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1.
随着生物技术、电子传感技术、纳米技术的发展,新型非均相催化剂-纳米金属杂化酶的研究和开发逐渐走进学者们的视野.纳米金属杂化酶不仅具有高催化活性、高稳定性,并且可以在一定程度上改善原酶的底物特异性、化学选择性、立体选择性及区域选择性等,同时可提高酶的可操作性,便于重复利用.我们就纳米金属杂化酶的设计与合成策略、金属纳米粒子的种类、表征方法、杂化酶的特征及应用等方面进行综述报道,希望可以为学者们提供新的思路和思考,促进多学科的融合发展.  相似文献   

2.
有机-无机杂化分离膜研究进展   总被引:1,自引:0,他引:1  
有机-无机杂化膜材料结合了有机膜材料和无机膜材料的优良性能,已成为分离膜材料研究的一个热点。本文以有机、无机组分间相互作用类型对其进行分类,着重介绍组分间以化学键相结合的有机-无机杂化膜的优良特性,总结了影响此类杂化膜结构和性能的主要因素,概括了它在膜分离中的应用,提出了目前研究工作中存在的不足,并做出了简要的述评。  相似文献   

3.
随着纳米技术和生物技术的发展,将纳米颗粒材料与天然酶结合起来构建纳米杂化酶,可以解决酶的负载量低、活性和稳定性不好等问题.目前,新型纳米颗粒材料-纳米金被广泛应用于构建杂化酶体系.我们将从纳米金杂化酶的种类、制备方法、优势以及应用等方面对纳米金杂化酶的研究进展进行概述.  相似文献   

4.
制备有机-无机杂化纳米材料的研究进展   总被引:6,自引:0,他引:6  
有机-无机杂化纳米材料由于小尺寸和兼具有机、无机材料的各种优良性质,在许多领域都有巨大的应用潜质。本文介绍了模板法、嵌段聚合物自组装、含特殊官能团的乙烯基单体直接聚合法等制备纳米有机-无机杂化材料的方法,并对各自的特点进行了说明。  相似文献   

5.
小分子液滴为模板制备有机-无机杂化纳米微胶囊   总被引:2,自引:0,他引:2  
通过细乳液聚合,在正辛烷液滴外包覆一层苯乙烯与甲基丙烯酸-3-三甲氧基硅丙酯(MPS)的共聚物,制备了有机-无机杂化纳米微胶囊.通过透射电镜和动态光散射粒径仪观测其形态,用红外光谱表征了其分子结构.讨论了聚合方法对微胶囊制备的影响;通过溶度参数的计算和实验验证,发现配方中单体体积分数需小于36%才能得到微胶囊;通过界面自由能模型的计算和动力学分析,说明了微胶囊形成的热力学原因;发现共聚物中MPS的加入有利于微胶囊的形成,但若MPS的含量过大将会导致胶囊塌陷;最后阐明了这种微胶囊制备过程的机理.  相似文献   

6.
有机-无机杂化膜的研究进展   总被引:4,自引:0,他引:4  
有机-无机杂化膜结合了传统有机膜与无机膜的优良性能,已成为膜领域的研究热点之一。本文综述了有机-无机杂化膜的研究现状,归纳了有机-无机杂化膜的分类、制备技术、应用及其优越性,并针对现存的问题及今后的研究发展提出了一些建议。  相似文献   

7.
寻找理想的骨修复材料一直是骨科领域的研究热点之一。骨修复材料已由最初单纯取代天然骨组织的惰性材料向具有诱导骨组织再生功能的生物活性材料发展,其中有机-无机杂化材料由于有机和无机组分在分子/纳米水平的复合使其能够最大程度地实现二者的优势互补和协同优化,近年来受到广泛关注。本文着重介绍了有机-无机杂化骨修复材料近些年来的研究进展,并对其发展趋势进行了展望。  相似文献   

8.
纳米载体固定化酶的最新研究进展   总被引:1,自引:0,他引:1  
催化剂是化学工业的重要基础,其中酶是重要的高效天然催化剂。近年来,酶被越来越多地应用于工业领域,如精细化工、食品工业、制药工业、纺织业和制浆造纸。然而,由于游离酶存在价格昂贵及操作稳定性(特别是回收与重复使用性能)低等缺点,其在工业上的进一步应用受到一定限制。对酶进行固定化是解决上述问题的有效途径。一个理想的酶固定化技术需要载体具有良好的生物相容性和高比表面积,能够负载适量的酶并且具有很好的重复使用性能,固定化酶的过程简单温和,所得到的固定化酶制剂具有良好的催化性能、稳定性以及工业应用价值。尽管固定化酶技术经过了多年的发展,但仍需进一步研究。近几年,人们研究了基于纤维素纳米晶类、聚多巴胺类纳米载体以及生物相容性合成有机物纳米胶等新型载体对酶的固定化,取得了较好的成果。本文综述了这些新型纳米载体的制备以及酶的固定化过程,阐述了纳米载体固定化酶的结构和催化性能,并展望了发展前景。纤维素是全球产量最高、来源最广的生物聚合物。纤维素经过一定的酸(常用硫酸和盐酸)水解处理后,剩下的是具有高结晶度的纤维素纳米晶。它具有高比表面积、高机械强度和高长径比等优异性能。因此,研究者利用纤维素纳米晶作为载体进行酶固定化,获得了高负载量、高催化性能的固定化酶制剂。基于仿生矿化法制备的聚多巴胺类材料近年来获得研究者越来越多的关注。多巴胺具有良好的自聚合能力,可以对无机、有机等各种材料进行表面修饰。同时,聚多巴胺中含有的活性官能团可以与酶发生交联,从而达到固定化酶的效果。基于合成性聚合物纳米胶载体的固定化酶技术同样是一个新兴的、有意义的研究领域。相关的固定化过程可分为两大类:(1)在酶分子表面通过原位聚合生成纳米胶(growing-from过程);(2)将酶与预先合成的纳米胶进行交联(grafting-to过程)。其中, growing-from过程是先将酶分子丙烯酰化,再进行原位聚合。而原位聚合又可分为自由基聚合、原子转移自由基聚合(ATRP)和可逆加成-断裂链转移聚合(RAFT)。其中, ATRP和 RAFT主要用于制备环境响应型的酶-聚合物纳米凝胶。  相似文献   

9.
有机-无机杂化中孔材料研究进展   总被引:5,自引:0,他引:5  
刘丰祎  符连社  王俊  张洪杰 《化学通报》2002,65(10):657-662
描述了有机-无机杂化中孔材料的合成方法,对其在催化、吸附和光学等方面的应用做了评述,并对将来的发展趋势做了展望。  相似文献   

10.
微纳尺度无机-有机杂化凝胶固定化木瓜蛋白酶研究   总被引:1,自引:0,他引:1  
吴敏  何琴  左勇刚  王芬  孙岳明 《化学学报》2011,69(12):1475-1482
以吸附-絮凝耦合方法制备了微纳尺度的纳米TiO2-聚丙烯酰胺(polyacrylamide, PAM)杂化凝胶固定化酶. 利用扫描电镜(SEM)、能谱面扫描(EDS)、粒度分析表征了杂化凝胶絮凝酶形貌、尺寸及分散性. 通过对酸碱度有效调控, 以及表面Zeta电位分析, 探寻了酶-纳米复合凝胶静电作用机制. 结果表明, 静电相互作用力对酶的负载和颗粒粒度分布影响较大, 在pH=7.0, TiO2和木瓜蛋白酶(papain, PA)质量比为7.5∶1时, 固定化酶负载量达121.84 mg/g, 负载率91.38%|杂化凝胶固定化酶尺寸约为0.444 μm左右, 固定化酶在杂化凝胶载体上高度分散. 该杂化凝胶絮凝酶经过5批次反应后相对酶活力能保持在50%以上. 可见由吸附-絮凝法制备的微纳尺度的杂化凝胶固定化酶, 分散性好, 稳定性好, 酶负载量高, 这是一种利用纳米材料和微纳结构进行固定化酶的新途径.  相似文献   

11.
A single immobilized enzyme nylon tube reactor was produced incorporating a four enzyme system for the analysis of creatinine. The enzyme activity ratios in the coupling solution used to prepare the reactor were found to be of extreme importance in governing the activity of the latter. The reactor was incorporated into a continuous flow analysis system used to assay creatinine in urine samples and the results were correlated with a manual technique employing the same enzyme system in solution. The precision, correlation, high specificity, simplicity, and speed of the analysis were concluded to be factors in favor of the method's suitability for urine creatinine determinations.  相似文献   

12.
宋佳一  李梦琦  沈昊  周梓昕  贺雯婷  苏萍  杨屹 《色谱》2020,38(10):1206-1210
生物酶影响着物质代谢和质能转换等生命活动,生物体内某些酶的活性变化会导致疾病的发生。发展新型的酶分析方法对深刻理解生物代谢过程、疾病诊断和药物研发等具有重要意义。毛细管电泳(CE)具有分离效率高、分析速度快、操作简单和样品消耗少以及可与多种检测手段联用等优点,在酶分析研究中越来越受到关注。CE酶分析主要包括离线和在线两种模式,其中,固定化酶微反应器与毛细管电泳联用(CE-IMER)的在线酶分析已经成为主要的酶分析方法之一。CE-IMER充分结合了固定化酶和CE的优势,将游离酶固定在毛细管内,不仅可以显著提高酶的稳定性和重复使用性,而且可以实现纳升规模溶液的自动化酶分析,进而显著降低酶分析成本。目前已有大量方法制备IMER用于CE酶分析,然而如何构建性能良好、可再生使用、酶固载量大、自动化程度高的CE-IMER一直是该领域重点研究的问题。DNA定向固定化技术(DDI)可以充分利用DNA分子的碱基互补配对(A-T, C-G),在温和的生理条件下特异性固定生物大分子。由于短链双螺旋DNA分子具有较强的机械刚性和物理化学稳定性,通过DDI将酶固定在载体表面,有利于降低传质阻力,提高酶与底物的接...  相似文献   

13.
Yang L  Chen C  Chen Y  Shi J  Liu S  Guo L  Xu H 《Analytica chimica acta》2010,683(1):136-142
A novel method for monitoring of enzyme reaction and inhibition with high temporal resolution was developed by using optically gated vacancy capillary electrophoresis (OGVCE) with laser-induced fluorescence (LIF) detection and immobilized enzyme. Trypsin cleavage reaction and inhibition were investigated by the presented OGVCE-LIF assay, using carboxyfluorescein (FAM) end-labeled Angiotensin as the substrate and commercially available immobilized trypsin. The substrate and the product were continuously loaded into the capillary by the electroosmotic flow while the immobilized enzyme remained in the sample vial. Substrate consumption and product formation were monitored simultaneously at 5 s interval during the whole reaction time. The enzymatic reaction rates obtained from the substrate and the product were highly consistent. The enzyme activity and the Michaelis constants of trypsin cleavage reaction, as well as the inhibition constant (for reversible competitive inhibitor) and the inhibition fraction (for irreversible inhibitor), were obtained. It was showed that the reported OGVCE-LIF method can perform fast, accurate, sensitive and reproducible CE enzyme assay with high temporal resolution, thus has great potential in application of the enzyme-substrate systems with fast reaction rate and the fluorescent substrate and products.  相似文献   

14.
固定化酶反应器作为蛋白质组学研究中"bottom-up"策略重要的组件,具有酶解快速、酶解效率高、酶稳定性和活性高、简单易操作、能够与多种检测方式联用等优点,对于发展高效快速的蛋白质组学分析方法具有重要意义。本文就固定化酶反应器的制备方法及其在蛋白质组学中的应用做简单的概述,着重介绍酶的固定方法、固定化酶的载体、用于固定的酶的种类。近几年固定化酶反应器的研究集中于提高固酶量、保持酶活性、增加酶解效率、减小非特异性吸附等方面。研究结果表明,采用纳米材料、整体材料等新型载体,提高载体亲水性,采用多酶同时酶解等方法能够有效改善固定化酶反应器的性能,提高蛋白质的鉴定效率。  相似文献   

15.
Our group recently reported on the application of protein-doped monolithic silica columns for immobilized enzyme reactor chromatography, which allowed screening of enzyme inhibitors present in mixtures using mass spectrometry for detection. The enzyme was immobilized by entrapment within a bimodal meso/macroporous silica material prepared by a biocompatible sol-gel processing route. While such columns proved to be useful for applications such as screening of protein-ligand interactions, significant amounts of entrapped proteins leached from the columns owing to the high proportion of macropores within the materials. Herein, we describe a detailed study of factors affecting the morphology of protein-doped bioaffinity columns and demonstrate that specific pH values and concentrations of poly(ethylene glycol) can be used to prepare essentially mesoporous columns that retain over 80% of initially loaded enzyme in an active and accessible form and yet still retain sufficient porosity to allow pressure-driven flow in the low μL/min range. Using the enzyme γ-glutamyl transpeptidase (γ-GT), we further evaluated the catalytic constants of the enzyme entrapped in capillary columns with different silica morphologies as a function of flowrate and backpressure using the enzyme reactor assay mode. It was found that the apparent activity of the enzyme was highest in mesoporous columns that retained high levels of enzyme. In such columns, enzyme activity increased by ∼2-fold with increases in both flowrate (from 250 to 1000 nL/min) and backpressure generated (from 500 to 2100 psi) during the chromatographic activity assay owing to increases in kcat and decreases in KM, switching from diffusion controlled to reaction controlled conditions at ca. 2000 psi. These results suggest that columns with minimal macropore volumes (<5%) are advantageous for the entrapment of soluble proteins for bioaffinity and bioreactor chromatography.  相似文献   

16.
Effectiveness factors were predicted from measurements of basic parameters made on single oligosaccharides, and the prediction was compared to experimental effec tiveness factors for the reaction of each oligosaccharide in the immobilized enzyme catalyst. Kinetic parameters were obtained for the hydrolysis of each oligosaccharide catalyzed by soluble glucoamylase, and were fit with a subsite model equation capable of generalization to all sizes of oligosaccharide. Diffusion coefficients in free solution were determined from movement out of a capillary tube. Spatial characteristics of the immobilized enzyme bed were obtained from pulse response experiments, allowing the calculation of effective diffusivities. Experimental effectiveness factors plotted against modulus were in reasonable agreement with the predictions.  相似文献   

17.
Zhang P  Gao M  Zhu S  Lei J  Zhang X 《Journal of chromatography. A》2011,1218(47):8567-8571
In this report, laser radiation (808nm) for the first time was employed to enhance the efficiency of proteolysis through immobilized enzyme reactor (IMER). IMER based monolithic support was prepared in the fused-silica capillary via a simple two-step procedure including acryloylation on trypsin surface and in situ aqueous polymerization/immobilization. The feasibility and high efficiency of the laser-assisted IMER were demonstrated by the digestion of bovine serum albumin (BSA), cytochrome c (Cyt-c) and β-casein. The digestion process was achieved in 60s. The peptides were identified by MALDI-TOF-MS, yielding the sequence coverage of 33% for BSA, 73% for Cyt-c and 22% for β-casein. The comparisons between the in-solution digestion and on IMER reaction with/without laser assistance were made. To further confirm its efficiency in proteome analysis, the laser-assisted IMER was also applied to the analysis of one fraction of human serum sample through two-dimensional (2-D) separation of strong anion exchange/reversed-phase liquid chromatography (SAX/RPLC). After a database search, 49 unique peptides corresponding to 5 proteins were identified. The results showed that the laser-assisted IMER provides a promising platform for the high-throughput protein identification.  相似文献   

18.
固定化酶在生物技术领域具有重要的理论和实际意义。由于固定化酶内部存在扩散传质阻力,因此固定化酶系统的化学反应速率不同于游离酶的反应速率。固定化酶反应动力学一般是基质浓度的非线性函数。通过求解固定化酶扩散 反应微分方程,可以得到固定化酶有效因子,而有效因子是固定化酶反应系统设计和模拟的重要参数,也是评定固定化酶系统性能优劣的重要因素之一。有效因子的计算通常采用将扩散 反应微分方程离散化的方法,例如正交配置法求解[1,2]。本文基于大参数的假设,在寻求固定化酶扩散 反应问题近似解的基础上,导出计算固定化酶有效…  相似文献   

19.
Zeolitic imidazolate framework (ZIF) has recently emerged as a promising material for the encapsulation of enzymes because of their high surface area and facile construction conditions. However, the enzymes are partial even completely inactive after encapsulation owing to the confinement effect and competing coordination, and otherwise, the alkaline environment caused by the protonation effect of 2-methylimidazole also damages enzyme molecules. Herein, a novel glutathione (GSH)-boosted one pot embedding strategy that enabled to rapidly encapsulate enzyme within GSH hybrid MOF (named enzyme@GMOF) with a high embedding efficiency was constructed. Hybrid of GSH and imidazole as synchronous ligands for GMOF to immobilize enzyme can offer sufficient well microenvironment for enzyme exhibiting high activity. The obtained catalysts (CAT@GZIF-67) displayed 9.0-fold higher catalytic activity than traditional ZIF-67 immobilized CAT (CAT@ZIF-67) and superior reusability and storage stability compared with CAT@ZIF-67 and free CAT. As one kind of biomacromolecules, bio-affinity of GSH can create an affinitive microenvironment for enzymes and reduce the influence of other factors during the use of biomacromolecules on their conformation and activity.  相似文献   

20.
Li YS  Gao XF 《Analytica chimica acta》2007,588(1):140-146
A novel method for the determination of ethanol in tequila based on the immobilized enzyme fluorescence capillary analysis (IE-EFCA) has been proposed. Alcohol dehydrogenase (ADH) was immobilized in inner surface of a capillary and an immobilized enzyme capillary bioreactor (IE-ECBR) was formed. After nicotinamide adenine dinucleotide (NAD+) as an oxidizer is mixed with alcohol sample solution, it was sucked into the IE-ECBR. The fluorescence intensity of the mixed solution in the IE-ECBR was detected at λex = 350 nm and λem = 459 nm. The experimental conditions are as follows: The reaction time is 20 min; temperature is 40 °C; the concentrations of phosphate buffer solution (pH 7.5) and NAD+ are 0.1 mol L−1 and 5 mmol L−1, respectively; immobilization concentration of ADH is 10 U L−1. The determination range of ethanol is 2.0-15.0 g L−1 (F = 10.44C + 6.6002, r > 0.9958); its detection limit is 1.11 g L−1; and relative standard deviation is 1.9%. IE-EFCA method is applicable for the determination of the samples containing alcohol in medicine, industry and environment.  相似文献   

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