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Articles

Development, Characterization, and Antimicrobial Activity of Gelatin/Chitosan/ZnO Nanoparticle Composite Films

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References

  • Ahvenainen, R. 2003. Active and intelligent packaging. In: Novel Food Packaging Techniques. Ahvenainen, R. (Ed.). New York, NY: CRC Press. Pp. 5–21.
  • Chiou, B. S., Avena-Bustillos, R. J., Shey, J., Yee, E., Bechtel, P. J., Imam, S. H., Glenn, G. M., and Orts, W. J. 2006. Rheological and mechanical properties of cross-linked fish gelatins. Polymer 47: 6379–6386.
  • De Carvalho, R. A., and Grosso, C. 2004. Characterization of gelatin based films modified with transglutaminase, glyoxal and formaldehyde. Food Hydrocolloid. 18: 717–726.
  • Espitia, P., Soares, N. F., Coimbra, J. S. R., Andrade, N. J., Cruz, R. S., and Medeiros, E. A. A. 2012. Zinc oxide nanoparticles: Synthesis, antimicrobial activity and food packaging applications. Food Bioprocess Tech. 5: 1447–1464.
  • Falguera, V., Quintero, J. P., Jiménez, A., Muñoz, J. A., and Ibarz, A. 2011. Edible films and coatings: Structures, active functions and trends in their use. Trends Food Sci Tech. 22: 292–303.
  • Fang, S. W., Li, C. F., and Shih, D. Y. C. 1994. Antifungal activity of chitosan and its preservative effect on low-sugar candied kumquat. J. Food Protect. 57: 136–140.
  • Gómez-Guillén, M. C., Pérez-Mateos, M., Gómez-Estaca, J., López-Caballero, E., Giménez, B., and Montero, P. 2009. Fish gelatin: A renewable material for developing active biodegradable films. Trends Food Sci Tech. 20: 3–16.
  • Halliwell, B., and Gutteridge, J. M. C. 1984. Oxygen toxicity, oxygen radicals, transitionmetals and disease. Biochem. J. 219: 1–14.
  • Hosseini, S. F., Rezaei, M., Zandi, M., and Ghavi, F. F. 2013. Preparation and functional properties of fish gelatin-chitosan blend edible films. Food Chem. 136: 1490–1495.
  • Iwata, K., Ishizaki, S., Handa, A., and Tanaka, M. 2000. Preparation and characterization of edible films from fish water-soluble proteins. Fisheries Sci. 66: 372–378.
  • Lavorgna, M., Attianese, I., Buonocore, G. G., Conte, A., Del Nobile, M. A., Tescione, F., and Amendola, E. 2014. MMT-supported Ag nanoparticles for chitosan nanocomposites: Structural properties and antibacterial activity. Carbohyd. Polym. 102: 385–392.
  • Li, L. H., Deng, J. C., Deng, H. R., Liu, Z. L., and Li, X. L. 2010. Preparation, characterization and antimicrobial activities of chitosan/Ag/ZnO blend films. Chem. Eng. J. 160: 378–382.
  • Liu, Y., and Kim, H. 2012. Characterization and antibacterial properties of genipin-crosslinked chitosan/poly(ethylene glycol)/ZnO/Ag nanocomposites. Carbohyd. Polym. 89: 111–116.
  • Liu, Z., Ge, X., Lu, Y., Dong, S., Zhao Y., and Zeng, M. 2012. Effects of chitosan molecular weight and degree of deacetylation on the properties of gelatine-based films. Food Hydrocolloid. 26: 311–317.
  • Llorens, A., Lloret, E., Picouet, P. A., Trbojevich R., and Fernandez, A. 2012. Metallic-based micro and nanocomposites in food contact materials and active food packaging. Trends Food Sci Tech. 24: 19–29.
  • Maizura, M., Fazilah, A., Norziah, M. H., and Karim, A. A. 2007. Antibacterial activity and mechanical properties of partially hydrolyzed sago starch–alginate edible film containing lemongrass oil. J. Food Sci. 72: C324–C330.
  • Muzzarelli, C., Muzzarelli, R., Tarsi, R., Milliani, M., Gabbanelli, F., and Cartolari, M. 2001. Fungistatic activity of modified chitosans against Saprolegnia parasitica. Biomacromol. 2: 165–169.
  • Peng, Y., Wu, Y., and Li, Y. 2013. Development of tea extracts and chitosan composite films for active packaging materials. Int. J. Biol. Macromol. 59: 282–289.
  • Pranoto, Y., Lee, C. M., and Park, H. J. 2007. Characterizations of fish gelatin films added with gellan and k-carrageenan. LWT-Food Sci. Technol. 40: 766–774.
  • Pranoto, Y., Rakshit, S. K., and Salokhe, V. M. 2005. Enhancing antimicrobial activity of chitosan films by incorporating garlic oil, potassium sorbate and nisin. LWT-Food Sci. Technol. 38: 859–865.
  • Rivero, S., García, M. A., and Pinotti, A. 2009. Composite and bi-layer films based on gelatin and chitosan. J. Food Eng. 90: 531–539.
  • Sobral, P. J. A., Menegalli, F. C., Hubinger, M. D., and Roques, M. A. 2001. Mechanical, water vapor barrier and thermal properties of gelatin based edible films. Food Hydrocolloid. 15: 423–432.
  • Suyatma, N. E., Copinet, A., Tighzert, L., and Coma, V. 2004. Mechanical and barrier properties of biodegradable films made from chitosan and poly (lactic acid) blends. J. Polym. Environ. 12: 1–6.
  • Wu, J., Chen, S., Ge, S., Miao, J., Li, J., and Zhang, Q. 2013. Preparation, properties and antioxidant activity of an active film from silver carp (Hypophthalmichthys molitrix) skin gelatin incorporated with green tea extract. Food Hydrocolloid. 32: 42–51.
  • Yang, Z. H., Xie, C. S., Xia, X. P., and Cai, S. Z. 2008. Zn2+ release behavior and surface characteristics of Zn/LDPE nanocomposites and ZnO/LDPE nanocomposites in simulated uterine solution. J. Mater. Sci. Mater. Med. 19: 3319–3326.

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