This is achieved by first crystallizing the purified biomolecule into ordered arrays and then using X-ray diffraction to analyze the crystals. 这种方法的运用是基于首先使纯化的生物分子结晶为有序排列然后用X射线分析结晶体。
Study on the Highly Sensitive Amperometric Immunosensor Based on Biomolecule Immobilized on Nanoparticles 纳米微粒固载抗体蛋白构建高灵敏电流型免疫传感器的研究
In part three, using spin-labelled fluorophore as a probe for the study of biomolecule damage was discussed. 第三部分探讨了自旋标记荧光探针表征生物大分子损伤的可行性。
Soliton Character of Biophoton and Analyses of the Effects on the Interaction of Weak Laser Photon with Biomolecule 生物光子的孤子特征及弱激光与生物分子相互作用分析
In this regard, sol-gel method can be used as an effective method for biomolecule immobilization and the fabrication of enzyme electrodes. 研究结果表明溶胶凝胶技术可成为固定生物分子及构置酶电极的一种有效途径。
The chromatography technique is one of the most effective methods for biomolecule purification, which can provide high separation resolution. 层析技术是生物大分子分离纯化最有效的手段之一,可以实现很高的分离度。
Studies on the Mechanism and the Interaction between Water Soluble CdTe Quantum Dots and Biomolecule 水溶性CdTe量子点与生物分子的偶合作用及机理研究
The mechanisms of energy loss in the process of heavy ion interaction with biomolecule are analyzed and discussed, the recent related research progresses arc reviewed and some future research directions are indicated. 摘要对重离子与生物分子相互作用中能量损失的物理机制进行了分析和讨论,对现有电子能量损失的研究进展进行了评述,指出将要研究的方向。
The function of a biomolecule is closely related to its structure, even in very different species, molecules with the same function exhibit very similar structure. 生物分子的功能与它的结构是密切相关的,即使在完全不同的物种中,相同功能的分子也表现出非常相似的结构。
These will not only give a new experimental method to distinguish chiral medicine, but also provide a suggestion for further comprehending the interaction of chiral medicine and target biomolecule. 这项研究为手性药物分子检测和分析提供了新的实验方法,也对深入了解手性药物与生物靶分子之间相互作用提供了启示。
Electrochemical Studies of Interactions between Biomolecule 生物分子间相互作用的电化学研究
The technique of nano-manipulation and nano-measurement for single biomolecule analysis 用于单个生物分子分析的纳米操作和纳米测量技术
The immunomagnetic microspheres ( IMM) were prepared by covering the magnetic composite microspheres with antibody or biomolecule by physical adsorption or covalent crossing. 免疫磁性微球(Immunomagneticmicrospheres简称IMM)是将单抗或者生物活性物质通过共价交联或物理吸附包被到有磁性高分子复合微球的表面,形成具有免疫活性的磁性微球。
Immobilization of biomolecule by nanotubes and its application 纳米管固定化生物分子及其应用
Nuclear magnetic resonance ( NMR) is now a very important approach to study the interaction between small ligand and biomolecule. 核磁共振已经成为研究小分子配体和生物大分子相互作用的一种非常重要的手段。
Surface plasmon resonance ( SPR) biosensors have become an effective instrument of measuring biomolecule specific interaction. 表面等离子谐振免疫生物传感器已成为分析生物分子特异性相互作用的有效工具。
Sol gel process has become a new and efficient technique for biomolecule encapsulation because of its mild gel forming condition, wide suitability, good preservation ability of structure and activity of immobilized bioactive molecules. 溶胶凝胶法以其温和的反应条件、广泛的适用性、高的生物分子结构和活性维持率等突出优点成为生物活性分子包埋的高效方法。
The concentration of biomolecule adsorbed on surface could also be determined according to the resonance angle shift. 生物分子在材料表面吸附的浓度也可以通过检测共振角度的偏移而获得。
SPR biosensor was a valuable tool for detecting kinetic biomolecule adsorption on material surface in real time and in situ. SPR生物传感器可以对生物分子在材料表面的动态吸附过程进行实时、原位的检测。
Using scanning tunnel microscopy ( STM) to observe microcosmic change between biomolecule and gold particle on the surface of LSAW biosensor during the process of probe immobilization and hybridization, also the naked gold membrane. 利用扫描隧道显微镜观察传感器裸金膜表面、探针固定、核酸杂交过程中生物分子与金颗粒之间的微观变化。
Control of Fluorescence Background During Raman Scattering Measurement of Biomolecule 生物分子拉曼散射测定过程中荧光背景的抑制
The visualization of biomolecule bands in the gel matrix is necessary for getting relative separation information. 但是要获得相关的分离信息,必须使分开的生物分子条带可视化。
After the electrophoresis, biomolecule bands of different molecular weight separate in gel matrix. 凝胶电泳完后,不同分子量的生物分子条带已经分离开来。
Sensitive polymer microgels have been attracted a great attention in the biomolecule adsorption and separation among their many application fields. 在敏感性微凝胶材料的众多应用领域中,作为生物分子吸附与分离材料的应用研究一直是相关领域的研究热点之一。
Fluorescent probe is an important technical mean, which is used to monitor biomolecule real-time by a fluorescence microscope. 荧光探针技术是一种借助荧光显微镜在分子水平上进行实时监测的重要技术手段。
The method was carried out by in situ synthesizing a conducting polymer in a porous polymer film and co-immobilizing biomolecule in the composite film. 该方法的原理是:在一种多孔高分子膜中原位复合导电聚合物,并同时实现生物分子在聚合物复合膜中的固定。
Biomolecule patterned surface was obtained by using a photomask when irradiating. 通过掩蔽曝光方式制备了图形化固定生物分子的表面。
However, biomaterial and biomolecule interaction mechanism is far from being thoroughly understood in an atomic and electronic level. 但是,当前研究对生物材料与生物分子之间相互作用的机理在原子、分子水平上的认识还很缺乏。
Non-coding RNA is an important biomolecule with various regulation functions. 非编码RNA是一类重要的具有多种调控功能的生物大分子。
The interaction of metal or metal complexes with biomolecule, such as protein DNA and amino acid, can yield abnormal influence on nervous system and damage on DNA and protein directly or indirectly, also provides a starting point for the diagnosis and therapy of human disease. 金属或金属的配合物与生物分子如蛋白质,DNA,氨基酸的相互作用可以使神经系统产生异常反应,并直接或间接地损伤蛋白质和DNA,为诊断和治疗人类疾病提供了一个新的起点。