Thong, C. C., Teo, D. C. L., & Ng, C. K. (2016). Application of polyvinyl alcohol (PVA) in cement-based composite materials: A review of its engineering properties and microstructure behavior. Construction and Building Materials, 107, 172-180. doi:10.1016/j.conbuildmat.2015.12.188
Li, R., Wang, Y., Xu, J., Ahmed, S., & Liu, Y. (2019). Preparation and Characterization of Ultrasound Treated Polyvinyl Alcohol/Chitosan/DMC Antimicrobial Films. Coatings, 9(9), 582. doi:10.3390/coatings9090582
Muppalaneni, srinath. (2013). Polyvinyl Alcohol in Medicine and Pharmacy: A Perspective. Journal of Developing Drugs, 02(03). doi:10.4172/2329-6631.1000112
[+]
Thong, C. C., Teo, D. C. L., & Ng, C. K. (2016). Application of polyvinyl alcohol (PVA) in cement-based composite materials: A review of its engineering properties and microstructure behavior. Construction and Building Materials, 107, 172-180. doi:10.1016/j.conbuildmat.2015.12.188
Li, R., Wang, Y., Xu, J., Ahmed, S., & Liu, Y. (2019). Preparation and Characterization of Ultrasound Treated Polyvinyl Alcohol/Chitosan/DMC Antimicrobial Films. Coatings, 9(9), 582. doi:10.3390/coatings9090582
Muppalaneni, srinath. (2013). Polyvinyl Alcohol in Medicine and Pharmacy: A Perspective. Journal of Developing Drugs, 02(03). doi:10.4172/2329-6631.1000112
Cano, A., Fortunati, E., Cháfer, M., Kenny, J. M., Chiralt, A., & González-Martínez, C. (2015). Properties and ageing behaviour of pea starch films as affected by blend with poly(vinyl alcohol). Food Hydrocolloids, 48, 84-93. doi:10.1016/j.foodhyd.2015.01.008
Bakkali, F., Averbeck, S., Averbeck, D., & Idaomar, M. (2008). Biological effects of essential oils – A review. Food and Chemical Toxicology, 46(2), 446-475. doi:10.1016/j.fct.2007.09.106
De Vincenzi, M., Stammati, A., De Vincenzi, A., & Silano, M. (2004). Constituents of aromatic plants: carvacrol. Fitoterapia, 75(7-8), 801-804. doi:10.1016/j.fitote.2004.05.002
Veldhuizen, E. J. A., Tjeerdsma-van Bokhoven, J. L. M., Zweijtzer, C., Burt, S. A., & Haagsman, H. P. (2006). Structural Requirements for the Antimicrobial Activity of Carvacrol. Journal of Agricultural and Food Chemistry, 54(5), 1874-1879. doi:10.1021/jf052564y
Gursul, S., Karabulut, I., & Durmaz, G. (2019). Antioxidant efficacy of thymol and carvacrol in microencapsulated walnut oil triacylglycerols. Food Chemistry, 278, 805-810. doi:10.1016/j.foodchem.2018.11.134
Atarés, L., & Chiralt, A. (2016). Essential oils as additives in biodegradable films and coatings for active food packaging. Trends in Food Science & Technology, 48, 51-62. doi:10.1016/j.tifs.2015.12.001
Cofelice, Cuomo, & Chiralt. (2019). Alginate Films Encapsulating Lemongrass Essential Oil as Affected by Spray Calcium Application. Colloids and Interfaces, 3(3), 58. doi:10.3390/colloids3030058
Requena, R., Vargas, M., & Chiralt, A. (2017). Release kinetics of carvacrol and eugenol from poly(hydroxybutyrate-co-hydroxyvalerate) (PHBV) films for food packaging applications. European Polymer Journal, 92, 185-193. doi:10.1016/j.eurpolymj.2017.05.008
Sánchez-González, L., Chiralt, A., González-Martínez, C., & Cháfer, M. (2011). Effect of essential oils on properties of film forming emulsions and films based on hydroxypropylmethylcellulose and chitosan. Journal of Food Engineering, 105(2), 246-253. doi:10.1016/j.jfoodeng.2011.02.028
Sapper, M., Wilcaso, P., Santamarina, M. P., Roselló, J., & Chiralt, A. (2018). Antifungal and functional properties of starch-gellan films containing thyme (Thymus zygis) essential oil. Food Control, 92, 505-515. doi:10.1016/j.foodcont.2018.05.004
Asbahani, A. E., Miladi, K., Badri, W., Sala, M., Addi, E. H. A., Casabianca, H., … Elaissari, A. (2015). Essential oils: From extraction to encapsulation. International Journal of Pharmaceutics, 483(1-2), 220-243. doi:10.1016/j.ijpharm.2014.12.069
Callegarin, F., Quezada Gallo, J.-A., Debeaufort, F., & Voilley, A. (1997). Lipids and biopackaging. Journal of the American Oil Chemists’ Society, 74(10), 1183-1192. doi:10.1007/s11746-997-0044-x
Coimbra, M., Isacchi, B., van Bloois, L., Torano, J. S., Ket, A., Wu, X., … Schiffelers, R. M. (2011). Improving solubility and chemical stability of natural compounds for medicinal use by incorporation into liposomes. International Journal of Pharmaceutics, 416(2), 433-442. doi:10.1016/j.ijpharm.2011.01.056
Sebaaly, C., Greige-Gerges, H., Stainmesse, S., Fessi, H., & Charcosset, C. (2016). Effect of composition, hydrogenation of phospholipids and lyophilization on the characteristics of eugenol-loaded liposomes prepared by ethanol injection method. Food Bioscience, 15, 1-10. doi:10.1016/j.fbio.2016.04.005
Sebaaly, C., Charcosset, C., Stainmesse, S., Fessi, H., & Greige-Gerges, H. (2016). Clove essential oil-in-cyclodextrin-in-liposomes in the aqueous and lyophilized states: From laboratory to large scale using a membrane contactor. Carbohydrate Polymers, 138, 75-85. doi:10.1016/j.carbpol.2015.11.053
Carvalho, I. T., Estevinho, B. N., & Santos, L. (2015). Application of microencapsulated essential oils in cosmetic and personal healthcare products - a review. International Journal of Cosmetic Science, 38(2), 109-119. doi:10.1111/ics.12232
Hammoud, Z., Gharib, R., Fourmentin, S., Elaissari, A., & Greige-Gerges, H. (2019). New findings on the incorporation of essential oil components into liposomes composed of lipoid S100 and cholesterol. International Journal of Pharmaceutics, 561, 161-170. doi:10.1016/j.ijpharm.2019.02.022
Valencia-Sullca, C., Jiménez, M., Jiménez, A., Atarés, L., Vargas, M., & Chiralt, A. (2016). Influence of liposome encapsulated essential oils on properties of chitosan films. Polymer International, 65(8), 979-987. doi:10.1002/pi.5143
Cano, A., Jiménez, A., Cháfer, M., Gónzalez, C., & Chiralt, A. (2014). Effect of amylose:amylopectin ratio and rice bran addition on starch films properties. Carbohydrate Polymers, 111, 543-555. doi:10.1016/j.carbpol.2014.04.075
Andreuccetti, C., Carvalho, R. A., Galicia-García, T., Martínez-Bustos, F., & Grosso, C. R. F. (2011). Effect of surfactants on the functional properties of gelatin-based edible films. Journal of Food Engineering, 103(2), 129-136. doi:10.1016/j.jfoodeng.2010.10.007
Perdones, Á., Chiralt, A., & Vargas, M. (2016). Properties of film-forming dispersions and films based on chitosan containing basil or thyme essential oil. Food Hydrocolloids, 57, 271-279. doi:10.1016/j.foodhyd.2016.02.006
Limpan, N., Prodpran, T., Benjakul, S., & Prasarpran, S. (2012). Influences of degree of hydrolysis and molecular weight of poly(vinyl alcohol) (PVA) on properties of fish myofibrillar protein/PVA blend films. Food Hydrocolloids, 29(1), 226-233. doi:10.1016/j.foodhyd.2012.03.007
Reiner, G. N., Fraceto, L. F., Paula, E. de, Perillo, M. A., & García, D. A. (2013). Effects of Gabaergic Phenols on Phospholipid Bilayers as Evaluated by <sup>1</sup>H-NMR. Journal of Biomaterials and Nanobiotechnology, 04(03), 28-34. doi:10.4236/jbnb.2013.43a004
Reiner, G. N., Perillo, M. A., & García, D. A. (2013). Effects of propofol and other GABAergic phenols on membrane molecular organization. Colloids and Surfaces B: Biointerfaces, 101, 61-67. doi:10.1016/j.colsurfb.2012.06.004
Andrade, J., González-Martínez, C., & Chiralt, A. (2020). Effect of carvacrol in the properties of films based on poly (vinyl alcohol) with different molecular characteristics. Polymer Degradation and Stability, 179, 109282. doi:10.1016/j.polymdegradstab.2020.109282
Talón, E., Vargas, M., Chiralt, A., & González-Martínez, C. (2019). Antioxidant starch-based films with encapsulated eugenol. Application to sunflower oil preservation. LWT, 113, 108290. doi:10.1016/j.lwt.2019.108290
Abral, H., Hartono, A., Hafizulhaq, F., Handayani, D., Sugiarti, E., & Pradipta, O. (2019). Characterization of PVA/cassava starch biocomposites fabricated with and without sonication using bacterial cellulose fiber loadings. Carbohydrate Polymers, 206, 593-601. doi:10.1016/j.carbpol.2018.11.054
Altan, A., Aytac, Z., & Uyar, T. (2018). Carvacrol loaded electrospun fibrous films from zein and poly(lactic acid) for active food packaging. Food Hydrocolloids, 81, 48-59. doi:10.1016/j.foodhyd.2018.02.028
Buendía−Moreno, L., Sánchez−Martínez, M. J., Antolinos, V., Ros−Chumillas, M., Navarro−Segura, L., Soto−Jover, S., … López−Gómez, A. (2020). Active cardboard box with a coating including essential oils entrapped within cyclodextrins and/or halloysite nanotubes. A case study for fresh tomato storage. Food Control, 107, 106763. doi:10.1016/j.foodcont.2019.106763
Neira, L. M., Martucci, J. F., Stejskal, N., & Ruseckaite, R. A. (2019). Time-dependent evolution of properties of fish gelatin edible films enriched with carvacrol during storage. Food Hydrocolloids, 94, 304-310. doi:10.1016/j.foodhyd.2019.03.020
Trindade, G. G. G., Thrivikraman, G., Menezes, P. P., França, C. M., Lima, B. S., Carvalho, Y. M. B. G., … Araújo, A. A. S. (2019). Carvacrol/β-cyclodextrin inclusion complex inhibits cell proliferation and migration of prostate cancer cells. Food and Chemical Toxicology, 125, 198-209. doi:10.1016/j.fct.2019.01.003
Taladrid, D., Marín, D., Alemán, A., Álvarez-Acero, I., Montero, P., & Gómez-Guillén, M. C. (2017). Effect of chemical composition and sonication procedure on properties of food-grade soy lecithin liposomes with added glycerol. Food Research International, 100, 541-550. doi:10.1016/j.foodres.2017.07.052
Pinilla, C. M. B., Thys, R. C. S., & Brandelli, A. (2019). Antifungal properties of phosphatidylcholine-oleic acid liposomes encapsulating garlic against environmental fungal in wheat bread. International Journal of Food Microbiology, 293, 72-78. doi:10.1016/j.ijfoodmicro.2019.01.006
Cristancho, D., Zhou, Y., Cooper, R., Huitink, D., Aksoy, F., Liu, Z., … Seminario, J. M. (2013). Degradation of polyvinyl alcohol under mechanothermal stretching. Journal of Molecular Modeling, 19(8), 3245-3253. doi:10.1007/s00894-013-1828-6
Cai, H., Dave, V., Gross, R. A., & McCarthy, S. P. (1996). Effects of physical aging, crystallinity, and orientation on the enzymatic degradation of poly(lactic acid). Journal of Polymer Science Part B: Polymer Physics, 34(16), 2701-2708. doi:10.1002/(sici)1099-0488(19961130)34:16<2701::aid-polb2>3.0.co;2-s
McHugh, T. H., & Krochta, J. M. (1994). Sorbitol- vs Glycerol-Plasticized Whey Protein Edible Films: Integrated Oxygen Permeability and Tensile Property Evaluation. Journal of Agricultural and Food Chemistry, 42(4), 841-845. doi:10.1021/jf00040a001
Restrepo, I., Medina, C., Meruane, V., Akbari-Fakhrabadi, A., Flores, P., & Rodríguez-Llamazares, S. (2018). The effect of molecular weight and hydrolysis degree of poly(vinyl alcohol)(PVA) on the thermal and mechanical properties of poly(lactic acid)/PVA blends. Polímeros, 28(2), 169-177. doi:10.1590/0104-1428.03117
Tongnuanchan, P., Benjakul, S., & Prodpran, T. (2012). Properties and antioxidant activity of fish skin gelatin film incorporated with citrus essential oils. Food Chemistry, 134(3), 1571-1579. doi:10.1016/j.foodchem.2012.03.094
Atarés, L., De Jesús, C., Talens, P., & Chiralt, A. (2010). Characterization of SPI-based edible films incorporated with cinnamon or ginger essential oils. Journal of Food Engineering, 99(3), 384-391. doi:10.1016/j.jfoodeng.2010.03.004
Ojagh, S. M., Rezaei, M., Razavi, S. H., & Hosseini, S. M. H. (2010). Effect of chitosan coatings enriched with cinnamon oil on the quality of refrigerated rainbow trout. Food Chemistry, 120(1), 193-198. doi:10.1016/j.foodchem.2009.10.006
Jiménez, A., Sánchez-González, L., Desobry, S., Chiralt, A., & Tehrany, E. A. (2014). Influence of nanoliposomes incorporation on properties of film forming dispersions and films based on corn starch and sodium caseinate. Food Hydrocolloids, 35, 159-169. doi:10.1016/j.foodhyd.2013.05.006
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