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Articles

Physical, Rheological and Antibacterial Properties of New Edible Packaging Films Based on the Sturgeon Fish Waste Gelatin and its Compounds with Chitosan

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References

  • Abugoch LE, Tapia C, Villamán MC, Yazdani-Pedram M, Díaz-Dosque M. 2011. Characterization of quinoa protein–chitosan blend edible films. Food Hydrocoll. 25(5):879–86. doi:10.1016/j.foodhyd.2010.08.008.
  • Aider M. 2010. Chitosan application for active bio-based films production and potential in the food industry: review. LWT - Food Sci Technol. 43(6):837–42. doi:10.1016/j.lwt.2010.01.021.
  • Arvanitoyannis IS, Nakayama A, Aiba S. 1998. Chitosan and gelatin based edible films: state diagrams, mechanical and permeation properties. Carbohydr Polym. 37(4):371–82. http://agris.fao.org/agris-search/search.do?recordID=US201302909551.
  • Avena-Bustillos RJ, Olsen CW, Olson DA, Chiou B, Yee E, Bechtel PJ, McHugh TH. 2006. Water vapor permeability of mammalian and fish gelatin films. J Food Sci. 71(4):E202–07. doi:10.1111/j.1750-3841.2006.00016.x.
  • Benbettaïeb N, Assifaoui A, Karbowiak T, Debeaufort F, Chambin O. 2016a. Controlled release of tyrosol and ferulic acid encapsulated in chitosan–gelatin films after electron beam irradiation. Radiat Phys Chem. 118:81–86. doi:10.1016/j.radphyschem.2015.01.035.
  • Benbettaïeb N, Chambin O, Assifaoui A, Al-Assaf S, Karbowiak T, Debeaufort F. 2016b. Release of coumarin incorporated into chitosan-gelatin irradiated films. Food Hydrocoll. 56:266–76. doi:10.1016/j.foodhyd.2015.12.026.
  • Benbettaïeb N, Chambin O, Karbowiak T, Debeaufort F. 2016c. Release behavior of quercetin from chitosan-fish gelatin edible films influenced by electron beam irradiation. Food Control. 66:315–19. doi:10.1016/j.foodcont.2016.02.027.
  • Benbettaïeb N, Karbowiak T, Brachais CH, Debeaufort F. 2015. Coupling tyrosol, quercetin or ferulic acid and electron beam irradiation to cross-link chitosan–gelatin films: a structure–function approach. Eur Polym J. 67:113–27. doi:10.1016/j.eurpolymj.2015.03.060.
  • Bertolo MRV, Martins VCA, Horn MM, Brenelli LB, Plepis AMG. 2020. Rheological and antioxidant properties of chitosan/gelatin-based materials functionalized by pomegranate peel extract. Carbohydr Polym. 228:115386. doi:10.1016/j.carbpol.2019.115386.
  • Bonilla J, Poloni T, Lourenço RV, Sobral PJA. 2018. Antioxidant potential of eugenol and ginger essential oils with gelatin/chitosan films. Food Biosci. 23:107–14. doi:10.1016/j.fbio.2018.03.007.
  • Bonilla J, Sobral PJA. 2016. Investigation of the physicochemical, antimicrobial and antioxidant properties of gelatin-chitosan edible film mixed with plant ethanolic extracts. Food Biosci. 16:17–25. doi:10.1016/j.fbio.2016.07.003.
  • Bonilla J, Sobral PJA. 2019. Gelatin‐chitosan edible film activated with Boldo extract for improving microbiological and antioxidant stability of sliced Prato cheese. Int J Food Sci Technol. 54(5):1617–24. doi:10.1111/ijfs.14032.
  • Bonilla J, Sobral PJA. 2020. Disintegrability under composting conditions of films based on gelatin, chitosan and/or sodium caseinate containing boldo-of-Chile leafs extract. Int J Biol Macromol. 151:178–85. doi:10.1016/j.ijbiomac.2020.02.051.
  • Cabib E. 1991. Differential inhibition of chitin synthetases 1 and 2 from Saccharomyces cerevisiae by polyoxin D and nikkomycins. Antimicrob Agents Chemother. 35(1):170–73. doi:10.1128/AAC.35.1.170.
  • Cai L, Shi H, Cao A, Jia J. 2019. Characterization of gelatin/chitosan ploymer films integrated with docosahexaenoic acids fabricated by different methods. Sci Rep. 9(1):8375. doi:10.1038/s41598-019-44807-x.
  • Cao N, Fu Y, He J. 2007. Mechanical properties of gelatin films cross-linked, respectively, by ferulic acid and tannin acid. Food Hydrocoll. 21(4):575–84. doi:10.1016/j.foodhyd.2006.07.001.
  • Cao W, Yan J, Liu C, Zhang J, Wang H, Gao X, Yan H, Niu B, Li W. 2020. Preparation and characterization of catechol-grafted chitosan/gelatin/modified chitosan-AgNP blend films. Carbohydr Polym. 247:116643. doi:10.1016/j.carbpol.2020.116643.
  • Cao Q, Zhang Y, Chen W, Meng X, Liu B. 2018. Hydrophobicity and physicochemical properties of agarose film as affected by chitosan addition. Int J Biol Macromol. 106:1307–13. doi:10.1016/j.ijbiomac.2017.08.134.
  • Cardoso GP, Andrade MPD, Rodrigues LM, Massingue AA, Fontes PR, Ramos ADLS, Ramos EM. 2019. Retail display of beef steaks coated with monolayer and bilayer chitosan-gelatin composites. Meat Sci. 152:20–30. doi:10.1016/j.meatsci.2019.02.009.
  • Cardoso GP, Dutra MP, Fontes PR, Ramos ADLS, Gomide LADM, Ramos EM. 2016. Selection of a chitosan gelatin-based edible coating for color preservation of beef in retail display. Meat Sci. 114:85–94. doi:10.1016/j.meatsci.2015.12.012.
  • Cheow CS, Norizah MS, Kyaw ZY, Howell NK. 2007. Preparation and characterisation of gelatins from the skins of sin croaker (Johnius dussumieri) and shortfin scad (Decapterus macrosoma). Food Chem. 101(1):386–91. doi:10.1016/j.foodchem.2006.01.046.
  • Chiou BS, Avena-Bustillos RJ, Bechtel PJ, Jafri H, Narayan R, Imam SH, Glenn GM, Orts WJ. 2008. Cold water fish gelatin films: effects of cross-linking on thermal, mechanical, barrier, and biodegradation properties. Eur Polym J. 44(11):3748–53. doi:10.1016/j.eurpolymj.2008.08.011.
  • Cho S-H, Jahncke ML, Chin K-B, Eun J-B. 2006. The effect of processing conditions on the properties of gelatin from skate (Raja Kenojei) skins. Food Hydrocoll. 20(6):810–16. doi:10.1016/j.foodhyd.2005.08.002.
  • de Carvalho RA, Grosso CRF. 2004. Characterization of gelatin based films modified with transglutaminase, glyoxal and formaldehyde. Food Hydrocoll. 18(5):717–26. http://agris.fao.org/agris-search/search.do?recordID=US201301031386.
  • Denavi GA, Pérez-Mateos M, Añón MC, Montero P, Mauri AN, Gómez-Guillén MC. 2009. Structural and functional properties of soy protein isolate and cod gelatin blend films. Food Hydrocoll. 23(8):2094–101. doi:10.1016/j.foodhyd.2009.03.007.
  • Dutta PK, Tripathi S, Mehrotra GK, Dutta J. 2009. Perspectives for chitosan based antimicrobial films in food applications. Food Chem. 114(4):1173–82. http://agris.fao.org/agris-search/search.do?recordID=US201301598335.
  • Eysturskarð J, Haug IJ, Elharfaoui N, Djabourov M, Draget KI. 2009. Structural and mechanical properties of fish gelatin as a function of extraction conditions. Food Hydrocoll. 23(7):1702–11. doi:10.1016/j.foodhyd.2009.01.008.
  • Fakhreddin SH, Rezaei M, Zandi M, Ghavi FF. 2013. Preparation and functional properties of fish gelatin-chitosan blend edible films. Food Chem. 136(3–4):1490–95. doi:10.1016/j.foodchem.2012.09.081.
  • Fang Y, Tung MA, Britt IJ, Yada S, Dalgleish DG. 2002. Tensile and barrier properties of edible films made from whey proteins. J Food Sci. 67(1):188–93. doi:10.1111/j.1365-2621.2002.tb11381.x.
  • Farajzadeh F, Motamedzadegan A, Shahidi S-A, Hamzeh S. 2016. The effect of chitosan-gelatin coating on the quality of shrimp (Litopenaeus vannamei) under refrigerated condition. Food Control. 67:163–70. doi:10.1016/j.foodcont.2016.02.040.
  • Feng X, Bansal N, Yang H. 2016. Fish gelatin combined with chitosan coating inhibits myofibril degradation of golden pomfret (Trachinotus blochii) fillet during cold storage. Food Chem. 200:283–92. doi:10.1016/j.foodchem.2016.01.030.
  • García MA, Martino MN, Zaritzky NE. 2001. Composite starch-based coatings applied to strawberries (Fragaria ananassa). Die Nahrung. 45(4):267–72. doi:10.1002/1521-3803(20010801)45:4<267::AID-FOOD267>3.0.CO;2-3.
  • Garcia MA, Pinotti A, Martino MN, Zaritzky NE. 2004. Characterization of composite hydrocolloid films. Carbohydr Polym. 56(3):339–45. http://agris.fao.org/agris-search/search.do?recordID=US201300979318.
  • Gómez Estaca J, Gómez Guillén MC, Fernández Martín F, Montero García P. 2011. Effects of gelatin origin, bovine-hide and tuna-skin, on the properties of compound gelatin-chitosan films. doi:10.1016/j.foodhyd.2011.01.007.
  • Gómez-Estaca J, Montero P, Fernández-Martín F, Alemán A, Gómez-Guillén MC. 2009. Physical and chemical properties of tuna-skin and bovine-hide gelatin films with added aqueous oregano and rosemary extracts. Food Hydrocoll. 23(5):1334–41. http://agris.fao.org/agris-search/search.do?recordID=US201301598320.
  • Gómez-Guillén MC, Pérez-Mateos M, Gómez-Estaca J, López-Caballero E, Giménez B, Montero P. 2009. Fish gelatin: a renewable material for developing active biodegradable films. Trends Food Sci Technol. 20(1):3–16. doi:10.1016/j.tifs.2008.10.002.
  • Gómez-Guillén MC, Turnay J, Fernández-Dı́az MD, Ulmo N, Lizarbe MA, Montero P. 2002. Structural and physical properties of gelatin extracted from different marine species: A comparative study. Food Hydrocoll. 16(1):25–34. doi:10.1016/S0268-005X(01)00035-2.
  • Haghighi H, Biard S, Bigi F, De Leo R, Bedin E, Pfeifer F, Siesler HW, Licciardello F, Pulvirenti A. 2019. Comprehensive characterization of active chitosan-gelatin blend films enriched with different essential oils. Food Hydrocoll. 95:33–42. doi:10.1016/j.foodhyd.2019.04.019.
  • Halim ALA, Kamari A, Phillip E. 2018. Chitosan, gelatin and methylcellulose films incorporated with tannic acid for food packaging. Int J Biol Macromol. 120:1119–26.10.1016/j.ijbiomac.2018.08.169
  • Hari N, Francis S, Rajendran Nair AG, Nair AJ. 2018. Synthesis, characterization and biological evaluation of chitosan film incorporated with β-Carotene loaded starch nanocrystals. Food Packag Shelf Life. 16:69–76. doi:10.1016/j.fpsl.2018.02.003.
  • Haug IJ, Draget KI, Smidsrød O. 2004. Physical and rheological properties of fish gelatin compared to mammalian gelatin. Food Hydrocoll. 18(2):203–13. doi:10.1016/S0268-005X(03)00065-1.
  • Hosseini SF, Rezaei M, Zandi M, Farahmandghavi F. 2015. Fabrication of bio-nanocomposite films based on fish gelatin reinforced with chitosan nanoparticles. Food Hydrocoll. 44:172–82. doi:10.1016/j.foodhyd.2014.09.004.
  • Hosseini SF, Rezaei M, Zandi M, Farahmandghavi F. 2016. Development of bioactive fish gelatin/chitosan nanoparticles composite films with antimicrobial properties. Food Chem. 194:1266–74. doi:10.1016/j.foodchem.2015.09.004.
  • Jakhar JK, Reddy AD, Maharia S, Devi M, Reddy GVS, Venkateshwarlu G. 2012. Characterization of fish gelatin from Blackspotted Croaker. 7.
  • Jeevithan E, Jeya Shakila R, Varatharajakumar A, Jeyasekaran G, Sukumar D. 2013. Physico-functional and mechanical properties of chitosan and calcium salts incorporated fish gelatin scaffolds. Int J Biol Macromol. 60:262–67. doi:10.1016/j.ijbiomac.2013.06.012.
  • Jeon Y-J, Kamil JYVA, Shahidi F. 2002. Chitosan as an edible invisible film for quality preservation of herring and Atlantic cod. J Agric Food Chem. 50(18):5167–78. doi:10.1021/jf011693l.
  • Jiang MK, Liu SY, Xin D, Wang YF. 2010. Physical properties and internal microstructures of films made from catfish skin gelatin and triacetin mixtures. Food Hydrocoll. 24(1):105–10. doi:10.1016/j.foodhyd.2009.08.011.
  • Kakaei S, Shahbazi Y. 2016. Effect of chitosan-gelatin film incorporated with ethanolic red grape seed extract and Ziziphora clinopodioides essential oil on survival of Listeria monocytogenes and chemical, microbial and sensory properties of minced trout fillet. LWT - Food Sci Technol. 72:432–38. doi:10.1016/j.lwt.2016.05.021.
  • Kester JJ, Fennema OR. 1986. Edible films and coatings: A review. Food Technology. http://agris.fao.org/agris-search/search.do?recordID=US8836195.
  • Kołodziejska I, Piotrowska B. 2007. The water vapour permeability, mechanical properties and solubility of fish gelatin–chitosan films modified with transglutaminase or 1-ethyl-3-(3-dimethylaminopropyl) carbodiimide (EDC) and plasticized with glycerol. Food Chem. 103(2):295–300. doi:10.1016/j.foodchem.2006.07.049.
  • Kołodziejska I, Piotrowska B, Bulge M, Tylingo R. 2006. Effect of transglutaminase and 1-ethyl-3-(3-dimethylaminopropyl) carbodiimide on the solubility of fish gelatin–chitosan films. Carbohydr Polym. 65(4):404–09. doi:10.1016/j.carbpol.2006.01.025.
  • Kumar S, Mudai A, Roy B, Basumatary IB, Mukherjee A, Dutta J. 2020. Biodegradable hybrid nanocomposite of chitosan/gelatin and green synthesized zinc oxide nanoparticles for food packaging. Foods. 9(9):1143. doi:10.3390/foods9091143.
  • Kumar S, Shukla A, Baul PP, Mitra A, Halder D. 2018. Biodegradable hybrid nanocomposites of chitosan/gelatin and silver nanoparticles for active food packaging applications. Food Packag Shelf Life. 16:178–84. doi:10.1016/j.fpsl.2018.03.008.
  • Liu Z, Ge X, Lu Y, Dong S, Zhao Y, Zeng M. 2012. Effects of chitosan molecular weight and degree of deacetylation on the properties of gelatine-based films. Food Hydrocoll. 26(1):311–17. http://agris.fao.org/agris-search/search.do?recordID=US201500064673.
  • Liu Z, Lv M, Li F, Zeng M. 2016. Development, characterization, and antimicrobial activity of gelatin/chitosan/ZnO nanoparticle composite films. J Aquat Food Prod Technol. 25(7):1056–63. doi:10.1080/10498850.2014.923081.
  • Martins J, Cerqueira M, Vicente A. 2012. Influence of α-tocopherol on physicochemical properties of chitosan-based films. Food Hydrocolloids. 27(1):220–27. doi:10.1016/j.foodhyd.2011.06.011.
  • Miller KS, Krochta JM. 1997. Oxygen and aroma barrier properties of edible films: A review. Trends Food Sci Technol. 8(7):228–237. doi:10.1016/S0924-2244(97)01051-0.
  • Mi F-L, Shyu S-S, Wu Y-B, Lee S-T, Shyong J-Y, Huang R-N. 2001. Fabrication and characterization of a sponge-like asymmetric chitosan membrane as a wound dressing. Biomaterials. 22(2):165–73. doi:10.1016/S0142-9612(00)00167-8.
  • Mohammadi R, Mohammadifar MA, Rouhi M, Kariminejad M, Mortazavian AM, Sadeghi E, Hasanvand S. 2018. Physico-mechanical and structural properties of eggshell membrane gelatin- chitosan blend edible films. Int J Biol Macromol. 107:406–12. doi:10.1016/j.ijbiomac.2017.09.003.
  • Özkahraman B, Tamahkar E, İ̇dil N, Kılıç Suloglu A, Perçin I. 2021. Evaluation of hyaluronic acid nanoparticle embedded chitosan–gelatin hydrogels for antibiotic release. Drug Dev Res. 82(2):241–50. doi:10.1002/ddr.21747.
  • Palma F, Michniak-Kohn B, Pérez-Correa JR, Hernandez E, Romañach RJ, Valenzuela LM. 2016. Near-infrared chemical imaging and its correlation with the mechanical properties of chitosan–gelatin edible films. Carbohydr Polym. 136:409–17. doi:10.1016/j.carbpol.2015.09.051.
  • Pereda M, Amica G, Marcovich NE. 2012. Development and characterization of edible chitosan/olive oil emulsion films. Carbohydr Polym. 87(2):1318–25. doi:10.1016/j.carbpol.2011.09.019.
  • Pereda M, Ponce AG, Marcovich NE, Ruseckaite RA, Martucci JF. 2011. Chitosan-gelatin composites and bi-layer films with potential antimicrobial activity. Food Hydrocoll. 25(5):1372–81. doi:10.1016/j.foodhyd.2011.01.001.
  • Pérez-Córdoba LJ, Norton IT, Batchelor HK, Gkatzionis K, Spyropoulos F, Sobral PJA. 2018. Physico-chemical, antimicrobial and antioxidant properties of gelatin-chitosan based films loaded with nanoemulsions encapsulating active compounds. Food Hydrocoll. 79:544–59. doi:10.1016/j.foodhyd.2017.12.012.
  • Pranoto Y, Min Lee C, Jin Park H. 2007. Characterizations of fish gelatin films added with gellan and κ-carrageenan. LWT - Food Sci Technol. 40(5):766–774. doi:10.1016/j.lwt.2006.04.005.
  • Qiao C, Ma X, Zhang J, Yao J. 2017. Molecular interactions in gelatin/chitosan composite films. Food Chem. 235:45–50. doi:10.1016/j.foodchem.2017.05.045.
  • Ramziia S, Ma H, Yao Y, Wei K, Huang Y. 2018. Enhanced antioxidant activity of fish gelatin-chitosan edible films incorporated with procyanidin. J Appl Polym Sci. 135(10):45781. doi:10.1002/app.45781.
  • Rezaee M, Askari G, EmamDjomeh Z, Salami M. 2018. Effect of organic additives on physiochemical properties and anti-oxidant release from chitosan-gelatin composite films to fatty food simulant. Int J Biol Macromol. 114:844–50. doi:10.1016/j.ijbiomac.2018.03.122.
  • Riaz A, Lagnika C, Abdin M, Hashim MM, Ahmed W. 2020. Preparation and characterization of chitosan/gelatin-based active food packaging films containing apple peel nanoparticles. J Polym Environ. 28(2):411–20. doi:10.1007/s10924-019-01619-4.
  • Rivero S, García M, Pinotti A. 2010. Correlations between structural, barrier, thermal and mechanical properties of plasticized gelatin films. Innov Food Sci Emerg Technol. 11(2):369–375. doi:10.1016/j.ifset.2009.07.005.
  • Rui L, Xie M, Hu B, Zhou L, Yin D, Zeng X. 2017. A comparative study on chitosan/gelatin composite films with conjugated or incorporated gallic acid. Carbohydr Polym. 173:473–81. doi:10.1016/j.carbpol.2017.05.072.
  • Saki J, Khodanazary A, Hosseini SM. 2018. Effect of chitosan-gelatin composite and bi-layer coating combined with pomegranate peel extract on quality properties of Belanger’s Croaker (Johnius Belangerii) stored in refrigerator. J Aquat Food Prod Technol. 27(5):557–67. doi:10.1080/10498850.2018.1461161.
  • Sakthiguru N, Sithique MA. 2020. Fabrication of bioinspired chitosan/gelatin/allantoin biocomposite film for wound dressing application. Int J Biol Macromol. 152:873–83. doi:10.1016/j.ijbiomac.2020.02.289.
  • Sarmast E, Fallah AA, Habibian Dehkordi S, Rafieian-Kopaei M. 2019. Impact of glazing based on chitosan-gelatin incorporated with Persian lime (Citrus latifolia) peel essential oil on quality of rainbow trout fillets stored at superchilled condition. Int J Biol Macromol. 136:316–23. doi:10.1016/j.ijbiomac.2019.06.087.
  • Shahidi F, Ambigaipalan P. 2019. Bioactives from seafood processing by-products. In: Encyclopedia of food chemistry. Elsevier. p. 280–88. doi:10.1016/B978-0-08-100596-5.22353-6.
  • Shanmugasundaram N, Ravichandran P, Neelakanta Reddy P, Ramamurty N, Pal S, Panduranga Rao K. 2001. Collagen–chitosan polymeric scaffolds for the in vitro culture of human epidermoid carcinoma cells. Biomaterials. 22(14):1943–51. doi:10.1016/S0142-9612(00)00220-9.
  • Sionkowska A, Wisniewski M, Skopinska J, Kennedy CJ, Wess TJ. 2004. Molecular interactions in collagen and chitosan blends. Biomaterials. 25(5):795–801. doi:10.1016/S0142-9612(03)00595-7.
  • Soliman EA, Furuta M. 2014. Influence of phase behavior and miscibility on mechanical, thermal and micro-structure of soluble starch-gelatin thermoplastic biodegradable blend films. Food Nutr Sci. 05(11):1040–55. doi:10.4236/fns.2014.511115.
  • Spanneberg R, Osswald F, Kolesov I, Anton W, Radusch H-J, Glomb MA. 2010. Model studies on chemical and textural modifications in gelatin films by reaction with Glyoxal and Glycolaldehyde. J Agric Food Chem. 58(6):3580–85. doi:10.1021/jf9039827.
  • Staroszczyk H, Sztuka K, Wolska J, Wojtasz-Pająk A, Kołodziejska I. 2014. Interactions of fish gelatin and chitosan in uncrosslinked and crosslinked with EDC films: FT-IR study. Spectrochim Acta A Mol Biomol Spectrosc. 117:707–12. doi:10.1016/j.saa.2013.09.044.
  • Swatschek D, Schatton W, Müller WEG, Kreuter J. 2002. Microparticles derived from marine sponge collagen (SCMPs): preparation, characterization and suitability for dermal delivery of all-trans retinol. Eur J Pharm Biopharm. 54(2):125–33. doi:10.1016/S0939-6411(02)00046-2.
  • Tharanathan RN. 2003. Biodegradable films and composite coatings: past, present and future. Trends Food Sci Technol. 14(3):71–78. doi:10.1016/S0924-2244(02)00280-7.
  • Uranga J, Puertas AI, Etxabide A, Dueñas MT, Guerrero P, de la Caba K. 2019. Citric acid-incorporated fish gelatin/chitosan composite films. Food Hydrocoll. 86:95–103. doi:10.1016/j.foodhyd.2018.02.018.
  • Vedovatto S, Facchini JC, Batista RK, Paim TC, Lionzo MIZ, Wink MR. 2020. Development of chitosan, gelatin and liposome film and analysis of its biocompatibility in vitro. Int J Biol Macromol. 160:750–57. doi:10.1016/j.ijbiomac.2020.05.229.
  • Wang Y, Guo X, Pan R, Han D, Chen T, Geng Z, Xiong Y, Chen Y. 2015. Electrodeposition of chitosan/gelatin/nanosilver: A new method for constructing biopolymer/nanoparticle composite films with conductivity and antibacterial activity. Mater Sci Eng, C. 53:222–28. doi:10.1016/j.msec.2015.04.031.
  • Xiao C, Liu H, Lu Y, Zhang L. 2001. Blend films from sodium alginate and gelatin solutions. J Macromol Sci Part A. 38(3):317–28. doi:10.1081/MA-100103352.
  • Xu D, Chen T, Liu Y. 2020. The physical properties, antioxidant and antimicrobial activity of chitosan–gelatin edible films incorporated with the extract from hop plant. Polym Bull. 78(7):3607–24. doi:10.1007/s00289-020-03294-1.
  • Yeddes W, Djebali K, Aidi Wannes W, Horchani-Naifer K, Hammami M, Younes I, Saidani Tounsi M. 2020. Gelatin-chitosan-pectin films incorporated with rosemary essential oil: optimized formulation using mixture design and response surface methodology. Int J Biol Macromol. 154:92–103. doi:10.1016/j.ijbiomac.2020.03.092
  • Yin Y, Li Z, Sun Y, Yao K. 2005. A preliminary study on chitosan/gelatin polyelectrolyte complex formation. J Mater Sci. 40(17):4649–52. doi:10.1007/s10853-005-3929-9.
  • Zhang X, Do MD, Casey P, Sulistio A, Qiao GG, Lundin L, Lillford P, Kosaraju S. 2010. Chemical cross-linking gelatin with natural phenolic compounds as studied by high-resolution NMR spectroscopy. Biomacromolecules. 11(4):1125–32. doi:10.1021/bm1001284.
  • Zhang H, Liang Y, Li X, Kang H. 2020. Effect of chitosan-gelatin coating containing nano-encapsulated tarragon essential oil on the preservation of pork slices. Meat Sci. 166:108137. doi:10.1016/j.meatsci.2020.108137.

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