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1.
高分子对酶、抗体、DNA的修饰、固定化及其生物医学应用   总被引:5,自引:0,他引:5  
为发展适于生物医用的生物功能高分子材料,本实验室近年来研究了可溶性高分子对L-天冬酰胺酶的修饰、纳米磁性高分子微粒对酶或抗体的固定化、亚微米高分子微球固定化碱性磷酸酶及其在DNA检测中的应用、高分子微球固定化酶的合成与性能、酶在导电高分子膜上的固定化及生物传感器制备等. 本文对此进行简要总结.  相似文献   

2.
高分子对酶,抗体DNA的修饰,固定化及其生物医学应用   总被引:2,自引:0,他引:2  
为发展适于生物医用的生物功能高分子材料,本实验室近年来研究了可溶性高分子对L-天冬酰胺酶的修饰,纳米磁性高分子微粒对酶或抗体的固定化,亚微米高分子微球固定化碱性磷酸酶及其在DNA检测中的应用,高分子微球固定化酶的合成与性能,酶在导电高分子膜上的固定化及生物传感器制备等,本文对此进行简要总结。  相似文献   

3.
对聚合物材料在生物电化学传顺中的应用进行了评述,包括高分子媒介体化合物、高分子阻挡膜、酶固定化材料和电解聚合物材料。并指出今后提高生物电化学传感器性能、改善和改变其表面特性,也依赖于聚合物材料的应用。  相似文献   

4.
聚乙烯-葡萄糖氧化酶膜的制备和性能研究朱如瑾,殷弘浩,刘永盛,黄家湛(成都高分子材料国家重点实验室成都科技大学高分子研究所成都610065)关键词聚乙烯,等离子体,固定化酶,葡萄糖氧化酶固定化酶是60年代发展起来的生物工程技术I‘].酶的固定化方法主...  相似文献   

5.
聚乙烯-葡萄糖氧化酶膜的制备和性能研究   总被引:1,自引:0,他引:1  
聚乙烯-葡萄糖氧化酶膜的制备和性能研究朱如瑾,殷弘浩,刘永盛,黄家湛(成都高分子材料国家重点实验室成都科技大学高分子研究所成都610065)关键词聚乙烯,等离子体,固定化酶,葡萄糖氧化酶固定化酶是60年代发展起来的生物工程技术I‘].酶的固定化方法主...  相似文献   

6.
碳酸酐酶固定化研究进展   总被引:1,自引:1,他引:0  
刘文芳 《分子催化》2016,30(2):182-197
近年来,碳酸酐酶(CA)在CO_2捕集领域的应用引起人们极大的兴趣.然而,由于价格昂贵,游离酶在使用时活性易受到多种环境因素的影响,稳定性较低且不易回收,因此有必要对CA固定化.综述了近十多年来CA固定化的研究进展,并根据载体的种类进行划分,分别总结了高分子材料、无机材料、聚合物-无机复合材料、纳米材料固定化CA的酶来源、固定化方法、载体材料、酶活、反应动力学参数和稳定性数据,并介绍了固定化CA应用于反应器的研究进展.最后,指出了不同类型载体材料的优缺点,提出了固定化CA的未来发展方向.  相似文献   

7.
高分子膜作为一项新兴技术,在很多领域得到日益广泛的应用.近十几年,随着生物工程和生物传感器的迅速发展,高分子生物功能膜的研究倍受重视.高分子生物功能膜是采用固定化技术,将具有分子识别功能的材料(如酶、抗原、抗体等)固定在高分子膜上而制得的.在固定化膜表面发生的生物化学反应,可以引起膜的荷电状态的变化,从而导致跨膜电位的变化。有关固定化膜的报导较多,但主要限于固定化的方法及其应用方面的研究,而有关高分  相似文献   

8.
磁性高分子微球是近20年来发展起来的一种新型功能高分子材料,并已在生物化工、细胞学、生物医学工程等领域得到了广泛应用。本文主要介绍磁性高分子微球的制备和性质以及在固定化酶中的应用。  相似文献   

9.
磁性高分子微球用于固定化酶的研究进展   总被引:22,自引:0,他引:22  
磁性高分子微球是近20年来发展起来的一种新型功能高分子材料,并已在生物化工、细胞学、生物医学工程等领域得到了广泛应用.本文主要介绍磁性高分子微球的制备和性质以及在固定化酶中的应用.  相似文献   

10.
磁性高分子微球是近20年来发展起来的一种新型功能高分子材料,并已在生物化工、细胞学、生物医学工程等领域得到了广泛应用。本文主要介绍磁性高分子微球的制备和性质以及在固定化酶中的应用。  相似文献   

11.
Adsorption and expression of penicillin G acylase was studied on macroporous methacrylate polymer beads of differing pore volume, generated with kerosene. The absorption and expression of the penicillin G acylase was dependent on pore volume. Maximum expression of 57% of adsorbed enzyme was obtained on beads synthesized with 40 mL of kerosene, indicating minimum pore-diffusion limitations.  相似文献   

12.
Various glycidyl methacrylate (GMA) copolymers were synthesized by suspension polymerization, using pentaerythritol triacrylate (PETA), trimethylolpropane triacrylate (TMPTA), and trimethylolpropane trimethacrylate (TRIM) as crosslinking comonomers. These copolymers were evaluated for the immobilization of penicillin G acylase. Broad pore-size distribution that was observed was in the range 5-300 nm. Both surface area and pore volume increased with increase in the mole fraction of crosslinking comonomer (increasing crosslink density). The pore volume of the copolymers was more than doubled by including lauryl alcohol as porogen. Binding of penicillin G acylase (PGA) was quantitative on highly crosslinked copolymers. The expression of bound PGA was better on the relatively more hydrophilic GMA-TMPTA and GMA-PETA copolymer supports compared to the GMA-TRIM copolymers. Among the different copolymers studied, GMA-TMPTA copolymer 7411 exhibited highest activity of immobilized penicillin G acylase (167.4 IU/g) with 35.1% expression.  相似文献   

13.
 以 Span-60 和 Tween-20 为复合分散剂, 以 N,N′-亚甲基双丙烯酰胺为交联剂, 以甲基丙烯酸缩水甘油酯和烯丙基缩水甘油醚为功能性单体, 用反相悬浮聚合技术成功制备了含环氧基团的聚合物载体, 并用红外光谱和低温氮吸附对聚合物载体进行了表征. 以 Span-60 和 Tween-20 为复合分散剂, 替代原有的 Span-60 和硬脂酸钙复合分散剂, 大幅度减少了后处理过程中所需的时间和溶剂用量, 使固定化青霉素酰化酶的活性从 215 U/g 提高到 320 U/g. 与游离酶相比, 该固定化酶具有较好的操作稳定性, 在 pH = 5~11 和不高于 50 oC 的环境中具有较好的稳定性. 固定化酶的水解反应动力学过程与游离酶相同, 均遵循米氏反应动力学, 而且活性与底物浓度密切相关. 当底物浓度为 6.5% 时, 固定化酶的活性最高, 达到 353 U/g.  相似文献   

14.
The immobilization ofEscherichia coli penicillin acylase (EC 3.5.1.11) was investigated by radiation-induced polymerization of 2-hydroxyethyl methacrylate at low temperature. A leak-proof composite that does not swell in water was obtained by adding the crosslinking agent trimethylolpropane trimethacrylate to the monomer-aqueous enzyme mixture. Penicillin acylase, which was immobilized with greater than 70% yield, possessed a higherK m value toward the substrate 6-nitro-3-phenylacetamidobenzoic acid than the free enzyme form (K m = 1.7 × 10−5 and 1 × 10−5M, respectively). The structural stability of immobilized penicillin acylase, as assessed by heat, guanidinium chloride, and pH denaturation profiles, was very similar to that of the free-enzyme form, thus suggesting that penicillin acylase was entrapped in its native state into aqueous free spaces of the polymer matrix.  相似文献   

15.
A novel application of organically modified silicates for covalent immobilisation of penicillin G acylase is reported. The immobilisation is efficient and the enzymatic preparation shows high specific activity and thermal stability. The technique opens new perspectives for the preparation of innovative tailor-made supports matching specific requirements of enzymatic processes.  相似文献   

16.
The culture medium for Streptomyces lavendulae ATCC 13664 was optimized on a shake-flask scale by using a statistical factorial design for enhanced production of penicillin acylase. This extracellular enzyme recently has been reported to be a penicillin K acylase, presenting also high hydrolytic activity against penicillin V and other natural aliphatic penicillins such as penicillin K, penicillin F, and penicillin dihydroF. The factorial design indicated that the main factors that positively affect penicillin acylase production by S. lavendulae were the concentration of yeast extract and the presence of oligoelements in the fermentation medium, whereas the presence of olive oil in the medium had no effect on enzyme production. An initial concentration of 2.5% (w/v) yeast extract and 3 microg/mL of CuSO4 x 5H2O was found to be best for acylase production. In such optimized culture medium, fermentation of the microorganism yielded 289 IU/L of enzyme in 72 h when employing a volume medium/volume flask ratio of 0.4 and a 300-rpm shaking speed. The presence of copper, alone and in combination with other metals, stimulated biomass as well as penicillin acylase production. The time course of penicillin acylase production was also studied in the optimized medium and conditions. Enzyme production showed catabolite repression by different carbon sources such as glucose, lactose, citrate, glycerol, and glycine.  相似文献   

17.
介孔材料MCFs的合成及组装青霉素酰化酶的性质研究   总被引:4,自引:0,他引:4  
介孔材料由于具有纳米级规则孔道和巨大的比表面积而在催化、吸附及分离等方面存在较大的应用价值.近年来,由介孔分子筛如MCM-41和SBA-15州等组装功能性材料已成为研究的热点.酶作为高效催化剂有许多优点,但在溶液中易失活,使用后无法回收,有的酶在溶液中还存在自水解问题:将酶组装在介孔材料中制成固定化酶则可解决上述问题.目前已成功地将辣根过氧化物酶  相似文献   

18.
微波辐射高效共价固定青霉素酰化酶   总被引:1,自引:0,他引:1  
为提高青霉素酰化酶的共价固定化效率, 在微波辐射条件下将酶蛋白共价固定于介孔泡沫硅(MCFs)的孔道中. 通过正硅酸四乙酯水解缩合制备介孔泡沫硅, 再于微波辅助下将青霉素酰化酶共价固定在其孔道中. 以固定化酶相对活力和活力回收为指标, 考察了加酶量、固定化温度、微波辐射时间等条件对酶固定化效率的影响. 实验结果表明: 当加酶量为60 mg/g, 固定化温度为20 ℃, 微波辐射140 s, 固定化酶相对活力达到178.1%, 表观活力为1191.3 U/g(以湿重计). 与常规方法相比, 微波辅助固定化酶时, 固定化酶相对活力提高34.5%, 固定化时间亦大幅缩短至数分钟, 这为青霉素酰化酶的高效共价固定化提供了一条新的途径.  相似文献   

19.
在内部分散超顺磁性Fe3O4纳米粒子的二乙烯苯交联聚丙烯酸微球表面引入原子转移自由基聚合(ATRP)引发剂,引发聚合向微球表面分别引入P(GMMA-r-DMAEMA-r-GMA)、P(GMMA-r-DMAEMA)和P(GMMA-r-GMA)无规共聚物刷(GMMA为甲基丙烯酸甘油单酯,DMAEMA为甲基丙烯酸-N,N-二甲氨基乙酯,GMA为甲基丙烯酸缩水甘油酯),聚合物刷中GMMA链节的作用是使聚合物刷具有亲水性,DMAEMA引入氨基,GMA引入环氧基.研究了青霉素G酰化酶在这些载体上的固定化和其酶活性.结果表明,同时引入环氧基和氨基的P(GMMA-r-DMAEMA-r-GMA)刷磁性微球固定化青霉素G酰化酶的活性和活性收率都最高,其固定化动力学比只含环氧基P(GMMA-r-GMA)刷磁性微球的好.固定化酶比自由酶更耐热,固定化酶的最佳pH值比自由酶的略高,固定化酶重复使用10次后其活性保留70%.  相似文献   

20.
The culture medium for Streptomyces lavendulae ATCC 13664 was optimized on a shake-flask scale by using a statistical factorial design for enhanced production of penicillin acylalse. This extracellularenzyme recently has been reported to bea penicillin Kacylase, presenting also high hydrolytic activity against penicillin V and other natural aliphatic penicillins such as penicillin K, penicillin F, and penicillin dihydroF,. The factorial design indicated that the main factors that positively affect penicillin acylase production by S. lavendulae were the concentration of yeast extract and the presence of oligoelements in the fermentation medium, whereas the presence of olive oil in the medium had no effect on enzyme production. An initial concentration of 2.5% (w/v) yeast extract and 3 μg/mL of CuSO4·5H2O was found to be best for acylase production. In such optimized culture medium, fermentation, of the microorganism yielded 289 IU/L of enzyme in 72 h when employing a volume medium/volume flask ratio of 0.4 and a 300-rpm shaking speed. The presence of copper, alone and in combination with other metals, stimulated biomass as well as penicillin acylase production. The time course of penicillin acylase production was also studied in the optimized medium and conditions. Enzyme production showed catabolite repression by different carbon sources such as glucose, lactose, citrate, glycerol, and glycine.  相似文献   

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