Free Access
Issue |
Fruits
Volume 71, Number 2, March-April 2016
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Page(s) | 79 - 85 | |
DOI | https://doi.org/10.1051/fruits/2015049 | |
Published online | 07 January 2016 |
- Campos C.A., Gerschenson L.N., Flores S.K., Development of edible films and coatings with antimicrobial activity, Food Bioproc. Technol. 4 (2011) 849–875. [CrossRef] [Google Scholar]
- Vargas M., Pastor C., Chiralt A., McClements J., González Martínez C., Recent advances in edible coatings for fresh and minimally processed fruits, Crit. Rev. Food Sci. Nutrit. 48 (2008) 496–511. [CrossRef] [Google Scholar]
- Chiabrando V., Giacalone G., Effect of different coatings in preventing deterioration and preserving the quality of fresh-cut nectarines (cv Big Top), J. Food 11 (2013) 285–292. [Google Scholar]
- Li H., Yu T., Effect of chitosan coating on incidence or brown rot, quality and physiological attributes for postharvest peach fruit, J. Sci. Food Agric. 81 (2001) 269–274. [CrossRef] [MathSciNet] [Google Scholar]
- Chien P.J., Sheu F., Yang F.H., Effects of edible chitosan coating on quality and shelf life of sliced mango fruit, J. Food Eng. 78 (2007) 225–229. [CrossRef] [Google Scholar]
- Devlieghere F., Vermeulen A., Debevere J., Chitosan, Antimicrobial activity, interactions with food components and applicability as a coating on fruit and vegetables, Food Microbiol. 21 (2009) 703–714. [CrossRef] [Google Scholar]
- Acevedo C.A., López D.A., Tapia M.J., Enrione J., Skurtys O., Pedreschi F., Brown D.I., Creixell W., Osorio F., Using RGB image processing for designating an alginate edible film, Food Bioproc. Technol. 5 (2012) 1511–1520. [CrossRef] [Google Scholar]
- Ferrari C.C., Sarantoulos C.I.G.L., Effect of osmotic dehydration and pectin edible coatings on quality and shelf life of fresh-cut melon, Food Bioproc. Technol. 6 (2013) 80–91. [CrossRef] [Google Scholar]
- Maftoonazad N., Ramaswamy H.S., Marcotte M., Shelflife extension of peaches through sodium alginate and methyl cellulose edible coatings, Int. J. Food Sci. Technol. 43 (2008) 951–957. [CrossRef] [Google Scholar]
- Olivas G.I., Mattinson D.S., Barbosa Cánovas G.V., Alginate coatings for preservation of minimally processed Gala apples, Post. Biol. Technol. 45 (2007) 89–96. [CrossRef] [Google Scholar]
- Rojas Grauü M.A., Tapia M.S., Rodríguez F.J., Carmona A., Martin Belloso O., Alginate and gellan-based edible coatings as carriers of antibrowning agents applied on fresh-cut Fuji apples, Food Hydrocol. 21 (2007) 118–127. [CrossRef] [Google Scholar]
- Oliveira M.A., Cereda M.P., Pós-colheita de pêssegos Prunus persica L. Bastsch revestidos com filmes a bvase de amido como alternativa à cera comercial. Ciênc. Tecnol. Aliment. 23 (2003) 28–33. [Google Scholar]
- Togrul H., Arslan N., Extending shelf-life of peach and pear by using CMC from sugar beet pulp cellulose as a hydrophilic polymer in emulsions. Food Hydrocolloid. 18 (2004) 215–226. [Google Scholar]
- Pizato S., Cortez-Vega W.R., Andreghetto De Souza J.T., Prentice-Hernandez C., Dellinghausen Borgen C., Effects of different edible coatings in physical, chemical and microbiological characteristics of minimally processed peaches Prunus persica l. Batsch. J. Food Saf. 33 (2013) 30–39. [CrossRef] [Google Scholar]
- Brasil I.M., Gomes C., Puerta-Gomez A., Castell-Perez M.E., Moreira R.G., Polysaccharide-based multilayered antimicrobial edible coating enhances quality of fresh-cut papaya. Food Sci. Technol. 1(2012) 39–45. [Google Scholar]
- Salvia-Trujillo L., Rojas-Graü M.A., Soliva-Fortuny R., Martín-Belloso O., Use of antimicrobial nanoemulsions as edible coatings: Impact on safety and quality attributes of fresh-cut Fuji apples. Post. Biol. Technol. 105 (2015) 8–16. [CrossRef] [Google Scholar]
- Duan J., Wu R., Strik B.C., Zhao Y., Effect of edible coatings on the quality of fresh blueberries (Duke and Elliott) under commercial storage conditions, Post. Biol. Technol. 59 (2011) 71–79. [Google Scholar]
- Poverenov E., Danino S., Horev B., Granit R., Vinokur Y., Rodov V., Layer-by-layer electrostatic deposition of edile coating on fresh-cut melon model: anticipated and unexpected effect of alginate-chitosan combination, Food Bioproc. Technol. 7 (2014) 1424–1432. [CrossRef] [Google Scholar]
- Bourne M.C., Textural evaluation of horticultural crops, HortSci. 15 (1980) 5–56. [Google Scholar]
- Chiabrando V., Giacalone G., Rolle L., Mechanical behavior and quality traits of highbush blueberry during postharvest storage, J. Sci. Food Agric. 89 (2009) 989–992. [CrossRef] [Google Scholar]
- Arias E., Gonzalez J., Lopez-Buesa P., Oria R., Optimization of processing of fresh-cut pear, J. Sci. Food Agric. 88 (2008) 1755–1763. [CrossRef] [Google Scholar]
- Soliva-Fortuny R.C., Grigelmo-Miguel N., Odrizola-Serrano I., Gorinstein S., Martin-Belloso O., Browning evaluation of ready-to-eat apples as affected by modified atmosphere packaging, J. Agric. Food Chem. 49 (2001) 3685–3690. [CrossRef] [PubMed] [Google Scholar]
- Kołodziejczyk K., Milala J., Sójka M., Kosmala M., Markowski J., Polyphenol oxidase activity in selected apple cultivars. J. Fruit Ornamental Plant. Res. 18 (2010) 51–61. [Google Scholar]
- Vanderzant C., Splittstoesser D.F., Compendium of methods for the microbiological examination of foods (3rd ed.) American Public Health Association (APHA), Washington, 1992, pp. 1219. [Google Scholar]
- ISO 21527. International Organization for Standardization Publications. Microbiology of food and animal feeding stuffs. Horizontal method for the enumeration of yeasts and moulds. www.iso.org (2008). [Google Scholar]
- Gorny J.R.A., Summary of CA and MA requirements and recommendations for the storage of fresh-cut (minimally processed) fruits and vegetables, On: 7th Int. Controlled Atmosphere Res. Conference, Davis, CA, July 13–18, 1997, 5, 30–66 . [Google Scholar]
- Lakakul R., Beaudry M.H.R.J., Modeling respiration of apple slices in modified-atmosphere packages, J. Food Sci. 64 (1999) 105–110. [CrossRef] [Google Scholar]
- Soliva-Fortuny R.C., Lluch M.A., Quiles A., Grigelmo-Miguel N., Martín-Belloso O., Evaluation of textural properties and microstructure during storage of minimally processed apples, J. Food Sci. 68 (2003) 312–317. [CrossRef] [Google Scholar]
- García M.A., Martino M.N., Zaritzky N.E., Starch-based coatings: effect on refrigerated strawberry (Fragaria ananassa) quality, J. Sci. Food Agric. 76 (1998) 411–420. [CrossRef] [Google Scholar]
- Moldão M.M., Beirão da Costa S.M., Beirão da Costa M.L., The effects of edible coatings on postharvest quality of the “Bravo de Esmolfe”apple, Eur. Food Res. Technol. 217 (2003) 325–328. [CrossRef] [Google Scholar]
- Kittur F.S., Saroja N., Haibibunnisa M.S., Tharanathan R.N., Polysaccharide-based composite coating formulations for shelf-life extension of fresh banana and mango, Eur. Food Res. Technol. 213 (2001) 306–311. [Google Scholar]
- Yaman O., Bayoindirli L., Effects of an edible coating and cold storage on shelf-life and quality of cherries, Lebnsm –Wiss. Und. Technol. 35 (2002) 146–150. [CrossRef] [Google Scholar]
- Kahn V., Latency properties of polyphenol oxidase in two avocado cultivars differing in their rate of browning. J. Food Sci. Agric. 28 (1977) 233–239. [CrossRef] [Google Scholar]
- Hernandez-Munoz P., Almenar E., Ocio M.J., Gavara R., Effect of calcium dips and chitosan coatings on postharvest life of strawberries (Fragaria × ananassa), Post. Biol. Technol. 39 (2006) 247–253. [CrossRef] [Google Scholar]
- Gonzalez-Aguilar G.A., Valenzuela-Soto E., Lizardi-Mendoza J., Goycoolea F., Martınez-Tellez M.A., Villegas-Ochoa M.A., Monroy-Garcia I.N., Ayala-Zavala J.F., Effect of chitosan coating in preventing deterioration and preserving the quality of fresh-cut papaya ‘Maradol’, J. Sci. Food Agric. 89 (2009) 15–23. [CrossRef] [Google Scholar]