Unitat asociada de Biocatàlisi Aplicada IQAC-CSIC, Escola d'Enginyeria, Universitat Autònoma de Barcelona, 08193 Bellaterra, Barcelona, Spain.
J Hazard Mater. 2012 Apr 30;213-214:347-54. doi: 10.1016/j.jhazmat.2012.02.008. Epub 2012 Feb 11.
In this study, we assessed the degradation of the sulfonamides sulfapyridine (SPY) and sulfathiazole (STZ) by the white-rot fungus Trametes versicolor. Complete degradation was accomplished in fungal cultures at initial pollutant concentrations of approximately 10 mg L(-1), although a longer period of time was needed to completely remove STZ in comparison to SPY. When cytochrome P450 inhibitors were added to the fungal cultures, STZ degradation was partially suppressed, while no additional effect was observed for SPY. Experiments with purified laccase and laccase mediators caused the removal of greater than 75% of each antibiotic. Ultra-performance liquid chromatography-quadupole time of flight mass spectrometry (UPLC-QqTOF-MS) analyses allowed the identification of a total of eight degradation intermediates of SPY in both the in vivo and the laccase experiments, being its desulfonated moiety the commonly detected product. For STZ, a total of five products were identified. A fluidized bed reactor with T. versicolor pellets degraded a mixture of sulfonamides (SPY, STZ and sulfamethazine, SMZ) by greater than 94% each at a hydraulic residence time of 72 h. Because wastewater contains many diverse pollutants, these results highlight the potential of T. versicolor as a bioremediation agent not only for the removal of antibiotics but also for the elimination of a wide range of contaminants.
在这项研究中,我们评估了白腐真菌糙皮侧耳(Trametes versicolor)对磺胺类药物磺胺吡啶(SPY)和磺胺噻唑(STZ)的降解作用。在真菌培养物中,初始污染物浓度约为 10mg/L 时,即可完成完全降解,但与 SPY 相比,需要更长的时间才能完全去除 STZ。当向真菌培养物中添加细胞色素 P450 抑制剂时,STZ 的降解被部分抑制,而 SPY 则没有观察到额外的影响。用纯化的漆酶和漆酶介体进行的实验导致每种抗生素的去除率均超过 75%。超高效液相色谱-四极杆飞行时间质谱(UPLC-QqTOF-MS)分析允许鉴定出 SPY 在体内和漆酶实验中总共 8 种降解中间产物,其去磺化部分是常见的检测产物。对于 STZ,总共鉴定出 5 种产物。在水力停留时间为 72 小时的情况下,流化床反应器中含有糙皮侧耳颗粒,可使磺胺类混合物(SPY、STZ 和磺胺甲恶唑,SMZ)的每种物质的降解率均超过 94%。由于废水中含有许多不同的污染物,这些结果突出了糙皮侧耳作为生物修复剂的潜力,不仅可用于去除抗生素,还可用于消除广泛的污染物。