生物体中一类重要的大分子。
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Many scientists lack the background to fully utilize the wealth of solved three-dimensional biomacromolecule structures .
很多科学家缺乏充分利用解决了三维生物大分子结构的财富的背景。
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The other is that of interaction between drug and biomacromolecule .
二是在药物与生物大分子的相互作用方面开展了一系列的研究工作。
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From the level of modern separation science , liquid chromatography is the best method for the preparation of biomacromolecule .
从分离科学的现有水平来看,液相色谱法是目前分离纯化生物大分子的最佳手段。
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Study of the Effect of XeCl Excimer Laser Radiation on Biomacromolecule Structure BTG DNA
XeCl准分子激光辐照生物大分子对其结构影响初步研究&Ⅰ308nm紫外激光辐照小牛胸腺DNA的电镜观察与分析
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RNA is a kind of very important biomacromolecule that plays huge roles in the organisms .
RNA是一类重要的生物大分子,在生物体生长发育的各个阶段均发挥重要功能。
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Recently , basic research between natural drug molecules and biomacromolecule has gradually become the focus of attention for domestic and foreign scholars .
近年来,天然药物分子与生物大分子之间相互作用的基础研究已逐渐成为国内外学者关注的热点。
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Progress in Analytical Methodologies in Non-covalent Interactions Between Small-molecule and Biomacromolecule
小分子与生物大分子间非共价相互作用分析方法研究进展
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It make the biomacromolecule separated mainly according to the affinity between the biomacromolecule and immobilized ligand .
它主要是根据生物分子与特定的固相化配基之间的亲和力使生物分子得到分离。
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The Research of Active Components Extraction and the Interaction between Biomacromolecule and Active Components of Andrographis Paniculata Nees
穿心莲活性成分提制分析及其与生物大分子作用机理研究
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RCA is also a trace molecular detection method and will be exploited in research and detection of extremely trace biomacromolecule or biomarkers .
RCA亦是一种痕量的分子检测方法,可用于极其微量的生物大分子和生物标志的检测与研究。
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Immunoaffinity chromatography ( IAC ) is one of the efficient purification methods on biomacromolecule , especially in the first purifying process .
免疫亲和层析是一种非常有效的生物大分子纯化方法,特别是应用在纯化过程的第一步。
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Application of Correlation Spectroscopy Technique in Measurement of Biomacromolecule Photon scattering correlation spectroscopy and fluorescence correlation spectroscopy are two major types of correlation spectroscopy .
相关谱技术在生物大分子检测上的应用目前应用广泛的两种相关谱技术包括:光子散射相关谱技术(photonscatteringcorrelationspectroscopy,PSCS)和荧光相关谱技术(fluorescencecorrelationspectroscopy,FCS)。
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Separation and Purification of Biomacromolecule
生物大分子的分离与纯化
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On the other hand , capillary electrophoresis is the most efficient and convenient detection means to analyze biomacromolecule and nano-particle at present .
另一方面在目前为止毛细管电泳由于其独特的优势,是分析生物大分子及分离纳米粒子最为常用并且有效的分析手段。
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Although its application to life science has just been explored , valuable progresses have been achieved in both biomacromolecule labeling and coding recently .
虽然量子点在生物学中的应用才刚刚起步,但是已经取得了有意义的进展,成为人们极为注意的一个热点。
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The organic dyes have been used to label the biomacromolecule for a long time , which was to study the interaction between various proteins and cells function .
长期以来,有机荧光一直被用来标记生物大分子以研究各种蛋白质之间的相互作用及对细胞的功能的影响。
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ROS can be induced by higher concentration of Se compounds , and it can react with biomacromolecule , including protein , DNA and lipid .
硒在较高浓度下产生ROS,它们可以和一些生物大分子包括蛋白质、DNA、脂质发生反应,从而使其受损。
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The study of the interaction between small drug molecules and biomacromolecule is valuable for the fields of pharmacokinetic 、 biochemistry 、 pharmacy and clinical medicine .
研究药物小分子和血清白蛋白生物大分子的相互作用,对于药物代谢动力学、生物化学、制药学和临床医学具有重要的参考价值。
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The recognition of biomacromolecule has great significance in signal transduction , genome duplication , proteomics , clinical diagnostics , and development of targeting drugs .
对生物大分子的识别在信号转导、基因组复制、蛋白组学、医疗诊断以及靶向药物的研发等方面都有着重要的意义。
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However , the adsorption and precipitation of biomacromolecule on the ultrafiltration membrane surface causes membrane fouling . Membrane fouling constitutes a bottleneck of ultrafiltration development .
由生物大分子在膜表面吸附和沉积导致的膜污染是制约超滤应用的瓶颈。