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Synthetic dyes biodegradation by fungal ligninolytic enzymes: Process optimization, metabolites evaluation and toxicity assessment

机译:真菌木质素溶解的合成染料生物降解:工艺优化,代谢产物评估和毒性评估

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摘要

This work aimed to provide information that contributes to establishing environmental-friendly methods for synthetic dyes' degradation. The potential decolorization capacity of the crude enzymatic extract produced by Phanerochaete chrysosporium CDBB 686 using corncob as a substrate was evaluated on seven different dyes. Critical variables affecting the in-vitro decolorization process were further evaluated and results were compared with an in-vivo decolorization system. Decolorization with enzymatic extracts presented advantages over the invivo system (higher or similar decolorization within a shorter period). Under improved in-vitro process conditions, the dyes with higher decolorization were: Congo red (41.84 %), Poly R-478 (56.86 %), Methyl green (69.79 %). Attempts were made to confirm the transformation of the dyes after the in-vitro process as well as to establish a molecular basis for interpreting changes in toxicity along with the degradation process. In-vitro degradation products of Methyl green presented a toxicity reduction compared with the original dye; however, increased toxicity was found for Congo red degradation products when compared with the original dyes. Thus, for future applications, it is crucial to evaluate the mechanisms of biodegradation of each target synthetic dye as well as the toxicity of the products obtained after enzymatic oxidation.
机译:这项工作旨在提供有助于建立合成染料的植物型方法的信息。在七种不同的染料中评价使用玉米芯片作为基质的Phanerochaete Chrysosporium CDBB 686产生的粗酶提取物的潜在脱色能力。进一步评估影响体外脱色过程的临界变量,并将结果与​​体内脱色系统进行比较。脱色用酶提取物呈现优于Invivo系统的优点(较短时段内更高或类似的脱色)。在改善的体外过程条件下,具有较高脱色的染料是:刚果红色(41.84%),聚R-478(56.86%),甲基绿色(69.79%)。试图确认在体外过程后染料的转化,以及建立分子基础,以解释毒性变化以及降解过程。与原始染料相比,甲基绿色的体外降解产物呈现毒性。然而,与原始染料相比,发现刚果红降解产物增加了毒性。因此,对于未来的应用,评估每种靶标合成染料的生物降解机制以及酶促氧化后获得的产品的毒性至关重要。

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