32. Nguyen LN, Hai FI, Price WE, Leusch FDL, Roddick F, McAdam EJ, Magram SF, Nghiem
LD (2014) Continuous biotransformation of bisphenol A and diclofenac by laccase in an
enzymatic membrane reactor. Int Biodeterior Biodegradation 95:25–32
33. Kim Y-J, Nicell JA (2006) Laccase catalysed oxidation of aqueous triclosan. J Chem Technol
Biotechnol 81:1344–1352
34. Hai FI, Yamamoto K, Nakajima F, Fukushi K (2012) Application of a GAC-coated hollow
fiber module to couple enzymatic degradation of dye on membrane to whole cell biodegradation within a membrane bioreactor. J Membr Sci 389:67–75
35. Brugnari T, Pereira MG, Bubna GA, de Freitas EN, Contato AG, Corrêa RCG, Castoldi R, de
Souza CGM, Polizeli MdLTdM, Bracht A, Peralta RM (2018) A highly reusable MANAEagarose-immobilized Pleurotus ostreatus laccase for degradation of bisphenol A. Sci Total
Environ 634:1346–1351
36. Margot J, Bennati-Granier C, Maillard J, Blánquez P, Barry DA, Holliger C (2013) Bacterial
versus fungal laccase: potential for micropollutant degradation. AMB Express 3(1):63–63
37. Lloret L, Eibes G, Feijoo G, Moreira MT, Lema JM (2012) Degradation of estrogens by
laccase from Myceliophthora thermophila in fed-batch and enzymatic membrane reactors. J
Hazard Mater 213–214:175–183
38. Cabana H, Jones JP, Agathos SN (2009) Utilization of cross-linked laccase aggregates in a
perfusion basket reactor for the continuous elimination of endocrine-disrupting chemicals.
Biotechnol Bioeng 102(6):1582–1592
39. Rios GM, Belleville MP, Paolucci D, Sanchez J (2004) Progress in enzymatic membrane
reactors – a review. J Membr Sci 242(1–2):189–196
40. Andersson MM, Breccia JD, Hatti-Kaul R (2000) Stabilizing effect of chemical additives
against oxidation of lactate dehydrogenase. Biotechnol Appl Biochem 32(3):145–153
41. Mendoza L, Jonstrup M, Hatti-Kaul R, Mattiasson B (2011) Azo dye decolorization by a
laccase/mediator system in a membrane reactor: enzyme and mediator reusability. Enzym
Microb Technol 49(5):478–484
42. Xiong JQ, Kurade MB, Jeon BH (2018) Can microalgae remove pharmaceutical contaminants
from water? Trends Biotechnol 36(1):30–44
43. Coimbra RN, Escapa C, Vázquez NC, Noriega-Hevia G, Otero M (2018) Utilization of nonliving microalgae biomass from two different strains for the adsorptive removal of diclofenac
from water. Water 10:1401
44. Zhang H, Yamada H, Tsuno H (2008) Removal of endocrine-disrupting chemicals during
ozonation of municipal sewage with brominated byproducts control. Environ Sci Technol 42
(9):3375–3380
45. Escapa A, Mateos R, Martínez E, Blanes J (2016) Microbial electrolysis cells: an emerging
technology for wastewater treatment and energy recovery. From laboratory to pilot plant and
beyond. Renew Sustain Energy Rev 55:942–956
46. Ding T, Lin K, Yang B et al (2017) Biodegradation of naproxen by freshwater algae Cymbella
sp. and Scenedesmus quadricauda and the comparative toxicity. Bioresour Technol 238:164–
173
47. Marco-Urrea E, Perez-Trujillo M, Blanquez P, Vicent T, Caminal G (2010) Biodegradation of
the analgesic naproxen by Trametes versicolor and identification of intermediates using
HPLC-DAD-MS and NMR. Bioresour Technol 101(7):2159–2166
48. Olicón-Hernández DR, González-López J, Aranda E (2017) Overview on the biochemical
potential of filamentous Fungi to degrade pharmaceutical compounds. Front Microbiol 8:1792
49. Domaradzka D, Guzik U, Wojcieszyńska D (2015) Biodegradation and biotransformation of
polycyclic non-steroidal anti-inflammatory drugs. Rev Environ Sci Biotechnol 14(2):229–239
50. Otto B, Beuchel C, Liers C, Reisser W, Harms H, Schlosser D (2015) Laccase-like enzyme
activities from chlorophycean green algae with potential for bioconversion of phenolic
pollutants. FEMS Microbiol Lett 362(11)
51. Zhang J, Ma F, Zhang X, Geng A (2018) Directed evolution of a homodimeric laccase from
Cerrena unicolor BBP6 by random mutagenesis and in vivo assembly. Int J Mol Sci 19(10)
Contemporary Methods for Removal of Nonsteroidal Anti-inflammatory Drugs in. . .
235
LD (2014) Continuous biotransformation of bisphenol A and diclofenac by laccase in an
enzymatic membrane reactor. Int Biodeterior Biodegradation 95:25–32
33. Kim Y-J, Nicell JA (2006) Laccase catalysed oxidation of aqueous triclosan. J Chem Technol
Biotechnol 81:1344–1352
34. Hai FI, Yamamoto K, Nakajima F, Fukushi K (2012) Application of a GAC-coated hollow
fiber module to couple enzymatic degradation of dye on membrane to whole cell biodegradation within a membrane bioreactor. J Membr Sci 389:67–75
35. Brugnari T, Pereira MG, Bubna GA, de Freitas EN, Contato AG, Corrêa RCG, Castoldi R, de
Souza CGM, Polizeli MdLTdM, Bracht A, Peralta RM (2018) A highly reusable MANAEagarose-immobilized Pleurotus ostreatus laccase for degradation of bisphenol A. Sci Total
Environ 634:1346–1351
36. Margot J, Bennati-Granier C, Maillard J, Blánquez P, Barry DA, Holliger C (2013) Bacterial
versus fungal laccase: potential for micropollutant degradation. AMB Express 3(1):63–63
37. Lloret L, Eibes G, Feijoo G, Moreira MT, Lema JM (2012) Degradation of estrogens by
laccase from Myceliophthora thermophila in fed-batch and enzymatic membrane reactors. J
Hazard Mater 213–214:175–183
38. Cabana H, Jones JP, Agathos SN (2009) Utilization of cross-linked laccase aggregates in a
perfusion basket reactor for the continuous elimination of endocrine-disrupting chemicals.
Biotechnol Bioeng 102(6):1582–1592
39. Rios GM, Belleville MP, Paolucci D, Sanchez J (2004) Progress in enzymatic membrane
reactors – a review. J Membr Sci 242(1–2):189–196
40. Andersson MM, Breccia JD, Hatti-Kaul R (2000) Stabilizing effect of chemical additives
against oxidation of lactate dehydrogenase. Biotechnol Appl Biochem 32(3):145–153
41. Mendoza L, Jonstrup M, Hatti-Kaul R, Mattiasson B (2011) Azo dye decolorization by a
laccase/mediator system in a membrane reactor: enzyme and mediator reusability. Enzym
Microb Technol 49(5):478–484
42. Xiong JQ, Kurade MB, Jeon BH (2018) Can microalgae remove pharmaceutical contaminants
from water? Trends Biotechnol 36(1):30–44
43. Coimbra RN, Escapa C, Vázquez NC, Noriega-Hevia G, Otero M (2018) Utilization of nonliving microalgae biomass from two different strains for the adsorptive removal of diclofenac
from water. Water 10:1401
44. Zhang H, Yamada H, Tsuno H (2008) Removal of endocrine-disrupting chemicals during
ozonation of municipal sewage with brominated byproducts control. Environ Sci Technol 42
(9):3375–3380
45. Escapa A, Mateos R, Martínez E, Blanes J (2016) Microbial electrolysis cells: an emerging
technology for wastewater treatment and energy recovery. From laboratory to pilot plant and
beyond. Renew Sustain Energy Rev 55:942–956
46. Ding T, Lin K, Yang B et al (2017) Biodegradation of naproxen by freshwater algae Cymbella
sp. and Scenedesmus quadricauda and the comparative toxicity. Bioresour Technol 238:164–
173
47. Marco-Urrea E, Perez-Trujillo M, Blanquez P, Vicent T, Caminal G (2010) Biodegradation of
the analgesic naproxen by Trametes versicolor and identification of intermediates using
HPLC-DAD-MS and NMR. Bioresour Technol 101(7):2159–2166
48. Olicón-Hernández DR, González-López J, Aranda E (2017) Overview on the biochemical
potential of filamentous Fungi to degrade pharmaceutical compounds. Front Microbiol 8:1792
49. Domaradzka D, Guzik U, Wojcieszyńska D (2015) Biodegradation and biotransformation of
polycyclic non-steroidal anti-inflammatory drugs. Rev Environ Sci Biotechnol 14(2):229–239
50. Otto B, Beuchel C, Liers C, Reisser W, Harms H, Schlosser D (2015) Laccase-like enzyme
activities from chlorophycean green algae with potential for bioconversion of phenolic
pollutants. FEMS Microbiol Lett 362(11)
51. Zhang J, Ma F, Zhang X, Geng A (2018) Directed evolution of a homodimeric laccase from
Cerrena unicolor BBP6 by random mutagenesis and in vivo assembly. Int J Mol Sci 19(10)
Contemporary Methods for Removal of Nonsteroidal Anti-inflammatory Drugs in. . .
235
