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Original Articles

Purification and Characterization of Polyphenol Oxidase From Waste Potato Peel by Aqueous Two-Phase Extraction

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REFERENCES

  • Zhi-Gang, W.; Hai-Yan, X.; Qiong, M.; Ye, C.; Jian-Nan, M.; Chao-Mei, M. Isolation, Identification and Quantification of Unsaturated Fatty Acids, Amides, Phenolic Compounds and Glycoalkaloids From Potato Peel. Food Chem. 2012, 135, 2425–2429.
  • Schieber, A.; Aranda Saldana, M.D. Potato Peel: A Source of Nutritionally and Pharmacologically Interesting Compounds: A Review. Food 2009, 3(2), 23–29.
  • Burton, S. Biocatalysis with polyphenol oxidase: a review. Catal. Today 1994, 22, 459–487.
  • Eicken, C.; Krebs, B.; Sacchettini, C.J. Catechol oxidase structure and activity. Curr. Opin. Struct. Biol. 1999, 9, 677–683.
  • Klibanov, A.M.; Alberti, B.N.; Morris, E.D.; Felshin, L.M. Enzymatic Removal of Toxic Phenols and Anilines From Waste Waters. J. Appl. Biochem. 1980, 2, 414–421.
  • Torres, E.; Bustos-Jaimes, I.; Le Borgne, S. Potential Use of Oxidative Enzymes for the Detoxification of Organic Pollutants. Appl. Catal. B: Environ. 2003, 46, 1–15.
  • López-Molina, D.; Hiner, A.N.P.; Tudela, J.; Garcìa-Cánovas, F.; López, J.N.R. Enzymatic Removal of Phenols From Aqueous Solution by Artichoke (Cynara scolymus L.) Extracts. Enzyme Microb. Technol. 2003, 33, 738–742.
  • Mohammadi, A.; Moghaddam, A.B.; Dinarvand, R.; Rezaei-Zarchi, S. Direct Electron Transfer of Polyphenol Oxidase on Carbon Nanotube Surfaces: Application in Biosensing. Int. J. Electrochem. Sci. 2009, 4, 895–905.
  • Babu, B.R.; Rastogi, N.K.; Raghavarao, K.S.M.S. Liquid–Liquid Extraction of Bromelain and Polyphenol Oxidase Using Aqueous Two-Phase System. Chem. Eng. Process. 2008, 47, 83–89.
  • Vaidya, B.K.; Suthar, H.K.; Kasture, S.; Nene, S. Purification of Potato Polyphenol Oxidase (PPO) by Partitioning in Aqueous Two-Phase System. Biochem. Eng. J. 2006, 28, 161–166.
  • Mukherjee, S.; Bandyopadhayay, B.; Basak, N.; Mandal, A.; Dey, A.; Mondal, B. An Improved Method of Optimizing the Extraction of Polyphenol Oxidase From Potato (Solanum tuberosum L.) Peel. Not. Sci. Biol. 2012, 4, 98–107.
  • Walter, H.; Johansson, G. Aqueous Two-Phase Systems. In Methods in Enzymology. Academic Press: London, UK, 1994; p. 228.
  • Brooks, D.E.; Sharp, K.A.; Fisher, D. Theoretical Aspects of Partitioning. In Partitioning in Aqueous Two-Phase Systems. Theory, Methods, Uses and Applications in Biotechnology; Walter, H. Brooks, D.E. Fisher, D. (Eds.); Academic Press: New York, NY, 1985, p. 11.
  • Naganagouda, K.; Mulimani, V.H. Aqueous Two Phase Extraction (ATPE): An Attractive and Economically Viable Technology for Downstream Processing of Aspergillus oryzae α-Galactosidase. Process Biochem. 2008, 43, 1293–1299.
  • Jain, A.; Johri, B.N. Partitioning of an Extracellular Xylanase Produced by a Thermophilic Fungus Melanocarpus albomyces IIS-68 in an Aqueous Two-Phase System. Bioresource Technol. 1999, 67, 205–207.
  • Madhusudhan, M.C.; Raghavarao, K.S.M.S.; Nene, S. Integrated Process for Extraction and Purification of Alcohol Dehydrogenase From Baker's Yeast Involving Precipitation and Aqueous Two Phase Extraction. Biochem. Eng. J. 2008, 38, 414–420.
  • Navapara, R.D.; Avhad, D.N.; Rathod, V.K. Application of Response Surface Methodology for Optimization of Bromelain Extraction in Aqueous Two-Phase System. Sep. Sci. Technol. 2011, 46, 1838–1847.
  • Ahmad, A.L.; Derek, C.J.C.; Zulkali, M.M.D. Optimization of Thaumatin Extraction by Aqueous Two Phase System (ATPS) Using Response Surface Methodology. Sep. Sci. Technol. 2008, 62, 702–708.
  • Rosa, P.A.J., Azevedo, A.M.; Aires-Barros, M.R. Application of Central Composite Design to the Optimization of Aqueous Two-Phase Extraction of Human Antibodies. J. Chromatogr. A 2007, 1141, 50–60.
  • Bradford, M.M. A Rapid and Sensitive Method for the Quantification of Microgram Quantities of Protein Utilizing the Principle of Protein–Dye Binding. Anal. Biochem. 1976, 76, 248–258.
  • Das, J.R.; Bhat, S.G.; Gowda, L.R. Purification and Characterization of a Polyphenol Oxidase From the New Cultivator of Indian Pineapple Fruit. J. Agric. Food Chem. 1997, 45, 2031–2035.
  • Myers, R.H.; Montgomery, D.C. Response Surface Methodology: Process and Product Optimization Using Designed Experiment. Wiley-Interscience: New York, NY, 1995.
  • Laemmli, U.K. Cleavage of Structural Proteins During the Assembly of the Head of Bacteriophage T4. Nature 1970, 227(5259), 680–685.
  • Gonzalez-Tello, P.; Camacho, F.; Blazquez, G. Density and Viscosity of. Concentrated Aqueous Solutions of Polyethylene Glycol. J. Chem. Eng. Data 1994, 39, 611–614.
  • Schmidt, A.S.; Ventom, A.M.; Asenjo, J.A. Partitioning and Purification of Amylase in Aqueous Two-Phase Systems. Enzyme Microb. Technol. 1994, 16, 131–142.
  • Marri, C.; Frazzoli, A.; Hochkoeppler, A.; Poggi, V. Purification of a Polyphenol Oxidase Isoform From Potato (Solanum tuberosum) Tubers. Phytochem. 2003, 63, 745–752.
  • Raja, S.; Murty, V.R.; Thivaharan, V.; Rajasekar, V.; Ramesh, V. Aqueous Two Phase Systems for the Recovery of Biomolecules—A Review. Sci. Technol. 2011, 1(1), 7–16.
  • Abbot, N.L.; Hatton, T.A. Liquid–Liquid Extraction for Protein Separations. Chem. Eng. Prog. 1988, 84, 31–41.
  • Almedia, M.C.; Venancio, A.; Teixeira, J.A.; Aires-Barros, M.R. Cutinase Purification on Poly(Ethylene Glycol)-Hydroxyprpopyl Starch Aqueous Two Phase Systems. J. Chromatogr. B 1998, 711, 151–159.
  • Porto, T.S.; Medeiros e Silva, G.M.; Porto, C.S.; Cavalcanti, M.T.H.; Neto, B.B.; Lima-Filho, J.L.; Converti, A.; Porto, A.L.F.; Pessoa, A. Jr., Liquid–Liquid Extraction of Proteases From Fermented Broth by PEG/Citrate Aqueous Two-Phase System. Chem. Eng. Process. 2007, in press. doi:10.1016/j.cep.2006.12.04.
  • Sánchez-Ferrer, A.; Laveda, F.; Garcia-Carmona, F. Partial Purification of Soluble Potato Polyphenol Oxidase by Partitioning in an Aqueous Two-Phase System. J. Agric. Food Chem. 1993, 41, 1219–1224.
  • Mahmood, W.A.; Sultan, S.H.; Hamza, S.R. Extraction and Characterization of Polyphenol Oxidase From Apricot, Apple, Eggplant and Potato. Mesopotamia J. Agric. 2009, 37, 8.
  • Barthet, V.J. Polyphenol Oxidases From Cassava (Manihotesculenta C.) Root: Extraction, Purification and Characterization. J. Food Sci. Agric. Chem. 1997, 4, 179–198.
  • Matheis, G.; Whitaker, J.R. Modification of Proteins by Polyphenol Oxidase and Peroxidase and Their Products. J. Food Biochem. 1987, 8, 137–162.
  • Manohan, D.; Chen Wai, W.; Characterization of Polyphenol Oxidase in Sweet Potato (Ipomoea batatas (L.)). J. Adv. Sci. 2012, 3(1).
  • Duangmal, K.; Owusu Apenten, R.K. A Comparative Study of Polyphenoloxidases From Taro (Colocasia esculenta) and Potato (Solanum tuberosum var. Romano). Food Chem. 1999, 4, 351–359.
  • Waśko, A., Kieliszek, M., Targoński, Z. Purification and Characterization of a Proteinase From the Probiotic Lactobacillus rhamnosus OXY. Prep. Biochem. Biotechnol. 2012, 42(5), 476–488.

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