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Research Article

A review of the recent advances in starch as active and nanocomposite packaging films

, , , , , , & | (Reviewing Editor) show all
Article: 1115640 | Received 17 Sep 2015, Accepted 21 Oct 2015, Published online: 14 Dec 2015

References

  • Ahmad, M. , Baba, W. N. , Shah, U. , Gani, A. , Gani, A. , & Masoodi, F. A. (2014). Nutraceutical properties of the green tea polyphenols. Journal of Food Process and Technologies , 5 , 11. doi:10.4172/2157-7110.1000390
  • Arfat, Y. A. , Benjakul, S. , Prodpran, T. , Sumpavapol, P. , & Songtipya, P. (2014). Properties and antimicrobial activity of fish protein isolate/fish skin gelatin film containing basil leaf essential oil and zinc oxide nanoparticles. Food Hydrocolloids , 41 , 265–273.10.1016/j.foodhyd.2014.04.023
  • Ashwar, B. A. , Gani, A. , Shah, A. , Wani, I. A. , & Masoodi, F. A. (2015). Preparation, health benefits and applications of resistant starch—A review. Starch/Stark , 676 , 1–15. doi:10.1002/star.201500064
  • Ashwar, B. A. , Shah, A. , Gani, A. , Shah, U. , Gani, A. , Wani, I. D. , … Masoodi, F. A. (2014). Rice starch active packaging films loaded with antioxidants-development and characterization. Starch - Stärke , 66 , 1–9.10.1002/star.201400193
  • Avella, M. , De Vlieger, J. J. , Errico, M. E. , Fischer, S. , Vacca, P. , & Volpe, M. G. (2005). Biodegradable starch/clay nanocomposite films for food packaging applications. Food Chemistry , 93 , 467–474.10.1016/j.foodchem.2004.10.024
  • Babak, G. , Hadi, A. , & Entezami, A. A. (2011). Improving the barrier and mechanical properties of corn starch-based edible films: Effect of citric acid and carboxymethyl cellulose. Industrial Crops and Products , 33 , 229–235.
  • Barzegar, H. , Azizi, M. H. , Barzegar, M. , & Hamidi-Esfahani, Z. (2014). Effect of potassium sorbate on antimicrobial and physical properties of starch–clay nanocomposite films. Carbohydrate Polymers , 110 , 26–31.10.1016/j.carbpol.2014.03.092
  • Battegazzore, D. , Bocchini, S. , Nicola, G. , Martini, E. , & Frache, A. (2015). Isosorbide, a green plasticizer for thermoplastic starch that does not retrogradate. Carbohydrate Polymers , 119 , 78–84.10.1016/j.carbpol.2014.11.030
  • Berk, Z. (2013). Food process engineering and technology (2nd ed., pp. 621–636).10.1016/B978-0-12-415923-5.00027-7
  • Broumand, A. , Emam-Djomeh, Z. , Hamedi, M. , & Razavi, S. H. (2011). Antimicrobial, water vapour permeability, mechanical and thermal properties of casein based Zataraia multiflora Boiss. Extract containing film. LWT-Food Science and Technology , 44 , 2316–2323.10.1016/j.lwt.2011.07.002
  • Damodaran, S. , Parkin, K. L. , & Fennema, O. R. (2008). Fennema’s food chemistry (pp. 120–123). Boca Raton, FL: CRC Press/Taylor & Francis.
  • de La Cruz Garcia, C. , Lopez Hernandez, J. , & Simal Lozano, J. (2000). Gas chromatographic determination of the fatty-acid content of heat-treated green beans. Journal of Chromatography A , 891 , 367–370.10.1016/S0021-9673(00)00674-9
  • Falguera, V. , Quintero, J. P. , Jiménez, A. , Muñoz, J. A. , & Ibarz, A. (2011). Edible films and coatings: Structures, active functions and trends in their use. Trends in Food Science & Technology , 22 , 292–303.10.1016/j.tifs.2011.02.004
  • Fama, L. , Rojas, M. , Ana, G. S. , & Gerschenson, L. (2005). Mechanical properties of trapioca-starch edible films containing sorbates. LWT-Food Science and Technology , 38 , 631–639.
  • Gao, F. , He, J. , Wu, E. , Liu, S. , Yu, D. , Li, D. , Zhang, S. , & Tian, Y. (2003). Hardness of covalent crystals. Physics Review Letter , 91 , 015502.
  • González, K. , Retegi, A. , González, A. , Eceiza, A. , & Gabilondo, N. (2015). Starch and cellulose nanocrystals together into thermoplastic starch bionanocomposites. Carbohydrate Polymers , 117 , 83–90.10.1016/j.carbpol.2014.09.055
  • Inam u Nisa , Ashwar, B. A. , Shah, A. , Gani, A. , Gani, A. , & Masoodi, F. A. (2015). Development of potatop starch based active packaging films loaded with antioxidants and its effect on shelf life of beef. Journal of Food Science and Technology . doi:10.1007/s13197-015-1859-3
  • Jan, U. , Gani, A. , Ahmad, M. , Shah, U. , Baba, W. N. , Masoodi, F. A. , … Wani, I. D. (2015). Characterization of cookies made from wheat flour blended with buckwheat flour and effect on antioxidant properties. Journal of Food Science and Technology , 52 , 6334–6344.10.1007/s13197-015-1773-8
  • Jiménez, A. , Fabra, M. J. , Talens, P. , & Chiralt, A. (2013). Physical properties and antioxidant capacity of starch–sodium caseinate films containing lipids. Journal of Food Engineering , 116 , 695–702.10.1016/j.jfoodeng.2013.01.010
  • Jost, V. , Kobsik, K. , Schmid, M. , & Noller, K. (2014). Influence of plasticiser on the barrier, mechanical and grease resistance properties of alginate cast films. Carbohydrate Polymers , 110 , 309–319.10.1016/j.carbpol.2014.03.096
  • Kanmani, P. , & Rhim, J. W. (2014). Properties and characterization of bionanocomposite films prepared with various biopolymers and ZnO nanoparticles. Carbohydrate Polymers , 106 , 190–199.10.1016/j.carbpol.2014.02.007
  • Kowalczyk, D. , & Baraniak, B. (2014). Effect of candelilla wax on functional properties of biopolymer emulsion films—A comparative study. Food Hydrocolloids , 41 , 195–209.10.1016/j.foodhyd.2014.04.004
  • Kuakpetoon, D. , & Wang, Y.-J. (2006). Structural characteristics and physicochemical properties of oxidized corn starches varying in amylose content. Carbohydrate Research , 341 , 1896–1915.10.1016/j.carres.2006.04.013
  • Liu, H. , Xie, F. Y. , Yu, L. , & Chen, L. L. (2009). Thermal processing of starch-based polymers. Progress in Polymer Science , 34 , 1348–1368.10.1016/j.progpolymsci.2009.07.001
  • Liu, J. , Wang, B. , Lin, L. , Zhang, J. , Liu, W. , Xie, J. , & Ding, Y. (2014). Functional, physicochemical properties and structure of cross-linked oxidized maize starch. Food Hydrocolloids , 36 , 45–52.10.1016/j.foodhyd.2013.08.013
  • Mazur, M. , Morgiel, J. , Wojcieszak, D. , Kaczmarek, D. , & Kalisz, M. (2015). Effect of Nd doping on structure and improvement of the properties of TiO2 thin films. Journal of Surface & Coatings Technology , 270 , 57–65.
  • Nunes, C. , Maricato, É. , Cunha, Â. , Nunes, A. , Silva, J. A. L. , & Coimbra, M. A. (2013). Chitosan-caffeic acid-genipin films presenting enhanced antioxidant activity and stability in acidic media. Carbohydrate Polymers , 91 , 236–243.10.1016/j.carbpol.2012.08.033
  • Othman, S. H. (2014). Bio-nanocomposite materials for food packaging applications: Types of biopolymer and nano-sized filler. Agriculture and Agricultural Science Procedia , 2 , 296–303.10.1016/j.aaspro.2014.11.042
  • Parris, N. , Dickey, L. C. , Kurantz, M. J. , & Craig, C. J. (2005). Water vapor permeability and solubility of zein/starch hydrophilic films prepared from dry milled corn extract. Journal of Food Engineering , 32 , 199–207.
  • Pérez, S. , Baldwin, P. M. , & Gallant, D. J. (2009). Structural features of starch granulesI. In B. James & W. Roy (Eds.), Starch (3rd ed., pp. 149–192). San Diego, CA: Academic Press.10.1016/B978-0-12-746275-2.00005-7
  • Rahman, W. A. , Lee, S. T. , Rahmat, A. R. , & Samad, A. A. (2000). Thermal behavior and interactions of cassava starch filled with glycerol plasticized polyvinyl alcohol blends. Carbohydrate Polymers , 81 , 805–810.
  • Rhim, J.-W. , Park, H.-M. , & Ha, C.-S. (2013). Bio-nanocomposites for food packaging applications. Progress in Polymer Science , 38 , 1629–1652.10.1016/j.progpolymsci.2013.05.008
  • Shah, U. , Baba, N. B. , Ahmad, M. , Shah, A. , Gani, A. , Masoodi, F. A. , … Ashwar, B. (2014). In vitro antioxidant and anti-proliferative activities of seed extracts of Nymphaea mexicana in different solvents and GC-MS analysis. International Journal of Drug Development and Research , 6 , 280–285.
  • Slavutsky, A. M. , & Bertuzzi, M. A. (2015). Formulation and characterization of nanolaminated starch based film. LWT -Food Science and Technology , 61 , 407–413.10.1016/j.lwt.2014.12.034
  • Sorrentino, A. , Gorrasi, G. , & Vittoria, V. (2007). Potential perspectives of bio-nanocomposites for food packaging applications. Trends in Food Science and Technology , 18 , 84–95.10.1016/j.tifs.2006.09.004
  • Souza, A. C. , Benze, R. F. E. S. , Ferrão, E. S. , Ditchfield, C. , & Coelho, A. C. V. (2012). Cassava starch biodegradable films: Influence of glycerol and clay nanoparticles content on tensile and barrier properties and glass transition temperature. LWT-Food Science and Technology , 46 , 110–117.10.1016/j.lwt.2011.10.018
  • Sun, X. X. , Wang, Z. , Kadouh, H. , & Zhou, K. Q. (2010). The antimicrobial, mechanical, physical and structural properties of chitosan-gallic acid films. LWT-Food Science and Technology . doi:10.1016/j.lwt.2013.11.037
  • Tang, X. , Alavi, S. , & Herald, T. J. (2008). Barrier and mechanical properties of starch-clay nanocomposite films. Cereal Chemistry , 85 , 428–433.
  • Wiedmann, W. , & Strobel, E. (1991). Compounding of thermoplastic starch with twin-screw extruders. Starch - Stärke , 43 , 138–145.10.1002/(ISSN)1521-379X
  • Wu, J. , Zhong, F. , Li, Y. , Shoemaker, C. F. , & Xia, W. (2013). Preparation and characterization of pullulan–chitosan and pullulan–carboxymethyl chitosan blended films. Food Hydrocolloids , 30 , 82–91.10.1016/j.foodhyd.2012.04.002
  • Xie, F. , Pollet, E. H. J. P. , & Halley, P. J. (2013). Starch-based nano-biocomposites. Progress in Polymer Science , 38 , 1590–1628.10.1016/j.progpolymsci.2013.05.002