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1.
以壳聚糖和海藻酸钠为原材料,采用乳化交联法制备空白微球,通过戊二醛固定木瓜蛋白酶,以固定化木瓜蛋白酶的活性回收率作为最终测定指标,并以星点设计-效应面法优化实验条件。通过一系列的实验,结果表明最优条件为:固定化时间是4 h,壳聚糖与海藻酸钠的质量配比(m/m)为5∶5、加酶量为700 U/mL、戊二醛浓度为1. 0%、固定化温度为40℃。木瓜蛋白酶的固定化效果良好,木瓜蛋白酶活性回收率为68. 9%。  相似文献   

2.
磁性聚乙烯醇缩丁醛微球固定化α-淀粉酶   总被引:10,自引:0,他引:10  
吴颉  王君  景晓燕  张密林 《精细化工》2003,20(3):143-145,156
制备出磁性聚乙烯醇缩丁醛微球,并用该微球做载体,采用共价交联法固定α 淀粉酶。最佳固定化工艺条件为:pH=6 07,激活和交联时戊二醛的质量分数分别为4%和0 025%。在最佳固定化条件下所制磁性固定化酶的活力为25426 3U/g微球,蛋白载量为187 2mg/g微球,比活为135 8U/mg蛋白,活性回收率为36 9%。磁性固定化酶的理化性质为:磁性固定化酶的最适温度(60℃)比自由酶(50℃)高,最适pH(6 97)与自由酶相同,磁性固定化酶Km(米氏常数)值(5 7×10-4kg/L)较自由酶Km值(5 0×10-4kg/L)大,热稳定性、pH稳定性及操作稳定性均比自由酶有所提高。  相似文献   

3.
用于酶固定化的多胺化壳聚糖基载体的合成及性能表征   总被引:2,自引:0,他引:2  
以构建性能优良的壳聚糖基固定化酶载体为目的,用反相悬浮交联法制备了壳聚糖微球,以其作为固定化载体基体,进一步制备了多胺化壳聚糖载体,分别优化了壳聚糖微球环氧化及胺化反应条件。最佳环氧化条件为:n(环氧氯丙烷)∶n(壳聚糖结构单元)=10∶1、50℃反应6 h,环氧基含量达3.32 mmol/g;最佳胺化条件为:n(四乙烯五胺)∶n(环氧基)=15∶1、55℃反应6 h,载体氨基含量可达4.55 mmol/g,高于未胺化微球的2.01mmol/g。用IR、SEM、XRD等对最终产物进行了表征。结果表明,制备的多胺化壳聚糖呈单分散球形,粒径220~300μm,表面较光滑,抗酸性能显著增强。采用该载体对木瓜蛋白酶进行固定化,固定化酶表观活力最高达146 U/g,活力回收率达51%,是采用未经多胺修饰的壳聚糖微球固定化的2~3倍。  相似文献   

4.
制备了磁性壳聚糖复合微粒(Fe3O4/CS),并以Fe3O4/CS为载体固定了超氧化物歧化酶(Superoxide Dismutase,SOD)。研究了温度、pH、储存时间、操作次数等对固定化SOD和游离SOD活性的影响。研究结果表明,固定化SOD的热稳定性、pH稳定性、储存稳定性等性能明显优于游离SOD,固定化SOD的操作稳定性良好。研究了固定化SOD和游离SOD的半衰期t1/2和动力学性质。固定化SOD的半衰期t1/2,1=35.7 d,游离SOD的半衰期t1/2,2=8.8 d;固定化SOD的米氏常数Km,1=0.04 mmol/L,最大反应速率Vm,1=40.19 mmol/min,游离SOD的米氏常数Km,2=0.19 mmol/L,最大反应速率Vm,2=85.76 mmol/min。  相似文献   

5.
《应用化工》2019,(11):2550-2554
采用水热法制备得到磁性Fe_3O_4纳米粒子,以壳聚糖、制备的Fe_3O_4为原料,采用乳化交联法成功制备了磁性壳聚糖微球,并通过SEM、FTIR、VSM、XRD对其进行表征。进一步以制备的磁性壳聚糖微球为载体,采用吸附法制备磁性壳聚糖微球固定化乳糖酶。以酶活力为考察指标,研究了不同固定化条件对制备固定化酶的影响,以及固定化酶的酶学性质。结果表明,乳糖酶的最佳固定化条件为:固定化时间4 h,pH为7.0,乳糖酶酶液浓度为0.6 mg/mL,固定化酶相对于游离酶的pH稳定性和温度稳定性均有一定程度的提高,固定化酶重复使用5次后,酶活仍保留65%以上。  相似文献   

6.
在磁性Fe3O4外包覆一层SiO_2,再在其外包裹壳聚糖制备出磁性硅基壳聚糖微球(MSC),对MSC进行环氧基修饰后用于柚苷酶的固定化研究,并对磁性硅基壳聚糖微球固定化柚苷酶水解柚皮苷的pH、温度、操作和储藏稳定性进行了考察。通过单因素实验,确定了环氧基修饰的磁性硅基壳聚糖微球(MSCE)固定化柚苷酶的最佳工艺条件为:pH 3.0,温度30℃,时间4 h、给酶量57.48 U/mL。在该条件下,MSCE固定化柚苷酶的载酶率、酶活回收率和酶比活力分别为31.29%、88.92%和409.33 U/g。与游离柚苷酶相比,MSCE固定化柚苷酶用于水解柚皮苷具有良好的pH稳定性和温度稳定性,重复使用7次后仍具有53.36%的相对酶活力,4℃条件贮存30 d后仍具有80.97%的相对酶活力。  相似文献   

7.
壳聚糖载体柔性固定化木瓜蛋白酶   总被引:13,自引:1,他引:12  
用酶柔性固定化模型,以壳聚糖为载体,双醛淀粉为柔性链,对木瓜蛋白酶进行柔性固定化. 通过对固定化条件的优化,得出选用壳聚糖、双醛淀粉制得的柔性载体(Chitosan-DAS50)在酶用量为14.4 mg/g(酶/干球)、pH 8的条件下,固定木瓜蛋白酶18 h,所得的固定化酶活力回收率达72%,相当于采用壳聚糖-戊二醛(Chitosan-GA)手臂载体的3倍. 结果表明,酶的柔性固定化模型可以改善传统共价结合法固定化及手臂固定化酶活力回收率不高的缺陷.  相似文献   

8.
文中选用新型超大孔聚甲基丙烯酸缩水甘油酯微球偶联木瓜蛋白酶,用于催化酵母蛋白水解制备抗氧化肽。木瓜蛋白酶在微球上负载量为66.5 mg/g,并且均匀分布于微球内外表面;固定化酶比活力为137.5 U/mg,活力回收率达60.6%,高于商品化介孔微球固定化酶的活力。在固定化木瓜蛋白酶的可控催化作用下,酵母蛋白水解产物的最高抗氧化活力为81.2 mol TE/g,远高于蔬果的抗氧化活力。此外,固定化木瓜蛋白酶重复使用20次后仍剩余35%的初始活力。  相似文献   

9.
本文在磁性Fe3O4外包覆一层SiO2,再在其外包裹壳聚糖制备出磁性硅基壳聚糖微球(MSC),对MSC进行环氧基修饰后用于柚苷酶的固定化研究,并对磁性硅基壳聚糖微球固定化柚苷酶水解柚皮苷的pH、温度、操作和储藏稳定性进行了考察。通过单因素实验,确定了环氧基修饰的磁性硅基壳聚糖微球(MSCE)固定化柚苷酶的最佳工艺条件为:pH 3.0,温度30 ℃,时间4 h、给酶量57.48 U/mL。在此条件下,MSCE固定化柚苷酶的载酶率、酶活回收率和酶比活力分别为31.29%、88.92%和409.33 U/g。与游离柚苷酶相比,MSCE固定化柚苷酶用于水解柚皮苷具有良好的pH稳定性和温度稳定性,重复使用8次后仍具有53.36%的相对酶活力,4 ℃条件储存一个月后仍具有80.97%的相对酶活力。  相似文献   

10.
沈俞  刘均忠  刘茜  焦庆才 《精细化工》2008,25(5):459-463
用卡拉胶与明胶复合载体固定大肠杆菌,优化了固定化细胞的制备条件,并利用该复合载体固定大肠杆菌细胞进行酶法制备γ-氨基丁酸的研究。实验结果表明,最佳工艺条件为:m(卡拉胶):m(明胶)=3:2,ρ(混合胶)=12g/L,ρ(KCl)=60g/L,固定化时间为3h,ρ(菌体)=80g/L,反应温度为37℃,转化体系pH=4.8,ρ(底物)=40g/L。固定化细胞在最适条件下比酶活高达10740U。包埋1.0g湿菌体的固定化细胞重复使用7次,可把42gL-谷氨酸完全转化为γ-氨基丁酸。  相似文献   

11.
Magnetic porous hydrophobic microspheres were prepared by modified suspension copolymerization of methacrylate (MMA) and divinylbenzene (DVB) in the presence of oleic acid coated magnetite (Fe3O4), and the microspheres were used as biocarrier for the lipase immobilization. The results showed that the magnetic microspheres possessed spherical shape, core/shell structure, porous structure and high magnetic content, and the size and structure of magnetic microspheres had no significant changes after enzyme binding. The particle average size of microspheres was 66 μm, the magnetic content of microspheres was up to 31%, and the magnetization saturation values of the core/shell magnetic microspheres were measured at 300 K to be 11.02 emu g−1. Lipase was immobilized on the magnetic porous carrier at up to 16.30 mg/g carrier. Activity and enantioselectivity of the immobilized lipase for the synthesis of R-HMPC acetate were investigated, indicating an interfacial activation of the enzyme after immobilization. Moreover, the pH dependency and operational stability of the immobilized lipase were studied, and they possess high stability and can be reused for ten cycles with loss 10% activity.  相似文献   

12.
A nonspecific chitosan hydrolytic enzyme, cellulase, was immobilized onto magnetic chitosan microspheres, which was prepared in a well spherical shape by the suspension crosslinking technique. The morphology characterization of the microspheres was carried out with scanning electron microscope and the homogeneity of the magnetic materials (Fe3O4) in the microspheres was determined from optical micrograph. Factors affecting the immobilization, and the properties and stabilities of the immobilized enzyme were studied. The optimum concentration of the crosslinker and cellulase solution for the immobilization was 4% (v/v) and 6 mg/mL, respectively. The immobilized enzyme had a broader pH range of high activity and the loss of the activity of immobilized cellulase was lower than that of the free cellulase at high temperatures. This immobilized cellulase has higher apparent Michaelis–Menten constant Km (1.28 mg/mL) than that of free cellulase (0.78 mg/mL), and the maximum apparent initial catalytic rate Vmax of immobilized cellulase (0.39 mg mL?1 h?1) was lower than free enzyme (0.48 mg mL?1 h?1). Storage stability was enhanced after immobilization. The residual activity of the immobilized enzyme was 78% of original after 10 batch hydrolytic cycles, and the morphology of carrier was not changed. © 2006 Wiley Periodicals, Inc. J Appl Polym Sci 101: 1334–1339, 2006  相似文献   

13.
以介孔分子筛SBA-16为载体采用物理吸附的方法对木瓜蛋白酶进行了固定化,研究了固定化条件对酶的相对活性的影响及在不同pH值下游离酶和固载酶的pH稳定性。实验结果表明当1 g载体的給酶量为30 mg,固定化时间为2.5 h,pH值为7.0时,固定化木瓜蛋白酶的相对活性最好。与游离酶相比,固定化酶的pH稳定性有明显改善。  相似文献   

14.
Poly(2‐hydroxyethylmethacrylate) (PHEMA)‐based microspheres (150–200 µm in diameter) were produced by a modified suspension polymerization of different type of comonomers—namely, acrylic acid, dimethylaminoethyl‐methacrylate, and methylmethacrylate. These microspheres were activated with cyanogen bromide (CNBr) at pH 11.5, and heparin molecules were then immobilized through covalent bonds. The amount of immobilized heparin was controlled by changing the initial concentration of CNBr and heparin. The increase in the initial concentrations of both CNBr and heparin caused an increase in the amount of heparin immobilized onto microspheres for all polymer surfaces. The maximum heparin immobilization was observed on the PHEMA homopolymer microspheres (180 mg/g). The plain and heparin‐immobilized microspheres were contacted with blood in in vitro systems and in ex vivo animal experiments. Loss of the blood cells and clotting times were followed. Anticoagulant effect of the immobilized heparin was clearly observed with blood coagulation experiments. Loss of cells in the blood contacting with heparin‐immobilized microspheres was significantly lower than those observed with the plain microspheres. Bovine serum albumin adsorption onto the microspheres containing heparin on their surfaces was also studied. High albumin adsorption values (up to 127 mg/g) were observed in which the heparin‐immobilized PHEMA microspheres were used. © 1999 John Wiley & Sons, Inc. J Appl Polym Sci 74: 655–662, 1999  相似文献   

15.
In an effort to better understand bioreactor systems, papain (EC 3.4.22.2) was covalently immobilized onto vinyl alcohol/vinyl butyral copolymer (PMB) membrane by means of glutaraldehyde (GA), 1,1'-carbonyldiimidazole (CDI), or 2-fluoro-1-methylpyridinium toluene-4-sulfonate (FMP). Various kinetic and performance characteristics of the immobilized papain were evaluated. It was found that the characteristics of the membranebound papain depended on the immobilization methods. The CDI- and FMP-immobilized papain bioreactors showed better storage and thermal stability than did the GA-immobilized papain bioreactor, although the apparent Michaelis constant, Km, of the GA-immobilized papain was closer to the free enzyme than to the corresponding CDI- and FMP-immobilized enzymes. In separate experiments, a 6-carbon spacer was inserted between the membrane surface and the covalently bound enzyme. It was found that the insertion of a spacer reduced the disturbance of the enzyme systems, resulting in Km values intermediate between the free and directly bound enzymes for all three immobilization methods. Electron paramagnetic resonance spectroscopy was also used to investigate the conformational change and the active site structure of papain. It was found that the active site SH group of papain immobilized with a 6-carbon spacer had faster motion than that of directly bound enzyme, but slower motion than that of the free enzyme. With both direct-coupling and with a spacer, the SH group motion at the active site of papain by CDI and FMP immobilizations was similar, but slower than the corresponding GA immobilization. The conformational changes of the active site of papain upon immobilization with and without a spacer were in agreement with the functional properties of the enzyme. There was a good correlation between the motion of spin-labeled cysteine in the active site of papain and kinetic properties of this protease: As motion slowed, Km increased and Vmax decreased. Of the immobilization procedures used, GA immobilization with a spacer yielded kinetic and structural characteristics most similar to the free enzyme while providing increased stability and reusability relative to the latter. © 1993 John Wiley & Sons, Inc.  相似文献   

16.
Fe3O4/poly(styrene‐co‐maleic anhydride) core–shell composite microspheres, suitable for binding enzymes, were prepared using magnetite particles as seeds by copolymerization of styrene and maleic anhydride. The magnetite particles were encapsulated by polyethylene glycol, which improved the affinity between the magnetite particles and the monomers, thus showing that the size of the microspheres, the amount of the surface anhydrides, and the magnetite content in the composite are highly dependent on magnetite particles, comonomer ratio, and dispersion medium used in the polymerization. The composite microspheres, having 0.08–0.8 μm diameter and containing 100–800 μg magnetite/g microspheres and 0–18 mmol surface‐anhydride groups/g microsphere, were obtained. Free α‐amylase was immobilized on the microspheres containing reactive surface‐anhydride groups by covalent binding. The effects of immobilization on the properties of the immobilized α‐amylase [magnetic immobilized enzyme (MIE)] were studied. The activity of MIE and protein binding capacity reached 113,800 U and 544.3 mg/g dry microspheres, respectively. The activity recovery was 47.2%. The MIE had higher optimum temperature and pH compared with those of free α‐amylase and showed excellent thermal, storage, pH, and operational stability. Furthermore, it can be easily separated in a magnetic field and reused repeatedly. © 2004 Wiley Periodicals, Inc. J Appl Polym Sci 95: 328–335, 2005  相似文献   

17.
Poly(hydroxyethyl methacrylate-co-glycidyl methacrylate)-grafted magnetic chitosan microspheres (HG-MCM) were prepared using reversed-phase suspension polymerization method. The HG-MCM presented a core-shell structure and regular spherical shape with poly(hydroxyethyl methacrylate-co-glycidyl methacrylate) grafted onto the chitosan layer coating the Fe3O4 cores. The average diameter of the magnetic microspheres was 10.67 μm, within a narrow size distribution of 6.6–17.4 μm. The saturation magnetization and retentivity of the magnetic microspheres were 7.0033 emu/g and 0.6273 emu/g, respectively. The application of HG-MCM in immobilization of lactase showed that the immobilized enzyme presented higher storage, pH and thermal stability compared to the free enzyme. This indicates that HG-MCM have potential applications in bio-macromolecule immobilization.  相似文献   

18.
Water-insoluble papain was prepared by immobilizing papain onto the surface of porous poly(λ-methyl L -glutamate) (PMLG) beads with and without spacer. The mode of the immobilization between papain and porous PMLG beads was covalent fixation. The relative activity and the stability of the immobilized papain was investigated. The retained activity of the papain covalently immobilized by the azide method was found to be excellent toward a small ester substrate, N-benzyl L -arginine ethyl ester (BAEE), compared with that of the peptide binding method. The values of the Michaelis constant Km and the maximum reaction velocity Vm for free and immobilized papain on the PMLG beads were estimated. The apparent Km was larger for immobilized papain than for the free enzyme, while Vm was smaller for the immobilized papain. The thermal stability of the covalently immobilized papain was higher than that of the free papain. The initial enzymatic activity of the covalently immobilized papain remained approximately unchanged with storage time, when the batch enzyme reaction was performed repeatedly, indicating the excellent durability.  相似文献   

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