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首页> 外文期刊>Science of the total environment >Characterization of combined cross-linked enzyme aggregates from laccase, versatile peroxidase and glucose oxidase, and their utilization for the elimination of Pharmaceuticals
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Characterization of combined cross-linked enzyme aggregates from laccase, versatile peroxidase and glucose oxidase, and their utilization for the elimination of Pharmaceuticals

机译:漆酶,通用过氧化物酶和葡萄糖氧化酶组合的交联酶聚集体的表征及其在消除药物中的用途

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摘要

In order to transform a wide range of pharmaceutically active compounds (PhACs), the three oxidative enzymes laccase (Lac) from Trametes versicolor, versatile peroxidase (VP) from Bjerkandera adusta and glucose oxidase (GOD) from Aspergillus niger were concomitantly cross-linked after aggregation, thus, making a combined cross-linked enzyme aggregate (combi-CLEA) that was versatile and involved in an enzymatic cascade reaction. From the initial enzymes about 30% of initial laccase activity was recovered along with 40% for each of VP and GOD. The combi-CLEA showed good results in conditions close to those of real wastewater (neutral pH and medium temperature) as well as a good ability to resist to denaturing conditions such as high temperature (60 ℃) and low pH (3). Batch experiments were realized to test the free enzyme's ability to degrade, a PhACs cocktail, mainly in a synthetic wastewater containing acetaminophen, naproxen, mefenamic acid, indometacin, diclofenac, ketoprofen, caffeine, diazepam, ciprofloxacin, trimethoprim, fenofibrate and bezafibrate, carbamaze-pine and its by-product 10-11 epoxy-carbamazepine. High removal was achieved (more than 80%) for the five first compounds. Then, the elimination ability of the combi-CLEA with or without hydrogen peroxide, glucose or manganese sulfate was determined. Globally, our results demonstrated that VP has a wider removal spectrum than Lac. These removal features are enhanced under more specific conditions, whereas the combi-CLEA combined advantages of both VP and laccase. Finally, the elimination of PhACs in a municipal wastewater treatment plant effluent using the combi-CLEA was marginally investigated. Concentrations of most of the selected PhACs were below the limit of quantification (lower than 20 ng/L) except for acetaminophen. Its combi-CLEA-mediated removal reached up to 25%.
机译:为了转化广泛的药物活性化合物(PhACs),将三种Trametes versicolor氧化酶漆酶(Lac),来自Bjerkandera adusta的通用过氧化物酶(VP)和来自黑曲霉(Aspergillus niger)的葡萄糖氧化酶(GOD)同时交联。聚集,因此,使组合的交联酶聚集体(combi-CLEA)通用并参与酶促级联反应。从初始酶中回收了大约30%的初始漆酶活性,而VP和GOD分别回收了40%。在接近真实废水(中性pH和中等温度)的条件下,combi-CLEA表现出良好的效果,并且具有良好的抗变性条件(例如高温(60℃)和低pH)的能力(3)。实现了分批实验,以测试游离酶的降解能力,即PhACs混合物,主要是在含有对乙酰氨基酚,萘普生,芬非那酸,吲哚美辛,双氯芬酸,酮洛芬,咖啡因,地西epa,环丙沙星,甲氧苄啶,非诺贝特和苯扎贝特,卡巴咪嗪的合成废水中松及其副产品10-11环氧-卡马西平。前五个化合物的去除率很高(超过80%)。然后,测定有或没有过氧化氢,葡萄糖或硫酸锰的combi-CLEA的消除能力。在全球范围内,我们的结果表明,与Lac相比,VP的去除范围更广。这些去除功能在更特定的条件下得到增强,而combi-CLEA结合了VP和漆酶的优势。最后,对使用combi-CLEA消除市政污水处理厂废水中的PhAC进行了少量研究。除对乙酰氨基酚外,大多数所选PhAC的浓度均低于定量限(低于20 ng / L)。其combi-CLEA介导的去除率高达25%。

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  • 来源
    《Science of the total environment 》 |2014年第15期| 90-99| 共10页
  • 作者单位

    Department of Civil Engineering, Universite de Sherbrooke, 2500 Boulevard de l'Universite, Sherbrooke, Quebec J1K 2R1, Canada;

    Department of Chemistry, Universite de Sherbrooke, 2500 Boulevard de l'Universite, Sherbrooke, Quebec J1K 2R1, Canada;

    Department of Chemical Engineering Universite de Sherbrooke, 2500 Boulevard de l'Universite, Sherbrooke, Quebec J1K 2R1, Canada;

    Department of Chemistry, Universite de Sherbrooke, 2500 Boulevard de l'Universite, Sherbrooke, Quebec J1K 2R1, Canada;

    Environmental Engineering Laboratory, Department of Civil Engineering, Universite de Sherbrooke, 2500 boul. de l'Universite, Sherbrooke, Quebec J1K 2R1, Canada,Etienne-Le Bel Centre de Recherche Clinique, Centre Hospitalier Universitaire de Sherbrooke, 3001, 12~e Avenue Nord, Sherbrooke, Quebec J1K 2R1, Canada;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Laccase; Versatile peroxidase; Glucose oxidase; Combi-CLEA; Pharmaceutically active compounds; Wastewaters;

    机译:漆酶;多种过氧化物酶;葡萄糖氧化酶;Combi-CLEA;药物活性化合物;废水;

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