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Research Article

Horseradish Peroxidase-Catalyzed Coloration of Natural Phenols on Silk Fabric: Effects of Various Buffer Systems and pH Value on Dyed Color

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Pages 13155-13166 | Published online: 20 Jun 2022

References

  • Aracil, B. M., P. Díaz-García, E. Bou-Belda, N. Sebastiá, A. Montoro, and R. Rodrigo. 2016. UV protection from cotton fabrics dyed with different tea extracts. Dyes and Pigments 134:448–52. doi:10.1016/j.dyepig.2016.07.045.
  • Baek, N. W., X. R. Fan, J. G. Yuan, J. Xu, and Q. Wang. 2020. Polymerization and dyeing properties of gallic acid on silk fabric catalyzed by horseradish peroxidase. Fibers and Polymers 22 (8):2145–55. doi:10.1007/s12221-021-0673-Yv.
  • Baek, N. W., X. R. Fan, X. zhang, D. Wang, and J. G. Yuan. 2021. “Horseradish peroxidase-catalyzed “template” polymerization of gallic acid for the functionalization of silk fabrics.” Journal of Natural Fibers Advance online publication, 1–14. doi:10.1080/15440478.2021.1982836.
  • Bai, R. B., Y. Y. Yu, Q. Wang, J. S. Shen, J. G. Yuan, and X. R. Fan. 2020. Laccase-catalyzed polymerization of hydroquinone incorporated with chitosan oligosaccharide for enzymatic coloration of cotton. Applied Biochemistry and Biotechnology 191 (2):605–22. doi:10.1007/s12010-019-03169-w.
  • Boonsong, P., N. Laohakunjit, and O. Kerdchoechuen. 2012. Natural pigments from six species of thai plants extracted by water for hair dyeing product application. Journal of Cleaner Production 37:93–106. doi:10.1016/j.jclepro.2012.06.013.
  • Carbajo, J. M., H. Junca, M. C. Terrón, T. González, S. Yagüe, E. Zapico, and A. E. González. 2002. Tannic acid induces transcription of laccase gene cglcc1 in the white-rot fungus coriolopsis gallica. Canadian Journal of Microbiology 48 (12):1041–47. doi:10.1021/jm801238q.
  • Chandra, R., and P. Chowdhary. 2015. Properties of bacterial laccases and their application in bioremediation of industrial wastes. Environmental Science: Processes & Impacts 17 (2):326–42. doi:10.1039/c4em00627e.
  • Cotero, D. A., A. V. Carvajal, R. M. G. Espinoza, O. D. García, and A. D. Lopez. 2017. Radical scavenging activity of an inulin-gallic acid graft and its prebiotic effect on Lactobacillus acidophilus in vitro growth. Journal of Functional Foods 29:135. doi:10.1016/j.jff.2016.12.014.
  • Ghoul, M., and L. Chebil. 2012. Enzymatic polymerization of phenolic compounds by oxidoreductases. Springer Briefs in Molecular Science Green Chemistry for Sustainability
  • Gogoi, P., S. Hazarika, N. N. Dutta, and P. G. Rao. 2010. Kinetics and mechanism on laccase catalyzed synthesis of poly(allylamine)–catechin conjugate. Chemical Engineering Journal 163 (1–2):86–92. doi:10.1016/j.cej.2010.07.020.
  • Husaini, S. N., J. H. Zaidi, M. A. Matiullah, and M. Akram. 2011. Comprehensive evaluation of the effluents eluted from different processes of the textile industry and its immobilization to trim down the environmental pollution. Journal of Radioanalytical and Nuclear Chemistry 288 (3):903–10. doi:10.1007/s10967-011-1024-z.
  • Jeon, J. R., E. J. Kim, K. Murugesan, H. K. Park, Y. M. Kim, J. H. Kwon, W. G. Kim, J. Y. Lee, and Y. S. Chang. 2010. Laccase-catalysed polymeric dye synthesis from plant-derived phenols for potential application in hair dyeing: Enzymatic colourations driven by homo- or hetero-polymer synthesis. Microbial Biotechnology 3 (3):324–35. doi:10.1111/j.1751-7915.2009.00153.x.
  • Jia, W. N., Q. Wang, X. R. Fan, A. X. Dong, Y. Y. Yu, and P. Wang. 2017. Laccase-mediated in situ oxidation of dopa for bioinspired coloration of silk fabric. RSC Advances 7 (21):12977. doi:10.1039/c6ra25533gV.
  • Kaffash, A., H. R. Zare, and K. Rostami. 2018. Highly sensitive biosensing of phenol based on the adsorption of the phenol enzymatic oxidation product on the surface of an electrochemically reduced graphene oxide-modified electrode. Analytical Methods 10 (23):2731. doi:10.1039/C8AY00528A.
  • Khandare, R. V., and S. P. Govindwar. 2015. Phytoremediation of textile dyes and effluents: Current scenario and future prospects. Biotechnology Advances 33 (8):1697–714. doi:10.1016/j.biotechadv.2015.09.003V.
  • Kohri, M., H. Fukushima, T. Taniguchi, and T. Nakahira. 2010. Synthesis of polyarbutin by oxidative polymerization using PEGylated hematin as a biomimetic catalyst. Polymer Journal 42 (12):952–55. doi:10.1038/pj.2010.97.
  • Kumar, N., and V. Pruthi. 2015. Structural elucidation and molecular docking of ferulic acid from parthenium hysterophorus possessing COX-2 inhibition activity. Biotech 5:541–51. doi:10.1007/s13205-014-0253-6.
  • Lam, Y., Y. Ho, L. He, X. W. Wang, and H. X. John. 2019. Laccase-catalyzed biomimetic coloration of wool fabrics with phenols. AATCC Journal of Research 6 (1_suppl):41–44. doi:10.14504/ajr.6.S1.9.
  • Lee, H. B., J. E. Song, E. J. Shim, and H. R. Kim. 2018. The development of enzymatic mordanting using laccase for phenolic natural dye. Fashion & Textile Research Journal 20 (3):323–30. doi:10.5805/SFTI.2018.20.3.323.
  • Lenting, B. M. H., C. Paulo, and G. Guebitz, eds. 2003. Textile processing with enzymes. 158. Cambridge: Woodhead Publishing Ltd. doi:10.1533/9781855738669.158.
  • Luna, V. J. G., R. R. B. Quintana, J. A. A. Barrios, G. R. C. Montfort, A. M. M. Wilson, J. N. M. Ruiz, T. J. M. Santana, A. R. Chu, and G. C. Quilca. 2017. Structural and physicochemical characterization of nanoparticles synthesized from an aqueous extract of wheat bran by a cold-set gelation/desolvation approach. Food Hydrocolloids 94:144. doi:10.1016/j.foodhyd.2016.07.034.
  • Mejias, L., M. H. Reihmann, S. S. Boza, and H. Ritter. 2015. New polymers from natural phenols using horseradish or soybean peroxidase. Macromolecular Bioscience 2 (1):24–32. doi:10.1002/1616-5195(20020101)2:1<24::AID-MABI24>3.0.CO;2-6.
  • Oosterveld, A., J. H. Grabber, G. Beldman, J. Ralph, and A. G. J. Voragen. 1997. Formation of ferulic acid dehydrodimers through oxidative cross-linking of sugar beet pectin. Carbohydrate Res Earch 300 (300):179. doi:10.1016/s0008-6215(97)00041-4.
  • Prajapati, C. D., E. Smith, F. Kane, and J. Shen. 2018. Laccase-catalysed coloration of wool and Nylon. Coloration Technology 134 (6):423–39. doi:10.1111/cote.12350.
  • Ratnapandian, S., S. M. Fergusson, and L. Wang. 2012. Application of acacia natural dyes on cotton by pad dyeing. Fibers and Polymers 13 (2):206–11. doi:10.1007/s12221-012-0206-9.
  • Santos, S., and J. Graca. 2006. Glycerol-ω-hydroxyacid-ferulic acid oligomers in cork suberin structure: Holzforschung. Holzforschung 60 (2):171–77. doi:10.1515/hf.2006.028.
  • Seelbach, K., M. P. J. V. Deurzen, F. V. Rantwijk, R. A. Sheldon, and U. Krahl. 1997. Improvement of the total turnover number and space-time yield for chloroperoxidase catalyzed oxidation. Biotechnology and Bioengineering 55 (2):283–88. doi:10.1002/(SICI)1097-0290(19970720)55:2<283::AID-BIT6><283::AID-BIT6>3.0.CO;2-E.
  • Sun, S. S., T. Xing, and R. C. Tang. 2015. Enzymatic dyeing and functional finishing of textile fibres with ferulic acid. Indian J. Fiber & Textile Research 40:62–69. 975-1025.
  • Uyama, H., and K. L. in, ed. 2011. Biocatalysis in polymer chemistry. 1st ed., 165. Weinheim, Germany: Wiley-VCH.
  • Velho, S. R. K., L. F. W. Brum, C. O. Petter, J. H. Z. D. Santos, S. Šimuni´c, and W. H. Kappa. 2017. Development of structured natural dyes for use into plastics. Dyes and Pigments 136:248–54. doi:10.1016/j.dyepig.2016.08.021.
  • Ward, G., Y. Hadar, I. Bilkis, L. Konstantinovsky, and C. G. Dosoretz. 2001. Initial steps of ferulic acid polymerization by lignin peroxidase. Journal of Biological Chemistry 276 (22):18734. doi:10.1074/jbc.M009785200.
  • Zhou, H. F., D. J. Yang, X. Q. Qiu, X. L. Wu, and Y. Li. 2013. A novel and efficient polymerization of lignosulfonates by horseradish peroxidase/H2O2 incubation. Applied Microbiology and Biotechnology 97 (24):10309–20. doi:10.1007/s00253-013-5267-1.
  • Zhu, J. F., Y. X. Heng, D. X. Zhang, Y. Wen, H. Li, and G. H. Zhao. 2016. Synthesis and characterization of enzymatically cross-linked feruloyl amylopectin for curcumin encapsulation. Journal of Biological Macromolecules 85:126–32. doi:10.1016/j.ijbiomac.2015.12.073.

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