漆酶
阿霉素
化学
降级(电信)
毒性
米氏-门汀动力学
酶
流出物
基质(水族馆)
色谱法
生物化学
酶分析
有机化学
废物管理
生物
化疗
电信
计算机科学
遗传学
工程类
生态学
作者
Maikon Kelbert,Camila Senna Pereira,Naionara Ariete Daronch,Karina Cesca,Camila Michels,Débora de Olíveira,Hugo Moreira Soares
标识
DOI:10.1016/j.jhazmat.2020.124520
摘要
The degradation of an anticancer drug by laccase was investigated for the first time, bringing a new approach to treat these hazardous substances through the direct enzymatic application. Degradations of doxorubicin by laccase were performed in different enzymatic concentrations, pH values and temperatures through kinetic studies. The highest enzymatic degradation of doxorubicin was achieved at pH 7 and 30 ºC, which resembles effluent characteristics from wastewater treatment plants. Assays were carried out in different doxorubicin concentrations to comprehend the enzymatic kinetics of degradation. Michaelis–Menten kinetic parameters obtained were maximum velocity obtained (Vmax) of 702.8 µgDOX h−1 L−1 and Michaelis-Menten constant (KM) of 4.05 µM, which showed a good affinity for the substrate. The toxicity was evaluated against L-929 cell line, and the degraded doxorubicin solution did not show a reduction in cell viability in the concentration of 250 µg L−1. In contrast, the doxorubicin shows a reduction of 27% in cell viability. Furthermore, in the highest tested concentration (1000 µg L−1), enzymatic degradation reduced in up 41.4% the toxicity of doxorubicin, which indicates laccase degrades doxorubicin to non-toxic compounds. In conclusion, this study provides a new application to laccase since the results showed great potential to remove anticancer drugs from effluents.
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