首页> 美国卫生研究院文献>Springer Open Choice >Biotransformation of Endocrine-Disrupting Compounds in Groundwater: Bisphenol A Nonylphenol Ethynylestradiol and Triclosan by a Laccase Cocktail from Pycnoporus sanguineus CS43
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Biotransformation of Endocrine-Disrupting Compounds in Groundwater: Bisphenol A Nonylphenol Ethynylestradiol and Triclosan by a Laccase Cocktail from Pycnoporus sanguineus CS43

机译:产自碧萝PCS43的漆酶鸡尾酒对地下水中内分泌干扰化合物的生物转化:双酚A壬基酚乙炔二醇和三氯生

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摘要

The biodegradation of organic compounds present in water at trace concentration has become a critical environmental problem. In particular, enzymatic oxidation by fungal laccases offers a promising alternative for efficient and sustainable removal of organic pollutants in water. In this work, the biocatalytic ability of laccases from the Pycnoporus sanguineus CS43 fungus was evaluated. A filtered culture supernatant (laccase cocktail) evidenced an enhanced biotransformation capability to remove common endocrine-disruptor compounds (EDCs), such as bisphenol A, 4-nonylphenol, 17-α-ethynylestradiol and triclosan. A biodegradation of around 89–100 % was achieved for all EDCs using synthetic samples (10 mg L−1) and after the enzymatic treatment with 100 U L−1 (50.3 U mg −1). The biodegradation rates obtained were fitted to a first order reaction. Furthermore, enzymatic biocatalytic activity was also evaluated in groundwater samples coming from northwestern Mexico, reaching biotransformation percentages between 55 and 93 % for all tested compounds. As far as we know this is the first study on real groundwater samples in which the enzymatic degradation of target EDCs by a laccase cocktail from any strain of Pycnoporus sanguineus was evaluated. In comparison with purified laccases, the use of cocktail offers operational advantages since additional purification steps can be avoided.
机译:水中痕量浓度的有机化合物的生物降解已成为关键的环境问题。尤其是,真菌漆酶的酶促氧化为有效和可持续地去除水中的有机污染物提供了有希望的替代方法。在这项工作中,评估了来自Pycnoporus sanguineus CS43真菌的漆酶的生物催化能力。过滤后的培养上清液(漆酶混合物)显示出增强的生物转化能力,可去除常见的内分泌干扰物(EDC),例如双酚A,4-壬基苯酚,17-α-乙炔基雌二醇和三氯生。使用合成样品(10 mg L -1 )和用100U L -1 酶处理后,所有EDC的生物降解率约为89–100%(50.3 U -1 )。使获得的生物降解速率适合一级反应。此外,还在墨西哥西北部的地下水样品中评估了酶促生物催化活性,所有测试化合物的生物转化率均在55%至93%之间。据我们所知,这是对真正的地下水样品的首次研究,其中评估了来自任何菌株的碧萝P(Pycnoporus sanguineus)的漆酶混合物对目标EDC的酶促降解作用。与纯化的漆酶相比,使用鸡尾酒具有操作优势,因为可以避免额外的纯化步骤。

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