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1.
CO2是导致温室效应的主要气体,固定和转化CO2的研究对于温室效应的减缓和环境保护方面具有重要意义。近年来CO2转化的研究取得了迅猛发展,其中生物法固定CO2由于其反应条件温和且绿色无污染的优点而备受关注。本文对转化CO2有关的乳酸脱氢酶(LDH)、苹果酸脱氢酶(MDH)和草酰乙酸脱羧酶(OAADC)进行了初步的固定化分析。首先以碳纳米管、壳聚糖和海藻酸钠为原料,制备了包埋上述CO2转化酶的微胶囊固定化体系,然后分别比较了游离酶和固定化酶的操作稳定性和储存稳定性。研究结果表明,固定化的CO2转化酶的操作稳定性和储存稳定得到明显的提高。本研究对CO2的转化和应用方面具有重要参考价值。  相似文献   

2.
利用四乙氧基硅烷(TEOS)原位水解法将SiO2掺杂于海藻酸(ALG)凝胶中,通过双交联制备出新型ALG—SiO2杂化凝胶以固定化洋葱伯克霍尔德菌脂肪酶。结果表明,固定化酶的最优条件:质量分数为2.0%的ALG、0.2mol/LCaCl2、V(ALG)/V(TEOS)为5、加酶量为1gALG加100mg酶粉、固定化60min、采用直径为0.8mm的针头滴定、真空冷冻干燥。在此条件下,酶蛋白的包埋率可达100%,酶活回收率可达91%。固定化酶的最适pH为8.0,最适作用温度为50℃,重复使用8次后,酶活性仍能保持80%以上。ALG—Si02杂化凝胶的场扫描电镜(FESEM)观察发现凝胶的整体构造仍然是海藻酸凝胶骨架;与ALG凝胶平滑的内部相比较,杂化凝胶仍具有完整的网络结构,但内部更为粗糙,结构更为致密。  相似文献   

3.
基于环氧功能基团的杂化硅胶固定化酶反应器   总被引:1,自引:0,他引:1       下载免费PDF全文
在蛋白质组学研究中, 为解决自由溶液酶解时间长、蛋白酶自降解等问题, 各种类型的固定化酶反应器引起了人们的关注. 采用溶胶凝胶法, 在100 µm内径毛细管内, 以3-(甲基丙烯酰氧)丙基三甲氧基硅烷为功能单体, 以四乙氧基硅烷为交联剂, 制备了一种新型的杂化硅胶整体材料. 并通过在整体柱表面由环氧功能团水解得到的二醇与胰蛋白酶(trypsin)的氨基进行一步反应, 实现了胰蛋白酶固定化. 利用该IMER, 在47 s内实现了牛血清白蛋白的酶解; 经反相色谱分离和质谱鉴定, 序列覆盖率在35%以上, 与自由溶液酶解12 h的效果相当. 结果表明, 基于亲水性杂化硅胶整体材料的IMER有望在蛋白质组学研究中发挥重要作用.  相似文献   

4.
过氧化氢酶(catalase,CAT)是一种在食品、医疗、纺织等领域广泛应用的工业酶,具有催化效率高、专一性强、绿色环保等突出特点。工业中游离过氧化氢酶无法回收再利用,导致以其为核心的工业生物转化过程成本较高。开发一种简单、温和、低成本并且体现绿色化学理念的方法对过氧化氢酶进行固定化有望提高其利用率并且强化酶学性能,具有迫切的现实需求。本研究将源自枯草芽孢杆菌(Bacillus subtilis)168的过氧化氢酶KatA在大肠杆菌中进行重组表达,之后将分离纯化得到的纯酶以酶-无机杂化纳米花形式制备成固定化酶并进行酶学性质研究。结果显示,利用乙醇沉淀、DEAE阴离子交换层析、疏水层析3步纯化,最终获得电泳纯的重组KatA,之后通过优化制备条件获得了一种新型KatA/Ca3(PO4)2杂化纳米花固定化酶。酶学性质研究结果显示,游离酶KatA的最适反应温度为35℃,KatA/Ca3(PO4)2杂化纳米花的最适反应温度为30−35℃,二者最适反应pH值均为11.0。游离酶KatA和KatA/Ca3(PO4)2杂化纳米花在pH4.0−11.0和25−50℃条件下均表现出较好的稳定性。KatA/Ca3(PO4)2杂化纳米花显示出比游离酶KatA更好的储存稳定性,在4℃储存14d后仍保留82%的酶活力,而游离酶仅具有50%的酶活力。此外,纳米花在进行5次催化反应后仍具有55%的酶活力,表明其具有较好的操作稳定性。动力学研究结果显示,游离酶KatA对底物过氧化氢的Km为(8.80±0.42)mmol/L,kcat/Km为(13151.53±299.19)L/(mmol·s);而KatA/Ca3(PO4)2杂化纳米花的Km为(32.75±2.96)mmol/L,kcat/Km为(4550.67±107.51)L/(mmol·s)。与游离酶KatA相比,KatA/Ca3(PO4)2杂化纳米花对底物过氧化氢的亲和力下降,同时其催化效率也有所降低。综上所述,本研究以Ca2+作为自组装诱导剂,成功将KatA以酶-无机杂化纳米花形式制备成固定化酶,不仅对部分酶学性能实现了强化,而且为固定化过氧化氢酶的绿色制备和规模化应用奠定了基础。  相似文献   

5.
利用四乙氧基硅烷(TEOS)原位水解法将S iO2掺杂于海藻酸(ALG)凝胶中,通过双交联制备出新型ALG-S iO2杂化凝胶以固定化洋葱伯克霍尔德菌脂肪酶。结果表明,固定化酶的最优条件:质量分数为2.0%的ALG、0.2 mol/L CaC l2、V(ALG)/V(TEOS)为5、加酶量为1 g ALG加100 mg酶粉、固定化60 m in、采用直径为0.8 mm的针头滴定、真空冷冻干燥。在此条件下,酶蛋白的包埋率可达100%,酶活回收率可达91%。固定化酶的最适pH为8.0,最适作用温度为50℃,重复使用8次后,酶活性仍能保持80%以上。ALG-S iO2杂化凝胶的场扫描电镜(FESEM)观察发现凝胶的整体构造仍然是海藻酸凝胶骨架;与ALG凝胶平滑的内部相比较,杂化凝胶仍具有完整的网络结构,但内部更为粗糙,结构更为致密。  相似文献   

6.
纳米材料因其大比表面积、强吸附能力、高机械强度及易分散等特性而备受催化剂载体领域研究者的关注。本文采用纳米SiO2为载体,通过化学修饰将其用于共价键合法制备固定化酶。发现纳米载体可负载1/8(w/w)的葡萄糖苷酶,且回收率达70%。所得的固定化生物催化剂可用于乙酸乙酯-水双相体系中水解大豆异黄酮,其稳定性比游离酶有明显改善。但纳米颗粒易吸附于界面上,不利于反应结束后两相液滴的聚并及产物的分离。  相似文献   

7.
Lipozyme IM20 from Novo Nordisk (Denmark) was examined after various treatments. Conditions were chosen to reflect those that would be considered in the design of an industrial process. A two-level factorial design was employed to assess the effects of pressurization/depressurization cycles, rate of depressurization and exposure length. A significant three-factor interaction was observed. Lowest residual activity was observed for runs in which the depressurization rate was 86–89 bar min–1. Incubation for 12 h also yielded low residual activity but only when exposing the immobilized enzyme to one cycle. The highest residual activity was obtained for immobilized enzymes repeatedly exposed for periods of 12 h (5 times) with a depressurization rate of 4.3 to 4.45 bar min–1. This effect may be due to the extraction of an inhibiting compound. Tuning process parameters can lead to a seven-fold change in residual activity.  相似文献   

8.
Efficient cofactor regeneration and reuse are highly desired for many important biotransformation applications. Here we show for the first time that cofactor NAD(H) covalently attached to micro particles, which can be easily recovered and reused, effectively mediated multistep reactions catalyzed by enzymes that were also immobilized with the micro particles. Such an immobilized enzyme-cofactor catalytic system was examined for the production of methanol from CO(2) with in situ cofactor regeneration. Four enzymes including formate, formaldehyde, alcohol, and glutamate dehydrogenases were coimmobilized using the same particles as that used for cofactor immobilization (enzymes and cofactor were immobilized separately). Reactions were performed by bubbling CO(2) in a suspension solution of the particle-attached enzymes and cofactor. It appeared that the collision among the particles afforded sufficient interactions between the cofactor and enzymes, and thus enabled the sequential transformation of CO(2) to methanol along with cofactor regeneration. For a 30-min batch reaction, a productivity of 0.02 micromol methanol/h/g-enzyme was achieved. That was lower than but comparable to the 0.04 micromol methanol/h/g-enzyme observed for free enzymes and cofactor at the same reaction conditions. The immobilized system showed fairly good stabilities in reusing. Over 80% of their original productivity was retained after 11 reusing cycles, with a cumulative methanol yield based on the amount of cofactor reached 127%. That was a promising enhancement in cofactor utilization as compared to the single-batch yield of 12% observed with free enzymes and free cofactor.  相似文献   

9.
Streptokinase purified from Streptococcus equinus VIT_VB2 isolated from bovine milk sample was immobilized in various solid supports namely entrapment in agarose gel, calcium alginate beads and gelatin gel by cross-linking with formaldehyde. Immobilization of streptokinase in calcium alginate beads showed maximum efficiency (81.8?±?1.06%) when compared with entrapment with agarose gel (55.6?±?2.17%) and cross-linked gelatin formaldehyde gel (71.0?±?1.54%). The purified SK activity was expressed maximum in calcium alginate (1%) and gelatin gel (0.25%) with 1292.68?±?1.33 and 1121.9?±?1.2?U?mL?1, respectively. Similarly, SK entrapped in gelatin gel and calcium alginate showed maximum in vitro blood clot lysis activity with 77.67?±?2.64% and 76.16?±?2.72%, respectively. The immobilized SK in gelatin gel showed complete clot lysis within 15?min; hence, this application of the study could be used in the treatment of superficial thrombophlebitis, phlebitis, and venous thrombosis. These beads were used for three repeated cycles to check the conversion of substrates into their products, and we concluded that SK can be immobilized in the suitable matrices. Therefore, this helps in the drug-delivery strategies in highly efficient way, moreover, economically competent process in the pharmaceutics.  相似文献   

10.
Rogers  H. H.  Dahlman  R. C. 《Plant Ecology》1993,104(1):117-131
Carbon dioxide is rising in the global atmosphere, and this increase can be expected to continue into the foreseeable future. This compound is an essential input to plant life. Crop function is affected across all scales from biochemical to agro-ecosystem. An array of methods (leaf cuvettes, field chambers, free-air release systems) are available for experimental studies of CO2 effects. Carbon dioxide enrichment of the air in which crops grow usually stimulates their growth and yield. Plant structure and physiology are markedly altered. Interactions between CO2 and environmental factors that influence plants are known to occur. Implications for crop growth and yield are enormous. Strategies designed to assure future global food security must include a consideration of crop responses to elevated atmospheric CO2. Future research should include these targets: search for new insights, development of new techniques, construction of better simulation models, investigation of belowground processes, study of interactions, and the elimination of major discrepancies in the scientific knowledge base.  相似文献   

11.
Grasses are hyper-accumulators of silicon (Si), which they acquire from the soil and deposit in tissues to resist environmental stresses. Given the high metabolic costs of herbivore defensive chemicals and structural constituents (e.g. cellulose), grasses may substitute Si for these components when carbon is limited. Indeed, high Si uptake grasses evolved in the Miocene when atmospheric CO2 concentration was much lower than present levels. It is, however, unknown how pre-industrial CO2 concentrations affect Si accumulation in grasses. Using Brachypodium distachyon, we hydroponically manipulated Si-supply (0.0, 0.5, 1, 1.5, 2 mM) and grew plants under Miocene (200 ppm) and Anthropocene levels of CO2 comprising ambient (410 ppm) and elevated (640 ppm) CO2 concentrations. We showed that regardless of Si treatments, the Miocene CO2 levels increased foliar Si concentrations by 47% and 56% relative to plants grown under ambient and elevated CO2, respectively. This is owing to higher accumulation overall, but also the reallocation of Si from the roots into the shoots. Our results suggest that grasses may accumulate high Si concentrations in foliage when carbon is less available (i.e. pre-industrial CO2 levels) but this is likely to decline under future climate change scenarios, potentially leaving grasses more susceptible to environmental stresses.  相似文献   

12.
AIMS: The present study was aimed at finding the optimal conditions for immobilization of Bacillus licheniformis KBR6 cells in calcium-alginate (Ca-alginate) beads and determining the operational stability during the production of tannin-acyl-hydrolase (tannase) under semicontinous cultivation. METHODS AND RESULTS: The active cells of B. licheniformis KBR6 were immobilized in Ca-alginate and used for the production of tannase. The influence of alginate concentration (5, 10, 20 and 30 g l(-1)) and initial cell loading on enzyme production were studied. The production of tannase increased significantly with increasing alginate concentration and reached a maximum enzyme yield of 0.56 +/- 0.03 U ml(-1) at 20 g l(-1). This was about 1.70-fold higher than that obtained by free cells. The immobilized cells produced tannase consistently over 13 repeated cycles and reached a maximum level at the third cycle. Scanning electron microscope study indicated that the cells in Ca-alginate beads remain in normal shape. CONCLUSIONS: The Ca-alginate entrapment is a promising immobilization method of B. licheniformis KBR6 for repeated tannase production. Tannase production by immobilized cells is superior to that of free cells because it leads to higher volumetric activities within the same period of fermentation. SIGNIFICANCE AND IMPACT OF THE STUDY: This is the first report of tannase production from immobilized bacterial cells. The bacterium under study can produce higher amounts of tannase with respect to other fungal strains within a short cultivation period.  相似文献   

13.
淮骏  张书祥 《工业微生物》2011,41(6):99-103
采用海藻酸钠包埋植物乳杆菌并通过测定固定化细胞发酵清液的抑菌效果,优化得到的固定化最佳工艺条件为:海藻酸钠浓度为3%,CaCl2浓度为1.5%,菌悬液体积为3.5 mL(4.0×108 cfu/mL).固定化细胞重复发酵多批次效果良好.固定化细胞发酵条件优化结果表明:最适pH为7.0,最适温度为36℃,培养基中添加0....  相似文献   

14.
Future increase in atmospheric CO2 concentrations will potentially enhance grassland biomass production and shift the functional group composition with consequences for ecosystem functioning. In the “GiFACE” experiment (Giessen Free Air Carbon dioxide Enrichment), fertilized grassland plots were fumigated with elevated CO2 (eCO2) year‐round during daylight hours since 1998, at a level of +20% relative to ambient concentrations (in 1998, aCO2 was 364 ppm and eCO2 399 ppm; in 2014, aCO2 was 397 ppm and eCO2 518 ppm). Harvests were conducted twice annually through 23 years including 17 years with eCO2 (1998 to 2014). Biomass consisted of C3 grasses and forbs, with a small proportion of legumes. The total aboveground biomass (TAB) was significantly increased under eCO2 (p = .045 and .025, at first and second harvest). The dominant plant functional group grasses responded positively at the start, but for forbs, the effect of eCO2 started out as a negative response. The increase in TAB in response to eCO2 was approximately 15% during the period from 2006 to 2014, suggesting that there was no attenuation of eCO2 effects over time, tentatively a consequence of the fertilization management. Biomass and soil moisture responses were closely linked. The soil moisture surplus (c. 3%) in eCO2 manifested in the latter years was associated with a positive biomass response of both functional groups. The direction of the biomass response of the functional group forbs changed over the experimental duration, intensified by extreme weather conditions, pointing to the need of long‐term field studies for obtaining reliable responses of perennial ecosystems to eCO2 and as a basis for model development.  相似文献   

15.
Milligram amounts of metabolites of drug candidates are required to identify toxic products. Human drug metabolites are currently produced selectively in a time- and cost-efficient manner in bioreactor systems containing recombinant Escherichia coli co-expressing a human cytochrome P450 isoenzyme/NADPH cytochrome P450 reductase (hCYP/HR) complex. For further optimization, immobilization of the catalytic system in Ca-alginate microbeads was considered. This new concept was designed for CYP3A4 with testosterone as substrate. Immobilized E. coli cells had a high maximal and homogeneously distributed biomass. Viability was stable over at least 1 week of culture and even longer during storage. Gene expression was ideally initiated 6 h after immobilization. Although immobilized E. coli cells expressed a highly functional enzyme system after 2 days, they did not metabolize testosterone, probably due to cell permeability problems resulting from immobilization. Therefore, immobilized cell membranes displaying testosterone bioconversion activity, even after long-term storage, will be used in bioreactors with high organic solvent content.  相似文献   

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