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Articles

Effect of Organic Acids on Physical-Mechanical and Antifungicidal Properties of Anchovy Protein Films

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References

  • Aewsiri, T., Benjakul, S., and Visessanguan, W. 2009. Functional properties of gelatin from cuttlefish (Sepia pharaonis) skin as affected by bleaching using hydrogen peroxide. Food Chem. 115: 243–249.
  • Akhtar, M. J., Jacquot, M., Jamshidian, M., Imran, M., Arab-Tehrany, E., and Desobry, S. 2013. Fabrication and physicochemical characterization of HPMC films with commercial plant extract: influence of light and film composition. Food Hydrocol. 31: 420–427.
  • Alcano, M. D. J., Jahn, R. C., Scherer, C. D., Wigmann, É. F., Moraes, V. M., Garcia, M. V., and Copetti, M. V. 2016. Susceptibility of Aspergillus spp. to acetic and sorbic acids based on pH and effect of sub-inhibitory doses of sorbic acid on ochratoxin A production. Food Res. Internat. 81: 25–30.
  • AOAC. 2000. Official Methods of Analysis. 17th ed. Maryland, USA: Association of Official Analytical Chemistry.
  • ASTM. 1996. Standard Test Methods for Tensile Properties of Thin Plastic Sheeting. Philadelphia: Annual Book of American Society for Testing and Materials, Designation D882-91.
  • Atef, M., Rezaei, M., and Behrooz, R. 2014. Preparation and characterization agar-based nanocomposite film reinforced by nanocrystalline cellulose. Int. J. Biol. Macrom. 70: 537–544.
  • Atef, M., Rezaei, M., and Behrooz, R. 2015. Characterization of physical, mechanical, and antibacterial properties of agar-cellulose bionanocomposite films incorporated with savory essential oil. Food Hydrocol. 45: 150–157.
  • Aydemir, L. Y., Gökbulut, A. A., Baran, Y., and Yemenicioǧlu, A. 2014. Bioactive, functional and edible film-forming properties of isolated hazelnut (Corylus avellana L.) meal proteins. Food Hydrocol. 36: 130–142.
  • Barzegar, H., Azizi, M. H., Barzegar, M., and Hamidi-Esfahani, Z. 2014. Effect of potassium sorbate on antimicrobial and physical properties of starch-clay nanocomposite films. Carb. Polym. 110: 26–31.
  • Bergo, P. V., and Sobral, P. J. A. 2007. Effects of plasticizer on physical properties of pigskin gelatin films. Food Hydrocol. 21: 1285–1289.
  • Cagri, A., Ustunol, Z., Ryser, E., Microbiology, F., and Microbiology, F. 2001. Antimicrobial, mechanical, and moisture barrier properties of low pH whey protein-based edible films containing p-aminobenzoic or sorbic acids. J. Food Sci. 66: 865–870.
  • Carvalho, F. M., and Castello, J. P. 2013. Argentine anchovy (Engraulis anchoita) stock identification and incipient exploitation in southern Brazil Identificación de stocks y explotación incipiente de la anchoíta argentina (Engraulis anchoita), en el sur de Brasil. Latin Amer. J. Aquatic Res. 41: 820–827.
  • Castello, L., and Castello, J. P. 2003. Anchovy stocks (Engraulis anchoita) and larval growth in the SW Atlantic. Fish. Res. 59: 409–421.
  • CIE. 1986. Colorimetry. Publication CIE 15.2.2 ed. Wien, Austria: Commission International De L’éclairage.
  • Copetti, M. V., Iamanaka, B. T., Mororó, R. C., Pereira, J. L., Frisvad, J. C., and Taniwaki, M. H. 2012. The effect of cocoa fermentation and weak organic acids on growth and ochratoxin A production by Aspergillus species. Int. J. Food Microb. 153: 158–164.
  • Cuq, B., Gontard, N., Cuq, J. L., and Guilbert, S. 1997. Select functional properties of fish myofibrilar protein-based films as affect by hydrophilic plasticizer. J. Agricult. Food Chem. 45: 622–626.
  • Do Socorro Rocha Bastos, M., Da Silva Laurentino, L., Canuto, K. M., Mendes, L. G., Martins, C. M., Silva, S. M. F., and Cheng, H. N. 2016. Physical and mechanical testing of essential oil-embedded cellulose ester films. Polym. Test. 49: 156–161.
  • Echeverría, I., Eisenberg, P., and Mauri, A. N. 2014. Nanocomposites films based on soy proteins and montmorillonite processed by casting. J. Memb. Sci. 449: 15–26.
  • El Halal, S. L. M., Zavareze, E. D. R., Rocha, M., Pinto, V. Z., Nunes, M. R., Luvielmo, M. D. M., and Prentice, C. 2015. Films based on protein isolated from croaker (Micropogonias Furnieri) and palm oil. J. Sci. of Food and Agricul. 96: 2478–2485.
  • Flores, S., Famá, L., Rojas, A. M., Goyanes, S., and Gerschenson, L. 2007. Physical properties of tapioca-starch edible films: influence of filmmaking and potassium sorbate. Food Res. Internat. 40: 257–265.
  • Gonçalves, S. S., Cano, J. F., Stchigel, A. M., Melo, A. S., Godoy-Martinez, P. C., Correa, B., and Guarro, J. 2012. Molecular phylogeny and phenotypic variability of clinical and environmental strains of Aspergillus flavus. Fungal Biol. 116: 1146–1155.
  • Gontard, N., Guilbert, S., and Cuq, J. L. 1992. Edible wheat gluten films: influence of the main process variables on film properties using response surface methodology. J. of Food Sci. 57: 190–195.
  • González, A., and Alvarez Igarzabal, C. I. 2015. Nanocrystal-reinforced soy protein films and their application as active packaging. Food Hydrocol. 43: 777–784.
  • Jafarzadeh, S., Alias, A. K., Ariffin, F., Mahmud, S., and Najafi, A. 2016. Preparation and characterization of bionanocomposite films reinforced with nano kaolin. J. of Food Sci. Technol. 53: 11.
  • Klangmuang, P., and Sothornvit, R. 2016. Barrier properties, mechanical properties and antimicrobial activity of hydroxypropyl methylcellulose-based nanocomposite films incorporated with Thai essential oils. Food Hydrocol. 61: 609–616.
  • Kokoszka, S., Debeaufort, F., Lenart, A., and Voilley, A. 2010. Water vapour permeability, thermal and wetting properties of whey protein isolate based edible films. Int. Dairy J. 20: 53–60.
  • Kristo, E., Koutsoumanis, K. P., and Biliaderis, C. G. 2008. Thermal, mechanical and water vapor barrier properties of sodium caseinate films containing antimicrobials and their inhibitory action on Listeria monocytogenes. Food Hydrocol. 22: 373–386
  • Lacroix, M., and Cooksey, K. 2005. Edible films and coatings from animal-origin proteins. In: Innovation in Food Packaging. Han, J. H. (Ed.). London, UK: Elsevier Academic Press. Pp. 302–318.
  • Limpan, N., Prodpran, T., Benjakul, S., and Prasarpran, S. 2010. Properties of biodegradable blend films based on fish myofibrillar protein and polyvinyl alcohol as influenced by blend composition and pH level. J. Food Eng. 100: 85–92.
  • Manab, A., Sawitri, M. E., Al-Awwaly, K. U., and Purnomo, H. 2011. Antimicrobial activity of whey protein based edible film incorporated with organic acids. African J. Food Sci. 5: 6–11.
  • Mani-López, E., García, H. S., and López-Malo, A. 2012. Organic acids as antimicrobials to control Salmonella in meat and poultry products. Food Res. Int. 45: 713–721.
  • Mohajer, S., Rezaei, M., and Hosseini, S. F. 2017. Physico-chemical and microstructural properties of fish gelatin/agar bio-based blend films. Carboh. Polym. 157: 784–793.
  • Nolsøe, H., and Undeland, I. 2009. The acid and alkaline solubilization process for the isolation of muscle proteins: state of the art. Food Bioproc. Technol. 2: 1–27.
  • Nuanmano, S., Prodpran, T., and Benjakul, S. 2015. Potential use of gelatin hydrolysate as plasticizer in fish myofibrillar protein film. Food Hydrocol. 47: 61–68.
  • Núñez-Flores, R., Giménez, B., Fernández-Martín, F., López-Caballero, M. E., Montero, M. P., and Gómez-Guillén, M. C. 2013. Physical and functional characterization of active fish gelatin films incorporated with lignin. Food Hydrocol. 30: 163–172.
  • Pereda, M., Ponce, A. G., Marcovich, N. E., Ruseckaite, R. A., and Martucci, J. F. 2011. Chitosan-gelatin composites and bi-layer films with potential antimicrobial activity. Food Hydrocol. 25: 1372–1381.
  • Pranoto, Y., Salokhe, V. M., and Rakshit, S. K. 2005. Physical and antibacterial properties of alginate-based edible film incorporated with garlic oil. Food Res.Int. 38: 267–272.
  • Rocha, M. D., Loiko, M. R., Gautério, G. V., Tondo, E. C., and Prentice, C. 2013. Influence of heating, protein and glycerol concentrations of film-forming solution on the film properties of Argentine anchovy (Engraulis anchoita) protein isolate. J. of Food Eng. 116: 666–673.
  • Rocha, M. D., Loiko, M. R., Tondo, E. C., and Prentice, C. 2014. Physical, mechanical and antimicrobial properties of Argentine anchovy (Engraulis anchoita) protein films incorporated with organic acids. Food Hydrocol. 37: 213–220.
  • Sayanjali, S., Ghanbarzadeh, B., and Ghiassifar, S. 2011. Evaluation of antimicrobial and physical properties of edible film based on carboxymethyl cellulose containing potassium sorbate on some mycotoxigenic Aspergillus species in fresh pistachios. LWT - Food Sci. Technol. 44: 1133–1138.
  • Shen, X. L., Wu, J. M., Chen, Y., and Zhao, G. 2010. Antimicrobial and physical properties of sweet potato starch films incorporated with potassium sorbate or chitosan. Food Hydrocol. 24: 285–290.
  • Su, Q. Z., Lin, Q. B., Chen, C. F., Wu, L. B., and Wang, Z. W. 2017. Effect of organic additives on silver release from nanosilver polyethylene composite films to acidic food simulant. Food Chem. 228: 560–566.
  • Teixeira, B., Marques, A., Pires, C., Ramos, C., Batista, I., Saraiva, J. A., and Nunes, M. L. 2014. Characterization of fish protein films incorporated with essential oils of clove, garlic and origanum: physical, antioxidant and antibacterial properties. LWT - Food Sci. Technol. 59: 533–539.
  • Türe, H., Gällstedt, M., and Hedenqvist, M. S. 2012. Antimicrobial compression-moulded wheat gluten films containing potassium sorbate. Food Res. Int. 45: 109–115.
  • Uz, M., and Altinkaya, S. A. 2011. Development of mono and multilayer antimicrobial food packaging materials for controlled release of potassium sorbate. LWT - Food Sci. Technol. 44: 2302–2309.
  • Wang, B., Han, X., Bai, Y., Lin, Z., Qiu, M., Nie, X., and Wang, S. 2017. Effects of nitrogen metabolism on growth and aflatoxin biosynthesis in Aspergillus flavus. J. Hazard. Mat. 324: 691–700.
  • Wihodo, M., and Moraru, C. I. 2013. Physical and chemical methods used to enhance the structure and mechanical properties of protein films: A review. J. Food Eng. 114: 292–302.
  • Zavareze, E. D. R., Halal, S. L. M. E., Marques E Silva, R., Dias, A. R. G., and Prentice-Hernández, C. 2014. Mechanical, barrier and morphological properties of biodegradable films based on muscle and waste proteins from the whitemouth croaker (Micropogonias furnieri). J. Food Proces. Pres. 38: 1973–1981.
  • Ziani, K., Fernández-Pan, I., Royo, M., and Maté, J. I. 2009. Antifungal activity of films and solutions based on chitosan against typical seed fungi. Food Hydrocol. 23: 2309–2314.

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