Ionic Liquids-Regenerated Cellulose for Enzymatic Hydrolysis and Enzyme Immobilization 离子液体再生纤维素的酶解表征与固载酶应用
The advancement of support materials could enhance the performance of the immobilized enzyme, enlarge their application fields and possibly bring breakthrough in the enzyme immobilization methods. 结果表明,载体材料的发展能有效地改善固定化酶的性能,并在扩大其应用范围的同时还可能带来固定化酶技术上的突破。
Meanwhile, the application of magnetic microsphere in biomedical field such as enzyme immobilization, cell separation, targeted medicine and diagnosis were narrated in detail. 同时着重阐述了磁性微球在固定化酶、向药物、胞分离、断等生物医学领域的应用。
Progress of the enzyme immobilization anode modification of the EFC was reviewed in this paper. 本文综述了固定化酶阳极修饰在EFC研究中的进展。
Study on Enzymatic Properties of Trehalose Synthase and Condition of Enzyme Immobilization 海藻糖合酶特性及固定化条件的研究
Progress in Enzyme Immobilization on Mesoporous Materials and their Modified Materials 介孔材料及其改性材料中酶的固定化研究进展
Starch is a kind of perfect carrier for enzyme immobilization because it can be obtained easily and satisfy immobilization of different enzymes after modifications. 淀粉来源广泛,廉价易得,可通过改性满足不同酶固定化的需要,是一种较为理想的酶固定化载体。
The development and application of HPMM in enzyme immobilization and medicine carrier were discussed. Meanwhile, the trend of its development is prospected. 分析了亲水性高分子磁性微球在酶固定化和实现靶向给药等方面的应用及存在的问题,对磁性微球的发展前景进行了展望。
Enzyme immobilization has been proven an effective method to improve catalytic activity and thermal stability of enzyme. 酶的固定化已经证明是提高酶的活性和热稳定性的有效方法。
Conducting polymers, due to its superior conductivity, have become good carriers for enzyme immobilization. 导电聚合物具有良好的导电性,已成为一种酶固定的良好载体。
Microemulsion has been paid more and more attention to and applied in biotechnology, artificial blood vessel, enzyme immobilization, energy science, nanometer material, dope, medicine, foodstuff, petroleum, ore dressing and environment etc. 微乳在生物技术、人造血管、酶固定化、能源科学、纳米材料、涂料、医药、食品、石油、选矿、环境等方面得到了越来越广泛的关注和应用。
And the study is done on enzyme immobilization additivity used in artificial curing and natural aging. 同时利用自制的酶固定化添加剂应用于烟叶人工发酵和自然陈化的研究。
Application of Chitin and Chitosan in Enzyme Immobilization 甲壳素/壳聚糖在酶固定化中的应用
The support and immobilized enzyme were characterized by way of DTA, XRD, FTIR, N2-adsorption and desorption. The mechanism of enzyme immobilization was discussed. 通过DTA、XRD、N2吸附-脱附、FTIR技术对载体和固定化酶进行了表征,探讨了酶的固定机理;
Application of natural polysaccharide on materials used as enzyme immobilization carriers 天然多糖在酶固定化载体材料中的应用
Application of inorganic materials in enzyme immobilization 无机材料在酶固定化中的应用
Preparation of Surface Functional Magnetic Microspheres and Their Application in Nucleic Acid Separation and Enzyme Immobilization 表面功能化磁性微球的制备及在核酸分离与固定化酶中的应用
Applications of chitosan and its derivatives in enzyme immobilization 壳聚糖及其衍生物在固定化酶中的应用进展
In addition, the process of enzyme immobilization was investigated on this thesis. 此外,本文还研究MTSase和MTHase此双酶系统的固定化过程。
The Studies on the Characterization and Stability of Enzyme Immobilization in Mesoporous Materials 介孔材料固定酶的性质和稳定性研究
Objective To Prepare surface functional magnetic microspheres for the separation of vascular endothelial growth factor ( VEGF) nucleic acid and lactase enzyme immobilization. 目的制备表面功能化磁性微球用以分离血管内皮生长因子(VEGF)核酸和固定化乳糖酶。
The crystalline structure of Fe_3O_4 was affected by xenon lamp irradiation and enzyme immobilization. 酶的固定化和氙灯辐照并未改变Fe3O4的晶形结构;
The morphology of nanofiber membrane was studied by SEM. The biocompatibility of nanofiber membrane was proved by the hydrophilic test, BSA adsorption, adhesion of macrophages and other experiments testing. On this basis, the nanofiber membrane was used for studying behavior of enzyme immobilization. 研究了含糖纳米纤维膜形态结构;通过亲水性测试、BSA吸附、巨噬细胞黏附等实验检测纳米纤维膜的生物相容性;在此基础上,系统考察了含糖纳米纤维膜酶的固定化的行为。
Using epichlorohydrin activation nano fiber membrane method material, using acetylcholinesterase fixed cellulose enzyme, and discusses in detail the enzyme immobilization conditions on the influence of the immobilized enzyme activity. 采用环氧氯丙烷法活化纳米纤维膜,用共价结合法固定纤维素酶,并探讨了酶固定化条件对固定化酶活性的影响。
The functional magnetic particles are widely used in enzyme immobilization, cells and protein separation, drug targeting, wastewater treatment, etc., due to their good magnetic responsiveness and surface functionality. 功能化磁性粒子同时兼具磁响应性和表面功能性,被广泛地应用于酶的固载、细胞和蛋白质分离、靶向给药、污水处理等领域。
Optimization enzyme immobilization influencing factors in the process through the response surface method, and identify three main influencing factors of glutaraldehyde concentration, buffer pH and enzymatic quantity. 并采用响应面实验设计方法对酶固定化过程中影响因素进行优化,确定三个主要影响因素为戊二醛浓度、缓冲液pH以及加酶量。
Among that, magnetic materials as a common functional materials is more in a wide range of applications in biomedical and biotechnology, such as enzyme immobilization, protein and immune determination, the purification of RNA and DNA, cell separation and magnetic targeted drugs [ 6-9]. 而磁性材料作为一种常见的功能性材料在生物医学和生物技术方面更有着广泛的应用,如蛋白质和酶的固定化、免疫测定、RNA和DNA的提纯、细胞分离及磁性靶向药物。
The optimal conditions of enzyme immobilization were mainly investigated by the single factor and the orthogonal experiments. The basic enzymatic properties of immobilized ALDC and free enzyme were researched. 本文以工业树脂为载体对ALDC进行固定化研究,通过单因素和正交试验确定了固定化ALDC的最优条件,研究了固定化酶和游离酶的基本酶学性质。
Carbon fiber is a new kind of quality biologic enzyme immobilization carrier. 碳纤维是一种新型优质生物酶固定化载体。