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Original Article

Increasing the shelf life of pikeperch (Sander lucioperca) fillets affected by low-density polyethylene/Ag/TiO2 nanocomposites experimentally produced by sol-gel and melt-mixing methods

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Pages 1923-1936 | Received 20 May 2018, Accepted 30 Jul 2018, Published online: 24 Aug 2018

References

  • Han, J.H. Innovations in Food Packaging; Elsevier Science & Technology Books 2005. ISBN: 0123116325.
  • Mihindukulasuriya, S.; Lim, L.-T. Nanotechnology Development in Food Packaging: A Review. Trends in Food Science & Technology 2014, 40(2), 149–167.
  • Tharanathan, R. Biodegradable Films and Composite Coatings: Past, Present and Future. Trends in Food Science & Technology 2003, 14(3), 71–78.
  • Zhang, J.; Wang, X.; Lu, L.; Li, D.; Yang, X. Preparation and Performance of High‐Impact Polystyrene (HIPS)/Nano‐TiO2 Nanocomposites. Journal of Applied Polymer Science 2003, 87(3), 381–385.
  • Wang, Z.; Li, G.; Xie, G.; Zhang, Z. Dispersion Behavior of TiO2 Nanoparticles in LLDPE/LDPE/TiO2 Nanocomposites. Macromolecular Chemistry and Physics 2005, 206(2), 258–262.
  • Park, J.S.; Kim, J.H.; Nho, Y.C.; Kwon, O.H. Antibacterial Activities of Acrylic Acid‐Grafted Polypropylene Fabric and Its Metallic Salt. Journal of Applied Polymer Science 1998, 69(11), 2213–2220.
  • Guzman, M.; Dille, J.; Godet, S. Synthesis and Antibacterial Activity of Silver Nanoparticles against Gram-Positive and Gram-Negative Bacteria. Nanomedicine: Nanotechnology, Biology and Medicine 2012, 8(1), 37–45.
  • Zan, L.; Fa, W.; Wang, S. Novel Photodegradable Low-Density Polyethylene− TiO2 Nanocomposite Film. Environmental Science & Technology 2006, 40(5), 1681–1685.
  • Yu, J.-G.; Yu, H.-G.; Cheng, B.; Zhao, X.-J.; Yu, J.C.; Ho, W.-K. The Effect of Calcination Temperature on the Surface Microstructure and Photocatalytic Activity of TiO2 Thin Films Prepared by Liquid Phase Deposition. The Journal of Physical Chemistry B 2003, 107(50), 13871–13879.
  • Cho, M.; Chung, H.; Choi, W.; Yoon, J. Linear Correlation between Inactivation of E. coli and OH Radical Concentration in TiO2 Photocatalytic Disinfection. Water Research 2004, 38(4), 1069–1077.
  • Chawengkijwanich, C.; Hayata, Y. Development of TiO 2 Powder-Coated Food Packaging Film and Its Ability to Inactivate Escherichia coli in Vitro and in Actual Tests. International Journal of Food Microbiology 2008, 123(3), 288–292.
  • Mihaly Cozmuta, A.; Peter, A.; Mihaly Cozmuta, L.; Nicula, C.; Crisan, L.; Baia, L.; Turila, A. Active Packaging System Based on Ag/TiO2 Nanocomposite Used for Extending the Shelf Life of Bread. Chemical and Microbiological Investigations. Packaging Technology and Science 2015, 28(4), 271–284.
  • Farrokhi,S.; Ahari, H.; Abedini, M. R. (2017) Comparative Effects Of Colloidal silver Nanoparticles Used in Packaging Film and Spray In Inactivating Bacteria Experimentally Added to Chicken Eggshells. International Journal of Food Properties, 20(10), 2314-2322, doi:10.1080/10942912.2016.1236274
  • Ruparelia, J.P.; Chatterjee, A.K.; Duttagupta, S.P.; Mukherji, S. Strain Specificity in Antimicrobial Activity of Silver and Copper Nanoparticles. Acta biomaterialia 2008, 4(3), 707–716.
  • Martinez-Gutierrez, F.; Olive, P.L.; Banuelos, A.; Orrantia, E.; Nino, N.; Sanchez, E.M.; Ruiz, F.; Bach, H.; Av-Gay, Y. Synthesis, Characterization, and Evaluation of Antimicrobial and Cytotoxic Effect of Silver and Titanium Nanoparticles. Nanomedicine: Nanotechnology, Biology and Medicine 2010, 6(5), 681–688.
  • Stobie, N.; Duffy, B.; McCormack, D.E.; Colreavy, J.; Hidalgo, M.; McHale, P.; Hinder, S.J. Prevention of Staphylococcus epidermidis Biofilm Formation Using a Low-Temperature Processed Silver-Doped Phenyltriethoxysilane Sol–Gel Coating. Biomaterials 2008, 29(8), 963–969.
  • Feng, Q.; Wu, J.; Chen, G.; Cui, F.; Kim, T.; Kim, J. A Mechanistic Study of the Antibacterial Effect of Silver Ions on Escherichia coli and Staphylococcus aureus. Journal of Biomedical Materials Research 2000, 52(4), 662–668.
  • Yamanaka, M.; Hara, K.; Kudo, J. Bactericidal Actions of a Silver Ion Solution on Escherichia coli, Studied by Energy-Filtering Transmission Electron Microscopy and Proteomic Analysis. Applied and Environmental Microbiology 2005, 71(11), 7589–7593.
  • Jones, S.; Ahonen, H.; Granlund, L.; Arsiola, T.; Taskinen, J. Two Novel Microsporidia in Skeletal Muscle of Pike-Perch Sander lucioperca and Burbot Lota Lota in Finland. Journal of Parasitology 2017, 103(1), 95–102.
  • Oliani, W.L.; Fermino, D.M.; Komatsu, L.G.H.; Lugao, A.B.; Rangari, V.K.; Lincopan, N.; Parra, D.F. Preparation and Characterization of Polyethylene Nanocomposites with Clay and Silver Nanoparticles. In Characterization of Minerals, Metals, and Materials 2017; Springer, 2017; pp 709–718.
  • Rashedi, H.; Partovi, A.; Fattah, R.; Khiabani, M. The Effect of Silver Nanofilms Based on Titaniom Dioxide on the Shelf-Life of Rainbow Trout Fillet (Oncorhynchus mykiss). Iranian Journal of Nutrition Sciences & Food Technology 2016, 11(3), 85–92.
  • Mikiciuk, J.; Mikiciuk, E.; Szterk, A. Physico‐Chemical Properties and Inhibitory Effects of Commercial Colloidal Silver Nanoparticles as Potential Antimicrobial Agent in the Food Industry. Journal of Food Processing and Preservation 2017, 41(2).
  • Saadatmand, M.; Yazdanshenas, M.; Rezaei Zarchi, S.; Yosefi Talori, B.; Negahdari, M. The Antimicrobial Activity of Chitosan nanocomposite-TiO2, and Its Application on the Gauze Hospital. Laboratory J 2012, 6(1), 57–59.
  • Duun, A.S.; Rustad, T. Quality of Superchilled Vacuum Packed Atlantic Salmon (Salmo Salar) Fillets Stored At− 1.4 And− 3.6 C. Food Chemistry 2008, 106(1), 122–131.
  • Sallam, K.I.;. Antimicrobial and Antioxidant Effects of Sodium Acetate, Sodium Lactate, and Sodium Citrate in Refrigerated Sliced Salmon. Food Control 2007, 18(5), 566–575.
  • Gupta, K.; Singh, R.; Pandey, A.; Pandey, A. Photocatalytic Antibacterial Performance of TiO2 and Ag-Doped TiO2 against S. aureuS. P. aeruginosa and E. coli. Beilstein Journal of Nanotechnology 2013, 4, 345.
  • Li, M.; Noriega-Trevino, M.E.; Nino-Martinez, N.; Marambio-Jones, C.; Wang, J.; Damoiseaux, R.; Ruiz, F.; Hoek, E.M. Synergistic Bactericidal Activity of Ag-TiO2 Nanoparticles in Both Light and Dark Conditions. Environmental Science & Technology 2011, 45(20), 8989–8995.
  • Mirhoseini, F.; Salabat, A. Antibacterial Activity Based Poly (Methyl Methacrylate) Supported TiO2 Photocatalyst Film Nanocomposite, 2015.
  • Yu, B.; Leung, K.M.; Guo, Q.; Lau, W.M.; Yang, J. Synthesis of Ag–TiO2 Composite Nano Thin Film for Antimicrobial Application. Nanotechnology 2011, 22(11), 115603.
  • Lopez Goerne, T.; Alvarez Lemus, M.; Morales, V.; López, E.; Ocampo, P. Study of Bacterial Sensitivity to Ag-TiO2 Nanoparticles. Journal of Nanomedicine and Nanotechnology S 2012, 5, 2.
  • Cheng, H.; Ye, J.; Sun, Y.; Yuan, W.; Tian, J.; Bogale, R.F.; Tian, P.; Ning, G. Template-Induced Synthesis and Superior Antibacterial Activity of Hierarchical Ag/TiO 2 Composites. RSC Advances 2015, 5(98), 80668–80676.
  • Hamad, A.; Li, L.; Liu, Z.; Zhong, X.L.; Wang, T. Picosecond Laser Generation of Ag–TiO2 Nanoparticles with Reduced Energy Gap by Ablation in Ice Water and Their Antibacterial Activities. Applied Physics A 2015, 119(4), 1387–1396.
  • Bodaghi, H.; Mostofi, Y.; Oromiehie, A.; Zamani, Z.; Ghanbarzadeh, B.; Costa, C.; Conte, A.; Del Nobile, M.A. Evaluation of the Photocatalytic Antimicrobial Effects of a TiO 2 Nanocomposite Food Packaging Film by in Vitro and in Vivo Tests. LWT-Food Science and Technology 2013, 50(2), 702–706.
  • Cheng, Q.; Li, C.; Pavlinek, V.; Saha, P.; Wang, H. Surface-Modified Antibacterial TiO 2/Ag+ Nanoparticles: Preparation and Properties. Applied Surface Science 2006, 252(12), 4154–4160.
  • Threepopnatkul, P.; Wongnarat, C.; Intolo, W.; Suato, S.; Kulsetthanchalee, C. Effect of TiO2 and ZnO on Thin Film Properties of PET/PBS Blend for Food Packaging Applications. Energy Procedia 2014, 56, 102–111.
  • Rahmawati, F.; Kusumaningsih, T.; Hapsari, A.; Hastuti, A. Ag and Cu Loaded on TiO2/graphite as a Catalyst for Escherichia coli-Contaminated Water Disinfection. Chemical Papers 2010, 64(5), 557–565.
  • Zhang, H.; Chen, G. Potent Antibacterial Activities of Ag/TiO2 Nanocomposite Powders Synthesized by a One-Pot Sol− Gel Method. Environmental Science & Technology 2009, 43(8), 2905–2910.
  • Becaro, A.A.; Puti, F.C.; Correa, D.S.; Paris, E.C.; Marconcini, J.M.; Ferreira, M.D. Polyethylene Films Containing Silver Nanoparticles for Applications in Food Packaging: Characterization of Physico-Chemical and Anti-Microbial Properties. Journal of Nanoscience and Nanotechnology 2015, 15(3), 2148–2156.