Simultaneous laccase production and transformation of bisphenol-A and triclosan using Trametes versicolor

被引:0
作者
Jagdeep Singh
Punit Kumar
Vicky Saharan
Rajeev Kumar Kapoor
机构
[1] Maharshi Dayanand University,Enzyme Biotechnology Laboratory, Department of Microbiology
[2] University Institute of Engineering and Technology,Department of Biotechnology
[3] Maharshi Dayanand University,undefined
来源
3 Biotech | 2019年 / 9卷
关键词
Bisphenol-A; Triclosan; Laccase; Laccase production and simultaneous transformation; Solid-state fermentation; Submerged fermentation; JSRK13;
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摘要
New age micro-pollutants, bisphenol-A (BPA) and triclosan (TCA), known for their carcinogenic effects in living organisms can effectively be removed from water using laccase from Trametes versicolor. Laccase was produced from T. versicolor JSRK13 in both submerged and solid-state fermentation (SmF and SSF) conditions. In SmF, T. versicolor JSRK13 gave the maximum production of laccase on the 10th day with an activity of 22 U mL− 1, whereas, in SSF 185 U g− 1 of the enzyme was produced on the 17th day. Maximum production of laccase was observed with Parthenium as substrate. Parthenium, with a particle size of 3–5 mm having 60% moisture was found to be a suitable substrate for laccase production and simultaneous transformation (LPST) of BPA in a synergistic manner. A one-step concentration using 85% ammonium sulphate followed by dialysis was sufficient to give 6.7-fold purification of laccase from the crude culture filtrate. Transformation of BPA was achieved in both SmF and SSF conditions along with the production of laccase, whereas TCA was degraded with free enzyme only. Above 90% of BPA (55–5 mg L− 1) was degraded using the LPST strategy with HBT acting as a mediator in the reaction. LPST strategy did not work for TCA as it completely inhibits the growth of T. versicolor JSRK13. TCA was degraded up to 75% (1.5–0.375 mg L− 1) by the free enzyme. Our study of simultaneous laccase production and transformation proved to be efficacious in case of BPA. The results indicate that industrial and sewage wastewater containing BPA can potentially be treated with T. versicolor JSRK13 laccase. The described strategy can further be used to develop a bioprocess which can work both on solid and liquid wastes containing BPA.
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  • [1] Annamalai J(2015)Endocrine disrupting chemicals in the atmosphere: Their effects on humans and wildlife Environ Int 76 78-97
  • [2] Namasivayam V(2014)Agro-industrial lignocellulosic biomass a key to unlock the future bio-energy: a brief review J Radiat Res Appl Sci 7 163-173
  • [3] Anwar Z(2018)Determination of household and industrial chemicals, personal care products and hormones in leafy and root vegetables by liquid chromatography-tandem mass spectrometry J Chromatogr A 1533 49-56
  • [4] Gulfraz M(2015)Analytical method development for Bisphenol-A in Tuna by using High-performance liquid chromatography—UV Proc Chem 16 202-208
  • [5] Irshad M(2016)Impacts of redox-mediator type on trace organic contaminants degradation by laccase: degradation efficiency, laccase stability and effluent toxicity Int Biodeterior Biodegrad 113 169-176
  • [6] Aparicio I(2018)Biocatalytic degradation of pharmaceuticals, personal care products, industrial chemicals, steroid hormones and pesticides in a membrane distillation-enzymatic bioreactor Biores Technol 247 528-536
  • [7] Martín J(2012)Comprehensive SPE sample preparation and fast HPLC method for bisphenol-A in drinking water. Supelco Analytical Report US Rapid Determ Packag Contam Food Beverages 30.1 8-9
  • [8] Abril C(2016)Current technological improvements in enzymes toward their biotechnological applications Front Microbiol 7 1-13
  • [9] Aristiawan Y(2017)Removal of endocrine disrupting chemicals in wastewater by enzymatic treatment with fungal laccases Org Process Res Dev 21 480-491
  • [10] Aryana N(2017)Handling of thermal paper: Implications for dermal exposure to bisphenol-A and its alternatives PLoS One 12 e0178449-1311