Department of Biochemistry, Faculty of Biology and Environmental Protection, University of Silesia in Katowice, Jagiellońska 28, 40-032 Katowice, Poland.
Institute of Chemical Technology and Engineering, Poznan University of Technology, Berdychowo 4, 60-965 Poznan, Poland.
Molecules. 2017 Oct 9;22(10):1676. doi: 10.3390/molecules22101676.
Ibuprofen is one of the most often detected pollutants in the environment, particularly at landfill sites and in wastewaters. Contamination with pharmaceuticals is often accompanied by the presence of other compounds which may influence their degradation. This work describes the new degradation pathway of ibuprofen by B1(2015b), focusing on enzymes engaged in this process. It is known that the key intermediate which transformation limits the velocity of the degradation process is hydroxyibuprofen. As the degradation rate also depends on various factors, the influence of selected heavy metals and aromatic compounds on ibuprofen degradation by the B1(2015b) strain was examined. Based on the values of non-observed effect concentration (NOEC) it was found that the toxicity of tested metals increases from Hg(II) < Cu(II) < Cd(II) < Co(II) < Cr(VI). Despite the toxic effect of metals, the biodegradation of ibuprofen was observed. The addition of Co ions into the medium significantly extended the time necessary for the complete removal of ibuprofen. It was shown that B1(2015b) was able to degrade ibuprofen in the presence of phenol, benzoate, and 2-chlorophenol. Moreover, along with the removal of ibuprofen, degradation of phenol and benzoate was observed. Introduction of 4-chlorophenol into the culture completely inhibits degradation of ibuprofen.
布洛芬是环境中最常检测到的污染物之一,特别是在垃圾填埋场和废水中。药物污染通常伴随着其他可能影响其降解的化合物的存在。本工作描述了 B1(2015b)对布洛芬的新降解途径,重点介绍了参与这一过程的酶。已知转化限制降解过程速度的关键中间产物是羟基布洛芬。由于降解速率还取决于各种因素,因此研究了选定重金属和芳香族化合物对 B1(2015b)菌株降解布洛芬的影响。根据未观察到效应浓度 (NOEC) 的值发现,测试金属的毒性从 Hg(II) < Cu(II) < Cd(II) < Co(II) < Cr(VI) 增加。尽管存在金属的毒性,但仍观察到布洛芬的生物降解。在培养基中添加 Co 离子会显著延长完全去除布洛芬所需的时间。结果表明,B1(2015b)能够在苯酚、苯甲酸和 2-氯苯酚存在的情况下降解布洛芬。此外,在去除布洛芬的同时,还观察到苯酚和苯甲酸的降解。将 4-氯苯酚引入培养物中完全抑制了布洛芬的降解。