dc.creatorDuran N.
dc.creatorEsposito E.
dc.date2000
dc.date2015-06-30T19:51:53Z
dc.date2015-11-26T14:47:27Z
dc.date2015-06-30T19:51:53Z
dc.date2015-11-26T14:47:27Z
dc.date.accessioned2018-03-28T21:57:53Z
dc.date.available2018-03-28T21:57:53Z
dc.identifierApplied Catalysis B: Environmental. , v. 28, n. 2, p. 83 - 99, 2000.
dc.identifier10.1016/S0926-3373(00)00168-5
dc.identifierhttp://www.scopus.com/inward/record.url?eid=2-s2.0-0034613457&partnerID=40&md5=51db5c1d1f6f70d88fd785e74c1ad434
dc.identifierhttp://www.repositorio.unicamp.br/handle/REPOSIP/107368
dc.identifierhttp://repositorio.unicamp.br/jspui/handle/REPOSIP/107368
dc.identifier2-s2.0-0034613457
dc.identifier.urihttp://repositorioslatinoamericanos.uchile.cl/handle/2250/1253281
dc.descriptionA number of oxidative enzymes from bacteria, fungi and plants have been reported to play an important role in numerous waste treatment applications. Peroxidases and/or phenoloxidases can act on specific recalcitrant pollutants by precipitation or transforming to other products and permitting a better final treatment of the waste. Improvement in the useful life and thereby a reduction in treatment cost has been accomplished through enzyme immobilization. Horseradish peroxidase, lignin peroxidase and manganese peroxidase mineralize a variety of recalcitrant aromatic compounds. Immobilization of these enzymes on porous ceramic supports or resins did not adversely affect their stability and showed a good potential for degradation of environment persistent aromatics. Tyrosinase, which catalyzes the hydroxylation of phenols and dehydrogenation of o-diphenols, in an immobilized form exerted an excellent phenol removal. Laccase is capable of eliminating the phenols through polymerization process, however, the presence of mediator such as ABTS and HBT degraded phenol by oxidative process. Many applications with oxidative enzymes and plant materials in effluent as in soil remediation will be discussed. © 2000 Elsevier Science B.V. All rights reserved.
dc.description28
dc.description2
dc.description83
dc.description99
dc.descriptionKaram, J., Nicell, J.A., Potential applications of enzymes in waste treatment (1997) J. Chem. Technol. Biotechnol., 69, p. 141
dc.descriptionDurán, N., (1997) Proceedings of the first National Meeting of Environmental Applied Microbiology, 1, p. 183. , E. Esposito (Ed.), Oxidative enzymes applied to bioremediation, Campinas, S.P., Brazil
dc.description(1997) Chem. Abstr., 127, p. 310976
dc.descriptionDurán, N., The impact of biotechnology in the pulp and paper industry: State of art (1997) Progress in Ecology, p. 543. , M.T. Martins, et. al. (Eds.), Soc. Brasil Microbiol./ICOME Publishers. S.P. Brazil
dc.descriptionDurán, N., Esposito, E., Lignin biodegradation and effluent treatment by ligninolytic fungi (1997) Microbiologia Ambiental, p. 269. , I.S. De Melo. J.L. Acevedo (Eds.), CNPMA/EMBRAPA Publishers, S.R, Brazil, Chapter 12
dc.descriptionGagne, F., Blase, C., Evaluation of industrial wastewater quality with a chemiluminescent peroxidase activity assay (1997) Environ. Toxicol. Water Qual., 12, p. 315
dc.descriptionWiese, F.W., Chang, H.C., Lloyd, R.V., Freeman, J.P., Samokyszyn, V.M., Peroxidase-catalyzed oxidation of 2,4,6-trichlorophenol (1998) Arch. Environ. Contam. Toxicol., 34, p. 217
dc.descriptionZhang, T., Zhao, Q.X., Huang, H., Li, Q., Zhang, Y., Qi, M., Kinetic study on the removal of toxic phenol and chlorophenol from waste water by horseradish peroxidase (1998) Chemosphere, 37, p. 1571
dc.descriptionBuchanan, I.D., Nicell, J.A., Wagner, M., Reactor models for horseradish peroxidase-catalyzed aromatic removal (1998) J. Environ. Eng. ASCE., 124, p. 794
dc.descriptionZahida, M.S., Deva, W., Peerzada, G.M., Behere, D.V., Oxidation of phenols by horseradish peroxidase and lactoperoxidase compound II-kinetic considerations (1998) Indian J. Biochem. Biophys., 35, p. 353
dc.descriptionBanerjee, S., Ramannair, P., Wu, K., John, V.T., Mcphrson, G., Akkara, J.A., Kaplan, D., A biocatalytic approach to novel phenolic polymers and their composites (1998) ACS Symp. Ser., 684, p. 125. , Enzymes in Polymer Synthesis
dc.descriptionTatsumi, K., Wada, S., Ichikawa, H., Removal of chlorophenols from wastewater by immobilized horseradish peroxidase (1996) Biotechnol. Bioeng., 51, p. 126
dc.descriptionPeralta-Zamora, P., Esposito, E., Pelegrini, R., Groto, R., Reyes, J., Durán, N., Effluent treatment of pulp and paper, and textile industries using immobilized horseradish peroxidase (1998) Environ. Technol., 19, p. 55
dc.descriptionPeralta-Zamora, P., Gimenes, I.F., Cordi, L., Reyes, J., Alves, O.L., Durán, N., Remediation of effluents from pulp and paper industry using horseradish peroxidase immobilized on ceramic materiais (1998) Proceedings of the Third Latin American Biodegradation & Biodeterioration Symposium -LABS-3, 69, p. 1. , C.C. Gaylarde, T.C.P. Barbosa, N.H. Gabilan (Eds.), Florianopolis, Brazil, CD-Rom Paper
dc.descriptionFadnavis, N.W., Koteshwar, K., An unusual reversible sol-gel transition phenomenon in organogels and its application for enzyme immobilization in gelatin membranes (1999) Biotechnol. Prog., 15, p. 98
dc.descriptionShen, S.Y., Tu, S.I., Immobilization of horseradish peroxidase in cross-linked phyllosilicates: Conditions and characterizations (1999) Biotechnol. Appl. Biochem., 29, p. 185
dc.descriptionHorak, D., Karpisek, M., Turkova, J., Benes, M., Hydrazide-functionalized poly (2-hydroxyethyl metacrylate) micro spheres for immobilization of horseradish peroxidase (1999) Biotechnol. Prog., 15, p. 208
dc.descriptionGanjidoust, H., Tatsumi, K., Wada, S., Kawase, M., Role of peroxidase and chitosan in removing chlorophenols from aqueous solution (1996) Water Sci. Technol., 34, p. 151
dc.descriptionPeralta-Zamora, P., Moraes, S.G., Esposito, E., Antunes, R., Groto, R., Reyes, J., Durán, N., Bioremediation of effluents from paper industry using immobilized lignin peroxidase (1997) Proceedings of the Fifth Brazilian Symposium on Chemical Lignins other Wood Comp., 6, p. 382. , L.P. Ramos (Ed.), Curitiba, Brazil
dc.description(1998) Chem. Abstr., 128, p. 63054
dc.descriptionKane, S.A., Iwuoba, E.I., Smyth, M.R., Development of a sol-gel based amperometric biosensor for the determination of phenolics (1998) Analyst, 123, p. 2001
dc.descriptionBurton, S.G., Boshoff, A., Edwards, W., Rose, P.D., Biotransformation of phenol using immobilized polyphenol oxidase (1998) J. Mol. Catal. B Enzymatic, 5, p. 411
dc.descriptionSundaramoorthy, M., Terner, J., Poulos, T.L., Stereochemistry of the chloroperoxidase active site: Crystallographic and molecular-modeling studies (1998) Chem. Biol., 5, p. 461
dc.descriptionPickard, M.A., Kadima, T.A., Carmichael, R.D., Chloroperoxidase, a peroxidase with potential (1991) J. Ind. Microbiol., 7, p. 235
dc.descriptionCasella, L., Poli, S., Gullotti, M., Selvaggini, C., Beringhelli, T., Marchesini, A., The chloroperoxidase-catalyzed oxidation of phenols (1994) Mechanisms, Biochemistry, 33, p. 6377
dc.descriptionZhao, S.S., Luong, J.H.T., An electrocatalytic approach for the measurement of chlorophenols (1996) Anal. Chim. Acta, 327, p. 235
dc.descriptionAitken, M.D., Massey, I.J., Chen, T., Heck, P.E., Characterization of reaction products from the enzyme catalyzed oxidation of phenolic pollutants (1994) Water Res., 28, p. 1879
dc.descriptionHernandez, J., Robledo, N.R., Velasco, L., Quintero, R., Pickard, M.A., Vasquez-Duhalt, R., Chloroperoxidase-mediated oxidation of organophosphorus pesticides (1998) Pest. Biochem. Physiol., 61, p. 87
dc.descriptionColonna, S., Gaggero, N., Richelmi, C., Pasta, P., Recent biotechnological developments in the use of peroxidases (1999) Trends Biotechnol., 17, p. 163
dc.descriptionHu, S.H., Hager, L.P., Unusual propargylic oxidation catalyzed by chloroperoxidase (1998) Biochem. Biophys. Res. Commun., 253, p. 544
dc.descriptionHu, S.H., Hager, L.P., Asymmetric epoxidation of functionalized cis-olefins catalyzed by chloroperoxidase (1999) Tetrahedron Lett., 40, p. 1641
dc.descriptionHu, S.H., Hager, L.P., Unusual propargylic hydroxylation catalyzed by chloroperoxidase (1999) J. Am. Chem. Soc., 121, p. 872
dc.descriptionEdwards, W., Bownes, R., Leukes, W.D., Jacobs, E.P., Sanderson, R., Rose, P.D., Burton, S.G., A capillary membrane bioreactor using immobilized polyphenol oxidase for the removal of phenols from industrial effluents (1999) Enzyme Microbiol. Technol., 24, p. 209
dc.descriptionLittlechild, J., Haloperoxidases and their role in biotransformation reactions (1999) Curr. Opinion Chem. Biol., 3, p. 28
dc.descriptionAoun, S., Baboulene, M., Regioselectivity bromohydroxylation of alkene catalyzed by chloroperoxidase: Advantages of the immobilization of enzyme on talc (1998) J. Mol. Catal. B Enzymatic, 4, p. 101
dc.descriptionAoun, S., Chebli, C., Baloulene, M., Noncovalent immobilization of chloroperoxidase into talc: Catalytic properties of a new biocatalyst (1998) Enzyme Microbiol. Technol., 23, p. 380
dc.descriptionSaby, C., Luong, J.H.T., A biosensor system for chlorophenols using chloroperoxidase and glucose oxidase based amperometric electrode (1998) Electroanalysis, 10, p. 7
dc.descriptionJohjima, T., Itoh, N., Kabuto, M., Tokimura, F., Nakagawa, T., Wariishi, H., Tanaka, H., Direct interaction of lignin and lignin peroxidase from Phanerochaete chrysosporium (1999) Proc. Natl. Acad. Sci. U.S.A., 96, p. 1989
dc.descriptionBanci, L., Ciofi-Baffoni, S., Tien, M., Lignin and Mn peroxidase-catalyzed oxidation of phenolic lignin oligomers (1999) Biochemistry, 38, p. 3205
dc.descriptionGelpke, M.D.S., Mayfield-Gambill, M., Cereghino, G.P.L., Gold, M.H., Homologous expression of recombinant lignin peroxidase in Phanerochaete chrysosporium (1999) Appl. Environ. Microbiol., 65, p. 1670
dc.descriptionRodriguez, J., Ferraz, A., Nogueira, R.F.P., Ferrer, I., Esposito, E., Durán, N., Lignin biodegradation by the ascomycete Chrysonilia sitophila (1997) Appl. Biochem. Biotechnol., 62, p. 233
dc.descriptionAntunes, R.E., Peralta-Zamora, P., Groto, R., Durán, N., Esposito, E., Production of lignin peroxidase by Phanerochaete chrysosporium and its application in the pollutant degradation (1997) Proceedings of the First National Meeting of Environmental Applied Microbiology, 1, p. 201. , E. Esposito (Ed.), Brazil
dc.description(1997) Chem. Abstr., 127, p. 310961
dc.descriptionNistor, C., Emneus, J., Bioanalytical tools for monitoring polar pollutants (1999) Waste Manage., 19, p. 147
dc.descriptionSouza, J.A., Ferraz, A., Esposito, E., Durán, N., The role of lignin peroxidase and manganese peroxidase on 2,4-dichlorophenoxyacetic acid degradation (1997) Proceedings of the First National Meeting of Environmental Applied Microbiology, 1, p. 232. , E. Esposito (Ed.), Campinas, S.P., Brazil
dc.description(1997) Chem. Abstr., 127, p. 310962
dc.descriptionTeunissen, P.J.M., Field, J.A., 2-Chloro-14-dimethoxybenzene as a novel catalytic cofactor for oxidation of anisyl alcohol by lignin peroxidase (1998) Appl. Environ. Microbiol., 64, p. 830
dc.descriptionTeunissen, P.J.M., Field, J.A., 2-Chloro-1,4-dimethoxybenzene as mediator of lignin peroxidase catalyzed oxidations (1998) FEBS Lett., 439, p. 219
dc.descriptionTeunissen, P.J.M., Sheng, D.W., Reddy, G.V.B., Moenne-Loccoz, P., Field, J.A., Gold, M.H., 2-Chloro-1,4-dimethoxybenzene cation radical: Formation and role in the lignin peroxidase oxidation of anisyl alcohol (1998) Arch. Biochem. Biophys., 360, p. 233
dc.descriptionGunther, T., Sack, U., Hofrichter, M., Latz, M., Oxidation of PAH and PAH- derivatives by fungal and plant oxidoreductases (1998) J. Basic Microbiol., 38, p. 113
dc.descriptionTatarko, M., Bumpus, J.A., Biodegradation of Congo Red by Phanerochaete chrysosporium (1998) Water Res., 32, p. 1713
dc.descriptionReddy, G.V.B., Gelpke, M.D.S., Gold, M.H., Degradation of 2,4,6-trichlorophenol by Phanerochaete chrysosporium: Involvement of reductive dechlorination (1998) J. Bacteriol., 180, p. 5159
dc.descriptionOllikka, P., Harjunpaa, T., Palmu, K., Mantsala, P., Suominen, I., Oxidation of Crocein Orange G lignin peroxidase isoenzymes kinetics and effect of H2O2 (1998) Appl. Biochem. Biotechnol., 75, p. 307
dc.descriptionChoi, S.H., Song, E., Lee, K.W., Noon, S.H., Gu, M.B., Pentachlorophenol degrading using lignin peroxidase produced from the Phanerochaete chrysosporium immobilized in polyurethane foam, Biorem. Phytorem (1998) Proceedings of the First International Conference Rem Chlorinated Recalcitrant Comp., p. 161
dc.descriptionNistor, C., Emneus, J., Gorton, L., Ciucu, A., Improved stability and altered selectivity of tyrosinase based graphite electrodes for detection of phenolic compounds (1999) Anal. Chim. Acta, 387, p. 309
dc.description(1998) Chem. Abstr., 129, p. 305849
dc.descriptionMoraes, S.G., Esposito, E., Peralta-Zamora, P., Reyes, J., Durán, N., Decolorization of dyes and textile effluents by lignin peroxidase isoenzymes from Phanerochaete chrysosporium (1998) Proceedings of the Third Latin American Biodegradation & Biodeterioration Symposium -LABS-3, 60, p. 1. , C.C. Gaylarde, T.C.P. Barbosa, N.H. Gabilan (Eds.), Florianopolis, Brazil. CD-Rom Paper
dc.descriptionPaszczynski, A., Huynh, A.B., Crawford, R., Comparison of ligninase and peroxidase M2 from white-rot fungus Phanerochaete chrysosporium (1986) Arch. Biochem. Biophys., 26, p. 477
dc.descriptionCornwell, R.L., Tinland-Butez, M.F., Tardone, P.J., Cabasso, I., Hammel, K.E., Lignin degradation and lignin peroxidase production in cultures of Phanerochaete chrysosporium immobilized on porous ceramic supports (1990) Enzyme Microbiol. Technol., 12, p. 916
dc.descriptionFawer, M.S., Stierli, J., Cliffe, S., Fiechter, A., The characterization of immobilized lignin peroxidase by flow injection analysis (1991) Biochim. Biochem. Acta, 1076, p. 15
dc.descriptionPeralta-Zamora, P., Moares, S.G., Esposito, E., Antunes, R., Reyes, J., Durán, N., Decolorization of pulp mill effluents with immobilized lignin and manganese peroxidase from Phanerochaete chrysosporium (1998) Environ. Technol., 19, p. 521
dc.descriptionFigueroa-Espinoza, M.C., Morel, M.H., Surget, A., Rouau, X., Oxidative cross-linking of wheat arabinoxylans by manganese peroxidase. Comparison with laccase and horseradish peroxidase. Effect of cystein and tyrosine on gelation (1999) J. Sci. Food Agric., 79, p. 460
dc.descriptionTimofeevski, S.L., Nie, G., Reading, N.S., Aust, S.D., Addition of veratryl alcohol oxidase activity to manganese peroxidase by site-directed mutagenesis (1999) Biochem. Biophys. Res. Commun., 256, p. 500
dc.descriptionCollins, P.J., O'Brien, M.M., Dobson, A.D.W., Cloning and characterization of cDNA encoding a novel extracellular peroxidase from Trametes versicolor (1999) Appl. Environ. Microbiol., 65, p. 1343
dc.descriptionWariishi, H., Valli, K., Gold, M.H., Manganese(II) oxidation by manganese peroxidase from the basidiomycete Phanerochaete chrysosporium-kinetic mechanisms and role of chelators (1992) J. Biol. Chem., 267, p. 23688
dc.descriptionSchmidt, J.C., Enzyme-based electrodes for environmental monitoring applications (1998) Field Anal. Chem. Technol., 2, p. 351
dc.descriptionRuttimann-Johnson, C., Lamar, R.T., Polymerization of pentachlorophenol and ferulic acid by fungal extracellular lignin-degrading enzymes (1996) Appl. Environ. Microbiol., 62, p. 3890
dc.descriptionHeinfling, A., Martinez, M.J., Martinez, A.T., Bergbauer, M., Szwzyk, U., Transformation of industrial dyes by manganese-independent reaction (1998) Appl. Environ. Microbiol., 64, p. 2788
dc.descriptionEhara, K., Tsutsumi, Y., Nishida, T., Structural changes of residual lignin in softwood kraft pulp treated with manganese peroxidase (1998) J. Wood Sci., 44, p. 327
dc.descriptionHofrichter, M., Vares, K., Scheibner, K., Galkin, S., Sipila, J., Hatakka, A., Mineralization and solubilization of synthetic lignin by manganese peroxidases from Nematoloma frowardii and Phlebia radiata (1999) J. Biotechnol., 67, p. 217
dc.descriptionPalma, C., Moreira, M.T., Feijoo, G., Lema, J.M., In vitro of the dye ply R-478 by crude and semipurified manganese peroxidase (1998) Proceedings of the 7th International Conference on Biotechnology in the Pulp and Paper Industry, 7 B, p. 103. , M. Paice, J. Saddler (Eds.), Vancouver, Canada
dc.description(1999) Chem. Abstr., 131, p. 70226
dc.descriptionGrabski, A.C., Rasmussen, J.K., Coleman, P.L., Burgess, R.R., Immobilization of manganese peroxidase from Lentinula edodes on alkylaminated Emphaze™ AB 1 polymer for generation of Mn+3 as an oxidizing agent (1996) Appl. Biochem. Biotechnol., 60, p. 1
dc.descriptionGrabski, A.C., Grimek, H.J., Burgess, R.R., Immobilization of manganese peroxidase from Lentinula edodes and its biocatalytic generation of Mn-III-chelate as a chemical oxidant of chlorophenols (1998) Biotechnol. Bioeng., 60, p. 204
dc.descriptionJolivet, S., Arpin, N., Wichers, H.J., Pellon, G., Agaricus bisporus browning: A review (1998) Mycol. Res., 102, p. 1459
dc.descriptionSteffens, J.C., Harel, E., Hunt, M.D., Thipyapong, P., Polyphenol oxidase (1998) Colloq. Inst. Natl. Rech. Agron., 87, p. 223. , Polyphenols 96
dc.descriptionXu, F., Oxidation of phenols, anilines, and benzenethiols by fungal laccases: Correlation between activity and redox potentials ace well ace halide inhibition (1996) Biochemistry, 35, p. 7608
dc.description(1998) Chem Abstr., 129, p. 92026
dc.descriptionChevalier, T., De Rigal, D., Mbeguie-A-Mbeguie, D., Gauillard, F., Richard-Forget, F., Fils-Lycaon, B.R., Molecular cloning and characterization of apricot fruit polyphenol oxidase (1999) Plant Physiol., 119, p. 1261
dc.descriptionLi, R., Fang, H., Technology for the immobilization of polyphenol oxidase (1997) Cahye Kexue, 17 (SUPPL.), p. 147
dc.description(1999) Chem. Abstr., 128, p. 138025
dc.descriptionSanchez-Ferrer, A., Rodriguez, J.N., García-Cánovas, F., García-Carmona, F., Tyrosinase: A comprehensive review of its mechanism (1995) Biochim. Biophys. Acta, 1247, p. 1
dc.descriptionLind, T., Siegbahn, P.E.M., Crabtree, R.H., A quantum chemical study of the mechanism of tyrosine (1999) J. Phys. Chem B, 103, p. 1193
dc.descriptionRobb, D.A., Exploiting tyrosinase activity in aqueous and nonaqueous media (1995) Enzymatic Brown. Prevent., 600, p. 159
dc.descriptionSvitel, J., Miertus, S., Development of tyrosinase based biosensor and its application for monitoring of bioremediation of phenol and phenolic compounds (1998) Environ. Sci. Technol., 32, p. 828
dc.descriptionKahn, V., Bem-Shalom, N., Zakin, V., p-Hydroxyphenylpropionic acid (PHPPA) and 3,4-dihydroxyphenylpropionic acid (2,4-DPPA) as substrate from mushroom tyrosinase (1999) J. Food Biochem., 23, p. 75
dc.descriptionRompel, A., Fischer, H., Meiwes, D., Buldt-Karentzopoulos, K., Margrini, A., Eichen, C., Gerdemann, C., Krebs, B., Substrate specificity of catechol oxidase from Lycopus europaeus and characterization of the biproducts of enzymic caffeic oxidation (1999) FEBS Lett., 445, p. 103
dc.descriptionMcMillin, D.R., Eggleston, M.K., Bioinorganic chemistry of laccase (1997) Multi-Copper Oxidizes, p. 129. , A. Messerrschmidt (Ed.), World Scientific, Singapore
dc.descriptionWada, S., Ichikawa, H., Tatsumi, K., Removal of phenol from wastewater by soluble and immobilized tyrosinase (1993) Biotechnol. Bioeng., 42, p. 854
dc.descriptionSun, W.Q., Payne, G.F., Moas, M., Chu, J.H., Wallace, K.K., Tyrosinase reaction/chitosan adsorption for removing phenols from wastewater (1992) Biotechnol. Prog., 8, p. 179
dc.descriptionSun, W.Q., Payne, G.F., Tyrosinase-containing chitosan gels: A combined catalyst and sorbent for selective phenol removal (1996) Biotechnol. Bioeng., 51, p. 79
dc.descriptionWada, S., Ichikawa, H., Tatsumi, K., Removal of phenols with tyrosinase immobilized on magnetite (1992) Water Sci. Technol., 26, p. 2057
dc.descriptionManjon, A., Iborra, J.L., Lozano, P., Canovas, M., A practical experiment on enzyme immobilization and characterization of the immobilized derivatives (1995) Biochem. Educ., 23, p. 213
dc.descriptionWada, S., Ichikawa, H., Tatsumi, K., Removal of phenols and aromatic-amines from waste-water by a combination treatment with tyrosinase and a coagulant (1995) Biotechnol. Bioeng., 45, p. 304
dc.descriptionCrecchio, C., Riggiero, P., Pizzigallo, M.D.R., Polyphenol oxidases immobilized in organic gels-properties and applications in detoxification of aromatic-compounds (1995) Biotechnol. Bioeng., 48, p. 585
dc.descriptionHamann, M.C.J., Saville, B.A., Enhancement of tyrosinase stability by immobilization on nylon 66 (1996) Food Bioprod. Process, 74, p. 47
dc.descriptionNaidja, A., Huang, P.M., Bollag, J.M., Activity of tyrosinase immobilized on hydroxyaluminum-montmorillonite complexes (1997) J. Mol. Catal. A: Chem., 115, p. 305
dc.descriptionBatra, I.R., Tyagi, R., Gupta, M.N., Influence of immobilization on enzyme activity in aqueous-organic cosolvent mixtures (1997) Biocatal. Biotransform., 15, p. 101
dc.descriptionMcGuirl, M.A., Dooley, D.M., Copper-containing oxidases (1999) Curr. Opinion Chem. Biol., 3, p. 138
dc.descriptionBoshoff, A., Edwards, W., Leukes, W.D., Rose, P.D., Burton, S.G., Immobilization of polyphenol oxidase on nylon and polyethersulphone membranes: Effect on product formation (1998) Desalination, 115, p. 307
dc.descriptionCall, H.P., Mücke, I., History overview and applications of mediated ligninolytic systems especially laccase-mediator-systems (Lignozym-process) (1997) J. Biotechnol., 53, p. 63
dc.descriptionSmith, M., Thurston, C.F., Wood, D.A., Fungal laccases: Role in delignification and possible industrial applications (1997) Multi-Copper Oxidizes, p. 201. , A. Messerrschmidt (Ed.), World Scientific, Singapore
dc.descriptionSchmitt, M.M., Schuler, E., Braun, M., Haring, D., Schreir, P., Horseradish peroxidase: An effective bur unselective biocatalyst for biaryl synthesis (1998) Tetrahedron Lett., 39, p. 2945
dc.descriptionYaropolov, A.I., Skorobogatko, O.V., Vartanov, S.S., Varfolomeyev, S.D., Laccase-properties catalytic mechanisms and applicability (1994) Appl. Biochem. Biotechnol., 49, p. 257
dc.descriptionMarco, M.P., Barcelo, D., Environmental applications of analytical biosensors (1996) Measurements Sci. Technol., 7, p. 1547
dc.descriptionGuerra, A., Ferraz, A., Cotrim, A., Da Silva, F.T., Polymerization of acid soluble lignin fragments by potatto-polyphenoloxidase enzymes (1998) Proceedings of the 7th International Conference on Biotechnology in the Pulp and Paper Industry, 7 B, p. 167. , M. Paice, J. Saddler (Eds.), Vancouver, Canada
dc.description(1999) Chem. Abstr., 131, p. 33112
dc.descriptionGonçalves, A.R., Oviedo, M.A.S., Cotrim, A.R., Da Silva, F.T., Improvement of the chelating capacity of sugarcane bagasse lignin through oxidation with polyphenoloxidase (1998) Proceedings of 7th International Conference on Biotechnology in the Pulp and Paper Industry, 7 B, p. 171. , M. Paice, J. Saddler (Eds.), Vancouver, Canada
dc.description(1999) Chem. Abstr., 131, p. 33113
dc.descriptionBajpai, P., Application of enzymes in the pulp and paper industry (1999) Biotechnol. Prog., 15, p. 147
dc.descriptionRodriguez, E., Pickard, M.A., Vazquez-Duhalt, R., Industrial dye decolorization by laccase from ligninolytic fungi (1999) Curr. Microbiol., 38, p. 27
dc.descriptionGianfreda, L., Xu, F., Bollag, J.M., Laccases: A useful group of oxidoreductive enzymes (1999) Bioremediation J., 3, p. 1
dc.descriptionCullen, D., Recent advances on the molecular genetics of ligninolytic fungi (1997) J. Biotechnol., 53, p. 273
dc.descriptionIbrahim, M.S., Ali, H.I., Taylor, K.E., Biswas, N., Bewtra, J., Removal of phenol from industrial wastewater using Arthromyces ramosus peroxidase in a continuous flow system (1997) Proceedings of the 52nd Industrial Waste Conference, p. 271. , Fac. Eng. Ain Shams Univ., Cairo. Egypt
dc.descriptionOng, E., Pollock, W.B.R., Smith, M., Cloning and sequence analysis of two laccase complementary DNSs from the ligninolytic basidiomycete Trametes versicolor (1997) Gene, 196, p. 113
dc.descriptionKarahanian, E., Corsini, G., Lobos, S., Vicuña, R., Structure and expression of a laccase gene from the ligninolytic basidiomycete Ceriporiopsis subvermispora (1998) Biochim. Biophys. Acta-Gene Struct. Expression, 1443, p. 65
dc.descriptionJonsson, L.J., Cassland, P., Reimann, A., Nilvebrant, N.O., Laccase from Trametes versicolor: Cloning, expression and catalysis (1998) Proceedings of the 7th International Conference on Biotechnology in the Pulp and Paper Industry, 7 B, p. 175. , M. Paice, J. Saddler (Eds.), Vancouver, Canada
dc.description(1999) Chem. Abstr., 131, p. 84633
dc.descriptionCollins, P.J., Dowson, A.D.W., Regulation of laccase gene transcription in Trametes versicolor (1997) Appl. Environ. Microbiol., 63, p. 3444
dc.descriptionGiardina, P., Aurelia, V., Cannio, R., Marzullo, L., Amoresano, A., Sicilian, R., Pucci, P., Sannia, G., The gene, protein and glycan structure of laccase from Pleurotus ostreatus (1996) Eur. J. Biochem., 235, p. 508
dc.descriptionHatamoto, O., Sekine, H., Nakano, E., Abe, K., Cloning and expression of cDNA encoding the laccase from Schizophyllum commune (1999) Biosci. Biotechnol. Biochem., 63, p. 58
dc.descriptionChivukula, M., Renganathan, V., Phenolic azo-dye oxidation by laccase from Pyricularia orizae (1995) Appl. Environ. Microbiol., 61, p. 4374
dc.descriptionIshihara, A., Maeshima, Y., Ueta, H., Oishi, K., Decolorization of dyes by laccase (1997) Shizuoka-ken Hammatsu Kogyo Gijutzu Senta Kenkyu Hokoku, 7, p. 21
dc.description(1999) Chem Abstr., 128, p. 4654
dc.description(1999) Chem. Abstr., 129, p. 334903
dc.descriptionDurán, N., Minussi, R.C., Pastore, G.M., Alves, O.L., Gimenes, I.F., Peralta-Zamora, P., Moraes, S.G., Laccase production and its environmental applications in the presence of mediators (2000) Proceedings of the Second National Meeting of Environmental Applied Microbiology, 2, p. 19. , C.H. Soares (Ed.), Florianopolis, S.C. Brazil
dc.descriptionDahiya, J.S., Singh, D., Nigam, P., Characterization of laccase produced by Coniothyrium minitans (1998) J. Basic Microbiol., 38, p. 349
dc.descriptionGianfreda, L., Sannino, F., Filazzola, M.T., Leonowicz, A., Catalytic behavior and detoxifying ability of a laccase from the fungal strain Cerrena unicolor (1998) J. Mol. Catal. B Enzymatic, 4, p. 13
dc.descriptionPotthast, A., Rosenau, T., Koch, H., Fischer, K., The reaction of phenolic model compounds in the laccase-mediator system (LMS)-investigations by matrix assisted laser desorption ionization time-of-flight mass spectrometry (MALDI-TOF-MS) (1999) Holzforschung, 53, p. 175
dc.descriptionDec, J., Bollag, J.M., Use of plant-material for the decontamination of water polluted with phenols (1994) Biotechnol. Bioeng., 44, p. 1132
dc.descriptionDec, J., Bollag, J.M., Effect of various factors on dehalogenation of chlorinated phenols and anilines during oxidative coupling (1995) Environ. Sci. Technol., 29, p. 657
dc.descriptionRoper, J.C., Sarkar, J.M., Bollag, J.M., Enhanced enzymatic removal of chlorophenols in the presence of co-substrates (1995) Water Res., 29, p. 2720
dc.descriptionGrey, R., Hofer, C., Schlosser, D., Degradation of 2-chlorophenol and formation of 2-chloro-14-benzoquinone by mycelia and cell-free crude culture liquids of Trametes versicolor in relation to extracellular laccase activity (1998) J. Basic Microbiol., 38, p. 371
dc.descriptionKadhim, H., Graham, C., Barratt, P., Evans, C.S., Rastall, R.A., Removal of phenolic compounds in water using Coriolus versicolor grown on wheat bran (1999) Enzyme Microbiol. Technol., 24, p. 303
dc.descriptionXu, H., Lai, Y.Z., Slomczynski, D., Nakas, J.P., Tanenbaum, S.W., Mediator-assisted selective oxidation of lignin model compounds by laccase from Botorytis cinerea (1997) Biotechnol. Lett., 19, p. 957
dc.descriptionFerrer, I., Dezotti, M., Durán, N., Decolorization of kraft effluent by free and immobilized lignin peroxidase and horseradish peroxidase (1991) Biotechnol. Lett., 13, p. 577
dc.descriptionCrestini, C., Argyropoulos, D.S., The early oxidative biodegradation steps of residual kraft lignin models with laccase (1998) Biorg. Med. Chem., 6, p. 2161
dc.descriptionRama, R., Mougin, C., Boyer, F.D., Kollmann, A., Malosse, C., Sigoillot, J.C., Biotransformation of benzo[a] pyrene in bench scale reactor using laccase of Pycnoporus cinnabarinus (1998) Biotechnol. Lett., 20, p. 1101
dc.descriptionKrikstopaitis, K., Kulys, J., Pedersen, A.H., Schneider, P., N-substituted p-phenylenediamines as peroxidase and laccase substrates (1998) Acta Chem. Scan., 52, p. 469
dc.descriptionAmitai, G., Adami, R., Sod-Moriah, G., Rabinovitz, I., Vincze, A., Leader, H., Chefetz, B., Hadar, Y., Oxidative biodegradation of phosphorothiolates by fungal laccase (1998) FEBS Lett., 438, p. 195
dc.descriptionKawai, S., Nakagawa, M., Ohashi, H., Aromatic ring cleavage a non-phenolic beta-O-4 lignin model dimer by laccase of Trametes versicolor in the presence of 1-hydroxybenzotriazole (1999) FEBS Lett., 446, p. 355
dc.descriptionMajcherczyk, A., Johannes, C., Huttermann, A., Oxidation of aromatic alcohols by laccase from Trametes versicolor mediated by 22'-azino-bis-(3-ethylbenzothiazoline-6-sulphonic acid) cation radical and dication (1999) Appl. Microbiol. Biotechnol., 51, p. 267
dc.descriptionPfaller, R., Amann, M., Freudenreich, J., Analysis of laccase and mediator interactions in the LMSR (1998) Proceedings of the 7th International Conference on Biotechnology in the Pulp and Paper Industry, 7 A, p. 99. , M. Paice, J. Saddler (Eds.), Vancouver, Canada
dc.description(1999) Chem. Abstr., 131, p. 46199
dc.descriptionMinussi, R.C., Pastore, G.M., Durán, N., Biotreatment of paper and pulp effluent using fungal mediators: ABTS and HBT (1998) Proceedings of the XIII Latinoamerican Chemical Congress Rio Grande, , J. Arce, C.L. Velazquez (Eds.), Puerto Rico, QAM-M-8
dc.descriptionCrecchio, C., Riggiero, P., Pizzigallo, M.D.R., Curci, M., Potential utilization of phenoloxidases immobilized in organic gels decontamination of polluted sites (1997) Dev. Plant Soil Sci., 71, p. 545. , Modern Agriculture and the Environment
dc.descriptionSiddique, M.H., Pierre, C.C.St., Biswas, N., Bewtra, J.K., Taylor, K.E., Immobilized enzyme catalyzed removal of 4-chlorophenol from aqueous solution (1993) Water Res., 27, p. 883
dc.descriptionLuterek, J., Gianfreda, L., Wojtas-Wasilewska, M., Rogalski, J., Jaszek, M., Malarczyk, E., Dawidowicz, A., Leonowicz, A., Screening of the wood-rotting fungi for laccase production: Induction by ferulic, partial purification, and immobilization of laccase from the high laccase-producing strain Cerrena unicolor (1997) Acta Microbiol. Pol., 46, p. 297
dc.descriptionLuterek, J., Gianfreda, L., Wojtas-Wasilewska, M., Cho, N.S., Rogalski, J., Jaszek, M., Malarczyk, E., Fink-Boots, M., Activity of free and immobilized extracellular Cerrena unicolor laccase in water miscible organic solvents (1998) Holzforschung, 52, p. 589
dc.descriptionRogalski, J., Dawidowicz, A., Jozwik, E., Leonowicz, A., Immobilization of laccase from Cerrena unicolor on controlled porosity glass (1999) J. Mol. Catal. B Enzymatic, 6, p. 29
dc.descriptionHartmeier, W., Reiss, M., Hackethal, M., Kox, G., Metzger, J., Biosensors in environmental analytics for the determination of sum parameters (1998) Bioforum, 21, p. 380
dc.descriptionIwuoha, E.I., Smith, M.R., Organic-phase and inhibition-based amperometric biosensors for the determination of environmental pollutans (1997) NATO ASI Ser. Ser. 2, 38, p. 289. , Biosensors for Direct Monitoring of Environmental Pollutants in Field
dc.descriptionVieira, I.D., Fatibello, O., Amperometric biosensor for the determination of phenols using a crude extract of sweet potato (Ipomoea batatas (L) Lam) (1997) Anal. Lett., 30, p. 895
dc.descriptionVieira, I.D., Fatibello, O., Flow injection spectrophotometric determination of total phenol using a crude extract of sweet potato root (Ipomoea batata (L.) Lam) as enzymatic source (1998) Anal. Chim. Acta, 366, p. 111
dc.descriptionCaruso, C.S., Vieira, I.D., Fatibello-Filho, O., Determination of epinephrine and dopamine in pharmaceutical formulations using a biosensor based on carbon paste modified with crude extract of cara root (Discorea bulbifera) (1999) Anal. Lett., 32, p. 39
dc.descriptionSimkus, R.A., Laurinavicius, V., Boguslavsky, L., Skotheim, T., Tanenbaum, S.W., Nakas, J.P., Slomczynski, D.J., Laccase containing sol-gel based optical biosensors (1996) Anal. Lett., 29, p. 1907
dc.descriptionBugg, T.D.H., Winfield, C.J., Enzymatic cleavage of aromatic rings: Mechanistic aspects of the catechol dioxygenases and later enzyme of bacterial oxidative cleavage pathways (1998) Natur. Prod. Rep., 15, p. 513
dc.descriptionBodzek, M., Bohdziewicz, J., Kowalska, M., Preparation of membrane-immobilized enzymes for phenol decomposition (1994) J. Chem. Technol. Biotechnol., 61, p. 231
dc.descriptionDinckaya, E., Akyilmaz, E., Akgol, S., Onal, S.T., Zihnioglu, F., Telefoncu, A., A novel catechol oxidase enzyme electrode for the specific determination of catechol (1998) Biosci. Biotechnol. Biochem., 62, p. 2098
dc.descriptionHollender, J., Hopp, J., Dott, W., Degradation of 4-chlorophenol via the meta cleavage pathway by Comamonas testosteroni JH5 (1997) Appl. Environ. Microbiol., 63, p. 4567
dc.descriptionFurukawa, K., Nishi, A., Watanabe, T., Suyama, A., Kimura, N., Engineering micro-organism capable of efficient degradation of chlorinated environmental pollutants (1998) Rev. Toxicol. (Amsterdam), 2, p. 179
dc.descriptionBohdziewicz, J., Biodegradation of phenol by enzymes from Pseudomonas sp. Immobilized onto ultrafiltration membranes (1998) Process Biochem., 33, p. 811
dc.descriptionWackett, L.P., Directed evolution of new enzymes and pathways for environmental biocatalysis (1998) Ann. NY Acad. Sci., 864, p. 142. , Enzyme Engineering XIV
dc.descriptionDurán, N., Siderophores on wood degradation: Reduction of molecular oxygen to hydroxyl radical and ferric iron to ferrous iron (1995) Proceedings of the Fourth Brazilian Symposium on Chemical Lignins other Wood Comp., 5, p. 164. , E.H.M. Melo, M.C.B. Pimentel (Eds.), Brazil
dc.description(1997) Chem. Abstr., 126, p. 100752
dc.descriptionGoodell, B., Jellison, J., Liu, J., Daniel, G., Paszcnski, A., Fekete, F., Krishnamurthy, S., Xu, G., Low molecular weight chelators and phenolic compounds isolated from wood decay fungi and their role in the fungal biodegradation of wood (1997) J. Biotechnol., 53, p. 133
dc.descriptionRodriguez, J., Oses, R., Parra, C., Freer, J., Baeza, J., Siderophore production by lignin degrading fungi (1997) Proceedings of the Fifth Brazilian Symposium on Chemical Lignin and Other Wood Comp., 6, p. 601. , L.P. Ramos (Ed.), Curitiba, Brazil
dc.description(1998) Chem. Abstr., 128, p. 63037
dc.descriptionDezotti, M., Innocentini-Mei, L.H., Durán, N., Silica immobilized enzyme catalyzed removal of chlorolignin from eucalyptus kraft effluent (1995) J. Biotechnol., 43, p. 161
dc.descriptionParra, C., Rodriguez, J., Baeza, J., Durán, N., Low molecular mass chelants reducing Fe(III) to Fe(II) exhibiting phenoloxidase activity on lignin and chlorolignin (1997) Proceedings of the Fifth Brazilian Symposium on Chemical Lignins other Wood Comp., 6, p. 528. , L.P. Ramos (Ed.), Curitiba, Brazil
dc.description(1998) Chem. Abstr., 128, p. 142250
dc.descriptionParra, C., Santiago, M.F., Rodriguez, J., Durán, N., Hydroxamate iron complex with phenoloxidase activity acting on lignin and chlorolignins (1998) Biochem. Biophys. Res. Commun., 249, p. 719
dc.descriptionDurán, N., Machuca, A., Kraft pulp bleaching by an extracellular low molecular weight metabolite from the ascomycete Thermoascus aurantiacus (1995) Holz als Roh und Werstoff, 53, p. 346
dc.descriptionSantiago, M.F., Peralta-Zamora, P., Durán, N., Mimetic activity of phenoloxidase: Ferrioxamine B/iron(III) acting on black liquour and Kraft E1 effluent (1997) Proceedings of the First National Meeting of Environmental Applied Microbiology, 1, p. 174. , E. Esposito (Ed.), Campinas, S.P., Brazil
dc.description(1997) Chem. Abstr., 127, p. 310975
dc.descriptionSantiago, M.F., Peralta-Zamora, P., Durán, N., Polyhydroxamate/Iron(III) complex as a mimetic model of phenoloxidase and its application in bioremediation of pulps and paper residue (1997) Proceedings of the Fifth Brazilian Symposium on Chemical Lignins other Wood Comp., 6, p. 567. , L.P. Ramos (Ed.),Curitiba, Brazil
dc.description(1998) Chem. Abstr., 128, p. 4819
dc.descriptionParra, C., Osses, R., Ruiz, J., Urrutia, I., Baeza, J., Freer, J., Kraft bleaching by dihydroxybenzenes and siderophores from white rot fungi (1998) Proceedings of the 7th International Conference On Biotechnlogy in the Pulp Paper Industry, 7 A, p. 161. , M. Paice, J. Saddler (Eds.), Vancouver, Canada
dc.description(1999) Chem. Abstr., 131, p. 71023
dc.descriptionVasudevan, P.T., Li, L.O., Peroxidase catalyzed polymerization of phenol (1996) Appl. Biochem. Biotechnol., 60, p. 73
dc.descriptionParra, C., Rodriguez, J., Baeza, J., Freer, J., Durán, N., Iron-binding catechols oxidizing lignin a
dc.relationApplied Catalysis B: Environmental
dc.rightsfechado
dc.sourceScopus
dc.titlePotential Applications Of Oxidative Enzymes And Phenoloxidase-like Compounds In Wastewater And Soil Treatment: A Review
dc.typeArtículos de revistas
dc.typeArtículos de revistas


Este ítem pertenece a la siguiente institución