首页> 外文期刊>International Biodeterioration & Biodegradation >Removal of pharmaceuticals, steroid hormones, phytoestrogens, UV-filters, industrial chemicals and pesticides by Trametes versicolor: role of biosorption and biodegradation.
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Removal of pharmaceuticals, steroid hormones, phytoestrogens, UV-filters, industrial chemicals and pesticides by Trametes versicolor: role of biosorption and biodegradation.

机译:杂色Trametes去除药物,类固醇激素,植物雌激素,紫外线过滤剂,工业化学品和农药:生物吸附和生物降解的作用。

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摘要

This study reports the removal of 30 diverse trace organic contaminants (TrOC) by live (biosorption+biodegradation), intracellular enzyme-inhibited and chemically inactivated (biosorption only) whole-cell preparations and the fungal extracellular enzyme extract (predominantly laccase) from Trametes versicolor (ATCC 7731). Because phenolic substrates are amenable to degradation by laccase, all 14 phenolic TrOC were readily biodegraded. On the other hand, only eight of the 16 non-phenolic TrOC were readily biodegraded while the removal of hydrophilic TrOC (log D <3) was negligible. With the exception of diclofenac, no non-phenolic TrOC were degraded by the extracellular enzyme extract. The whole-cell culture showed considerably higher degradation of at least seven compounds, indicating the importance of biosorption and subsequent degradation by intracellular and/or mycelium associated enzymes. Improvement (20-90%) of enzymatic degradation of four phenolic and seven non-phenolic TrOC was achieved in the presence of a redox mediator. Compared with the whole-cell culture, mediator-amended extracellular extract achieved better removal of six TrOC, but lower removal of six others. A particular concern was the increased toxicity of the treated media when the redox-mediator was used. In addition to reporting the white-rot fungal removal of two UV filters, three phytoestrogens and a few other pharmaceutically active TrOC for the first time, this study provides unique insights into their removal mechanisms.
机译:这项研究报告说,通过活的(生物吸附+生物降解),细胞内酶抑制和化学灭活(仅生物吸附)全细胞制剂和真菌胞外酶提取物(主要是漆酶)去除了30种不同的痕量有机污染物(TrOC)。 (ATCC 7731)。由于酚类底物易于被漆酶降解,因此所有14种酚TrOC都易于生物降解。另一方面,在16种非酚类TrOC中,只有8种易于生物降解,而亲水性TrOC的去除(log D <3)可以忽略不计。除双氯芬酸外,细胞外酶提取物均未降解非酚类TrOC。全细胞培养物显示至少7种化合物的降解程度更高,这表明生物吸附和随后被细胞内和/或菌丝体相关酶降解的重要性。在氧化还原介体的存在下,实现了四种酚和七种非酚TrOC的酶促降解的改善(20-90%)。与全细胞培养相比,介体修饰的细胞外提取物对六种TrOC的去除效果更好,而对其他六种TrOC的去除效果则更低。特别令人关注的是,使用氧化还原介体时,处理过的介质的毒性增加。除了首次报道了白腐真菌去除两种紫外线滤光剂,三种植物雌激素和一些其他药学活性的TrOC外,本研究还提供了对其去除机理的独特见解。

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