Enhanced transformation of triclosan by laccase in the presence of redox mediators

被引:110
|
作者
Murugesan, Kumarasamy [1 ]
Chang, Yoon-Young [2 ]
Kim, Young-Mo [1 ]
Jong-Rok, Jeon [1 ]
Kim, Eun-Ju [1 ]
Chang, Yoon-Seok [1 ]
机构
[1] Pohang Univ Sci & Technol, Sch Environm Sci & Engn, Pohang 790784, South Korea
[2] Kwangwoon Univ, Dept Environm Engn, Seoul 139701, South Korea
关键词
Triclosan; Antimicrobial compound; Ganoderma lucidum; Laccase; Syringaldehyde; Natural redox mediator; ENDOCRINE DISRUPTING CHEMICALS; FUNGUS CORIOLOPSIS-POLYZONA; WIDELY USED BIOCIDE; DIPHENYL ETHER; GANODERMA-LUCIDUM; PYCNOPORUS-CINNABARINUS; TRAMETES-VERSICOLOR; CHLORINATED PHENOLS; AQUATIC ENVIRONMENT; CORIOLUS-VERSICOLOR;
D O I
10.1016/j.watres.2009.09.058
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Triclosan (TCS), an antimicrobial agent, is an emerging and persistent environmental pollutant that is often found as a contaminant in surface waters and sediments; hence, knowledge of its degradability is important. In this study we investigated laccase-mediated TCS transformation and detoxification, using laccase (from the fungus Ganoderma lucidum) in the presence and absence of redox mediators. Transformation products were identified using HPLC, ESI-MS and GC-MS, and transformation mechanisms were proposed. In the absence of redox mediator, 56.5% TCS removal was observed within 24 h, concomitant with formation of new products with molecular weights greater than that of TCS. These products were dimers and trimers of TCS, as confirmed by ESI-MS analysis. Among the various mediators tested, 1-hydroxybenzotriazole (HBT) and syringaldehyde (SYD) significantly enhanced TCS transformation (similar to 90%). The presence of these mediators resulted in products with lower molecular weights than TCS, including 2,4-dichlorophenol (2,4-DCP; confirmed by GC-MS) and dechlorinated forms of 2,4-DCP. When SYD was used as the mediator, dechlorination resulted in 2-chlorohydroquinone (2-CHQ). Bacterial growth inhibition studies revealed that laccase-mediated transformation of TCS effectively decreased its toxicity, with ultimate conversion to less toxic or nontoxic products. Our results confirmed the involvement of two mechanisms of laccase-catalyzed TCS removal: (i) oligomerization in the absence of redox mediators, and (h) ether bond cleavage followed by dechlorination in the presence of redox mediators. These results suggest that laccase in combination with natural redox mediator systems may be a useful strategy for the detoxification and elimination of TCS from aqueous systems. (C) 2009 Elsevier Ltd. All rights reserved.
引用
收藏
页码:298 / 308
页数:11
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