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Original Articles

Characterization and immobilization of Trametes versicolor laccase on magnetic chitosan–clay composite beads for phenol removal

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Pages 425-432 | Received 26 Mar 2015, Accepted 02 Jun 2015, Published online: 13 Jul 2015

References

  • Auta M, Hameed BH. 2014. Chitosan–clay composite as highly effective and low-cost adsorbent for batch and fixed-bed adsorption of methylene blue chitosan–clay composite as highly effective and low-cost adsorbent for batch and fixed-bed adsorption of methylene blue. Chem Eng J. 237:352–361.
  • Başak E, Aydemir T. 2013. Immobilization of catalase on chitosan and amino acid- modified chitosan beads. Artif Cells Nanomed Biotechnol. 41:269–275.
  • Bayramoglu G, Arica MY. 2008. Enzymatic removal of phenol and p-chlorophenol in enzyme reactor: horseradish peroxidase immobilized on magnetic beads. J Hazard Mater. 156:148–155.
  • Bayramoglu G, Bitirim V, Tunalı Y, Arica Y, Akçalı K. 2013. Poly (hydroxyethyl methacrylate-glycidyl methacrylate) films modified with different functional groups: in vitro interactions with platelets and rat stem cells. Mater Sci Eng C. 33:801–810
  • Bezerra TMdS, Bassan JC, Santos VTdO, Ferraz A, Monti R. 2015. Covalent immobilization of laccase in green coconut fiber and use in clarification of apple juice. Process Biochem. 50:417–423.
  • Bourbonnais R, Paice MG. 1992. Demethylation and delignification of kraft pulp by Trametes laccase. Appl Microbiol Biotechnol. 36: 823–827.
  • Bradford M. 1976. A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding. Anal Biochem. 72:248–254.
  • Cabana H, Jones JP, Agathos SN. 2007. Elimination of endocrine disrupting chemicals using white rot fungi and their lignin modifying enzymes: a review. Eng Life Sci. 7:429–456.
  • Catapane M, Nicolucci C, Menale C, Mita L, Rossi S, Mita DG, Diano N. 2013. Enzymatic removal of estrogenic activity of nonylphenol and octylphenol aqueous solutions by immobilized laccase from Trametes versicolor. J Hazard Mater. 248–249:337–346.
  • Chang TMS. 1971. Stablisation of enzymes by microencapsulation with a concentrated protein solution or by microencapsulation followed by cross-linking with glutaraldehyde. Biochem Biophy Res Commun. 44:1531–1536.
  • D’Annibale A, Stazi SR, Vinciguerra V, Di Mattia E, Sermanni GG. 1999. Characterization of immobilized laccase from Lentinula edodes and its use in olive-mill wastewater treatment. Process Biochem. 34:697–706
  • Dinçer A, Becerik S, Aydemir T. 2012. Immobilization of tyrosinase on chitosan-clay composite beads. Int J Biol Macromol. 50:815–820.
  • Fernández MF, Sanromán MA, Moldes D. 2013. Recent developments and applications of immobilized laccase. Biotechnol Adv. 31:1808.
  • Finisie MR, Josué A, Fávere VT, Laranjeıra MCM. 2001.Synthesis of calcium-phosphate and chitosan bioceramics for bone regeneration. Anais da Academia Brasileira de Ciências. 73: Rio de Janeiro Dec.
  • Flores-Hernández CG, Colín-Cruz A, Velasco-Santos C, Castaño VM, Rivera-Armenta JL, Almendarez-Camarillo A, et al. 2014. All green composites from fully renewable biopolymers: chitosan-starch reinforced with keratin from feathers. Polymers. 6:686–705.
  • Forde J, Tully E, Vakurov A, Gibson TD, Millner P, Ó’Fágáin C. 2010. Chemical modification and immobilisation of laccase from Trametes hirsuta and from Myceliophthora thermophila. Enzym Microb Technol. 46:430–437
  • Georgieva S, Godjevargova T, Mita DG, Diano N, Menale C, Nicolucci C, et al. 2010. Non-isothermal bioremediation of waters polluted by phenol and some of its derivatives by laccase covalently immobilized on polypropylene membranes. J Mol CatalB:Enzymatic. 66:210–218.
  • Sanlıer SH, Gider S, Köprülü A. 2013. Immobilization of laccase for biotechnology applications. Artif Cells Nanomed Biotechnol. 41:259–263.
  • Hou J, Dong G, Ye Y, Chen V. 2014a. Laccase immobilization on titania nanoparticles and titania-functionalized membranes. J Membr Sci. 452:229–240.
  • Hou J, Dong G, Ye Y, Chen V. 2014b. Enzymatic degradation of bisphenol-A with immobilized laccase on TiO2 sol–gel coated PVDF membrane. J Membr Sci. 469:19–30.
  • Jiang DS, Long SY, Huang J, Xiao HY, Zhou JY. 2005. Immobilization of Pycnoporus sanguineus laccase on magnetic chitosan microspheres. Biochem Eng J. 25:15–23
  • Kumar VV, Sathyaselvabala V, Premkumar MP, Vidyadevi T, Sivanesan S. 2012. Biochemical characterization of three phase partitioned laccase and its application in decolorization and degradation of synthetic dyes. J Mol Catal B: Enzymatic. 74:63–72
  • Kunamneni A, Ballesteros A, Plou FJ, Alcalde M. 2007. Fungal laccase-a versatile enzyme for biotechnological applications. In: Communicating current research and educational Topics and trends in applied microbiology. Mendez-Vilas A (Ed.). Formex, Badajoz, 233–245. ISBN: 978–84-611–9422-3.
  • Liu YY, Zeng ZT, Zeng GM, Pang Y, Li Z, Liu C, et al. 2012. Immobilization of laccase on magnetic bimodal mesoporous carbon and the application in the removal of phenolic compounds. Bioresour Technol. 115:21–26
  • Lloret L, Hollmann F, Eibes G, Feijoo G, Lema JM. 2012. Immobilisation of laccase on Eupergit supports and its application for the removal of endocrine disrupting chemicals in a packed-bed reactor. Biodegradation. 23:373–386
  • Lu L, Zhao M, Wang Y. 2006. Immobilization of accase by alginate– chitosan microcapsules and its use in dye decolorization. World J Microbiol Biotechnol. 23:159–166.
  • Nicolucci C, Rossi S, Menale C, Godjevargova T, Ivanov Y, Bianco M, et al. 2011. Biodegradation of bisphenols with immobilized laccase or tyrosinase on polyacrylonitrile beads. Biodegradation. 22: 673–683.
  • Okazaki S, Michizoe J, Goto M, Furusaki S, Wariishi H, Tanaka H. 2002. Oxidation of bisphenol A catalyzed by laccase hosted in reversed micelles in organic media. Enzyme Microb Tech. 31:227–232.
  • Osma JF, Toca-Herrera JL, Rodríguez-Couto S. 2010. Biodegradation of a simulated textile effluent by immobilised-coated laccase in laboratory-scale reactors. Appl Catal A-Gen. 373:147–153.
  • Rangelov S, Nicell JA. 2015. A model of the transient kinetics of laccase-catalyzed oxidation of phenol at micromolar concentrations. Biochem Eng J. 99:1–15
  • Rekuc A, Bryjak J, Szymanska K, Jarzębski AB. 2009. Laccase immobilization on mesostructured cellular foams affords preparations with ultra high activity. Process Biochem. 44:191–198.
  • Roy JJ, Abraham TE. 2006. Preparation and characterization of cross-linked enzyme crystals of laccase. J Mol Catal B: Enzymatic. 38: 31–36.
  • Sarı M, Akgol S, Karatas M, Denizli A. 2006. Reversible immobilization of catalase by metal chelate affinity interaction on magnetic beads. Ind Eng Chem Res. 45:3036–3043.
  • Silva AM, Tavaresa APM, Rocha CMR, Cristóvão RO, Teixeira JA, Macedo EA. 2012. Immobilization of commercial laccase on spent grain. Process Biochem. 47:1095–1101.
  • Spinelli D, Fatarella E, Di Michele A, Pogni R. 2013. Immobilization of fungal (Trametes versicolor) laccase onto Amberlite IR-120 H, beads: optimization and characterization. Process Biochem. 48: 218–223.
  • Wolfenden BS, Willson RL. 1982. Hydroxyl-free radicals and anti-inflammatory drugs: biological inactivation studies and reaction rate constants. J Chem Soc Perkin Trans II. 805:2109–2111.
  • Wu X, Zhang Y, Wu C, Wu H. 2012. Preparation and characterization of magnetic Fe3O4/CRGO nanocomposites for enzyme immobilization. Trans Nonferrous Met Soc China. 22:s162–s168.
  • Xiao H, Huang J, Liu C, Jiang D. 2006. Immobilization of laccase on amine-terminated magnetic nano-composite by glutaraldehyde crosslinking method. Trans Nonferrous Met Soc. 16:s414–418.
  • Xu R, Si Y, Wu X, Li F, Zhang B.2014. Triclosan removal by laccase immobilized on mesoporous nanofibers: strong adsorption and efficient degradation. Chem Eng J. 255:63–70.
  • Xu R, Tang R, Zhou Q, Li F, Zhang B.2015. Enhancement of catalytic activity of immobilized laccase for diclofenac biodegradation by carbon nanotubes. Chem Eng J. 262:88–95.
  • Xu R, Zhou Q, Li F, Zhang B. 2013. Laccase immobilization on chitosan/poly(vinyl alcohol) composite nanofibrous membranes for 2,4-dichlorophenol removal. Chem Eng J. 222:321–329.
  • Yinghui D, Qiuling W, Shiyu F. 2002. Laccase stabilization by covalent binding immobilization on activated polyvinyl alcohol carrier. Lett Appl Microbiol. 35:451–456.
  • Yuanbi Z, Zumin Q, Jiaying H. 2008. Preparation and analysis of Fe3O4. magnetic nanoparticles used astargeted-drug carriers. Chin J Chem Eng. 16:451–455.
  • Zhao SY, Lee DK, Kim CW, Cha HG, Kim YH, Kang YS. 2006. Synthesis of magnetic nanoparticles of Fe3O4 and CoFe2O4 and their surface modification by surfactant adsorption. Bull Korean Chem Soc. 27:237–242.

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