Influence of packaging on the conservation of quality attributes of lamb’s-ear leaves during storage
DOI:
https://doi.org/10.33448/rsd-v10i6.13410Keywords:
Stachys bysantina L.; Bioactive compounds; Natural antioxidants; DPPH; ABTS.Abstract
The objective of this study was to evaluate the influence of the packaging system on the useful life and post-harvest quality of lamb’s-ear leaves (Stachys byzantina L.). The sanitized sheets were packaged in four different packaging systems: (A) rigid polyethylene (PET), (B) PET together with ethylene-absorbing sachet, (C) PET wrapped with high barrier plastic film, and (D) PET together with an ethylene-absorbing sachet and wrapped with high barrier plastic film and stored at 7 ° C. Samples for physical-chemical analysis, bioactive compounds and antioxidant activity were removed before storing and at 5, 10 and 15 days of storage. The leaves contained in packages C showed less loss of mass and in system D they showed greater preservation of color attributes (L *, C * and °H). The packaging did not influence the contents of bioactive compounds, which showed higher values at 5 days of storage. The leaves stored in A, B, C and D showed high antioxidant capacity until the 15th day of storage. It was concluded that the quality atrib\utes of the lamb’s-ear leaves were kept in all packaging systems throughout 15 days of cold storage. The contents of bioactive compounds and antioxidant activity showed the highest values up to 5 days of storage at 7 ºC. Thus, considering the economic aspects and practicality in handling, packaging A is the most suitable for refrigerated storage (7 ºC) and commercialization of fresh lamb’s-ear leaves up to 15 days of storage.
References
AOAC - Association of Official Analytical Chemistry (2016). Official methods of analysis of the Association of Official Analytical Chemistry. (20th ed.) Gaithersburg Maryland: AOAC.
Arruda, M. C., Jacomino, A. P., Kluge, R. A. & Azzolini, M. (2003). Temperatura de armazenamento e tipo de corte para melão minimamente processado. Revista Brasileira de Fruticultura, 25(1), 74-76. doi.org/10.1590/S0100-29452003000100022
Berli, K. M. C., Vilas Boas, E. V. B. & Picoli, R. H. (2004). Influência de sanificantes nas características, microbiológicas, físicas e físico-químicas de cebola (Allium cepa L.) minimamente processada. Ciência e Agrotecnologia, 28(1), 107-112. doi.org/10.1590/S1413-70542004000100014
Brasil. Ministério da Agricultura, Pecuária e Abastecimento. (2010), “Hortaliças não-convencionais: (tradicionais)”, Brasília, MAPA/ ACS, p. 52, availableat: https://www.abcsem.com.br/docs/cartilha_hortalicas.pdf (accessed June 10, 2019).
Carvalho, J. C. S., Romoff, P., & Lannes, S. C. S. (2018). Improvement of nutritional and physicochemical proprieties of milk chocolates enriched with kale (Brassica olereacea var. acephala) and grape (Vitis vinífera). Food Science Technology, 38(3), 551-560. doi.org/10.1590/fst.15018
Chitarra, M. I. F. & Chitarra, A. B. (2005). Pós-colheita de frutas e hortaliças: fisiologia e manuseio. Lavras, Ed. UFLA.
Chu, Y.-H., Chang, C.-L, & Hsu, H.-F. (2000). Flavonoid content of several vegetables and their antioxidant activity. Journal of the Science of Food and Agriculture, 80(5), 561-566. doi.org/10.1002/(SICI)1097-0010(200004)80:5%3C561::AID-JSFA574%3E3.0.CO;2-%23
Concellón, A., Añón, M. C. & Chaves, A. R. (2007). Effect of low temperature storage on physical and physiological characteristics of eggplant fruit (Solanum melongena L). Food Science and Technology, Oxford, 40(3), 411-419. doi.org/10.1016/j.lwt.2006.02.004
Della Lucia, C. M., Campos, F. M., Mata, G. M. S. C. & Sant’Ana, H. M. P. (2008). Controle de perdas de carotenóides em hortaliças preparadas em unidade de alimentação e nutrição hospitalar. Ciência & Saúde Coletiva, 13(5), 1627-1636. doi.org/10.1590/S1413-81232008000500026
Francis, F. J. (1982). Analysis of anthocyanins. In: P. Markakis (Ed.), Anthocyanins as food colors (pp. 181-207). Academic Press (Ed.)
Gobbo-Neto, L. & Lopes, N. P. (2007). Plantas Medicinais: Fatores de influência no conteúdo de metabólitos secundários. Química Nova, 30(2), 374-381. doi.org/10.1590/S0100-40422007000200026
Gorinstein, S., Cvikrova, M., Machackova, I., Haruenkit, R., Park, Y. S., Jung, S. T., Yamamoto, K., Ayala, A. L. M., Katrich, E. & Trakhtenberg, S. (2004). Characterization of antioxidant compounds in Jaffa sweeties and white grapefruits. Food Chemistry, 84(4), 503-510. doi.org/10.1016/S0308-8146(03)00127-4
Gocan, M., Andreica, I., Lazar,V., Rosza,S., Bumb, S. F. B. & Rodica, S. (2016). Food quality of some vegetables and fruits juices. Lucrari Stiintifice, 59(2), 177-181. http://web.a.ebscohost.com/ehost/pdfviewer/pdfviewer?vid=7&sid=587092a9-7a3a-4fa4-b473-66c6e269b58a%40sessionmgr4006
Grune, T., Lietz, G., Palou, A., Ross, A. C., Stahl, W., Tang, G., Thurnham, D., Yin, S. A. & Biesalski, H. K. (2010). β-carotene is an important vitamin A source for humans. The Journal of Nutrition, 140(12), 2268-2285. doi.org/10.3945/jn.109.119024
Imahori, Y., Suzuki, Y., Uemura, K., Kishioka, I., Fijiwara, H., Ueda, Y. & Chachin, K. (2004). Physiological and quality responses of Chinese chive leaves to low oxygen atmosphere. Postharvest Biology and Technology, 31(3), 295-303. doi.org/10.1016/j.postharvbio.2003.09.004
Izumi, H., Watada, A. E., Ko, N. P. & Douglas, W. (1996). Controlled atmosphere storage of carrot slices, sticks and shreds. Postharvest Biology and Technology, 9(2), 165-172. doi.org/10.1016/S0925-5214(96)00045-2
Jardina, L. L., Sanches, A. G., Moreira, E. G. M., Cordeiro, C. A. M. & Júnior, P. V. A. (2017). Comportamento fisiológico pós-colheita de cultivares de rúcula minimamente processadas. Revista Trópica – Ciências Agrárias e Biológicas, 10(01), 50-64.
Kays, S. J. (1997). Postharvest physiology of perishable plant products. Athens, Exon Press AVI.
Kinupp, V. F. & Lorenzi, H. (2014). Plantas Alimentícias não convencionais (PANC) no Brasil: guia de identificação, aspectos nutricionais e receitas ilustradas (1st ed.). São Paulo, Instituto Plantarum.
Kluge, R. A., Geerdink, G. M., Tezotto-Uliana, J. V., Guassi, S. A. D., Zorzeto, T. Q., Sasaki, F. F. C. & Mello, S. C. (2014). Qualidade de pimentões amarelos minimamente processados tratados com antioxidantes. Semina: Ciências Agrárias, 35(2), 801-812. doi:10.5433/1679-0359.2014v35n2p801
Mantilla, S. P. S., Mano, S. B., Vital, H. de C. & Franco, R. M. (2010). Atmosfera modificada na conservação de alimentos. Revista Acadêmica de Ciências Agrárias e Ambiental, 8(4), 437-448. http://dx.doi.org/10.7213/cienciaanimal.v8i4.11000
MAPA. Ministério da Agricultura, Pecuária e Abastecimento. (2010), “Manual de hortaliças não-convencionais”, Brasília,Mapa/ACS, pp. 92.
Mcguire, R. D. (1992). Reporting of objective color measurements. Horticulture Science, 27(12), 1254-1255. doi.org/10.21273/HORTSCI.27.12.1254
Mendes, T. D. C., Santos, J. S. dos, Vieira, L. M., Cardoso, D. S. C. P. & Finger, L. F. (2011). Influência do dano físico na fisiologia pós-colheita de folhas de taioba. Bragantia, 70(3), 682-687. doi.org/10.1590/S0006-87052011000300026
Menezes, C. C., Borges, S. V., Cirillo, M. A., Ferrua, F. Q., Oliveira, L. F. & Mesquita, K. S. (2009). Caracterização física e físico-química de diferentes formulações de doce de goiaba (Psidium guajava L.) da cultivar Pedro Sato. Ciência e Tecnologia de Alimentos, 29(3), 618-625. doi.org/10.1590/S0101-20612009000300025
Miguel, A. C. A., Abrahão, C., Dias, J. R. P. S. & Spoto, M. H. F. (2010). Modificações sensoriais em abacaxi ‘Pérola’ armazenado à temperatura ambiente. Ciência e Tecnologia de Alimentos, 30(1), 20-23. doi.org/10.1590/S0101-20612009005000001
Nasser, M. D., Mariano-Nasser, F. A. C., Borges, C. V., Kovalski, T. R., Furlaneto, K. A. & Vieites, R. L. (2018). The use ofactive modified atmosphere for the conservation of minimally processed eggplant. Horticultura Brasileira, 36(4), 439-445. doi.org/10.1590/s0102-053620180403
Neres, C. R. L., Vieira, G., Diniz, E. R., da Mota, W. F. & Puiati, M. (2004). Conservação do jiló em função da temperatura de armazenamento e do filme de polietileno de baixa densidade. Bragantia, 63(3), 431-438. doi.org/10.1590/S0006-87052004000300013
Neves, L. C., Alencar, S. M. & Carpes, S. T. (2009). Determination of antioxidant activity and content of phenolic compounds and flavonoids of samples of apicultural pollen from Apis mellifera. Brazilian Journal of Food Technology, VII BMCFB, 107-110.
Pech, C., Joblin, C. & Boissel, P. (2002). The profiles of the aromatic infrared bands explained with molecular carriers. Astronomy and Astrophysics, 388(2), 639-651. doi.org/10.1051/0004-6361:20020416
Pirbalouti, A. G. & Mohammadi, M. (2013). Phytochemical composition of the essential oil of different populations of Stachys lavandulifolia Vahl. Asian Pacific Journal of Tropical Biomedicine, 3(2), 123-128. doi: 10.1016/S2221-1691(13)60036-2
R core team R: Uma linguagem e ambiente para computação estatística. R Fundação para Computação Estatística, Viena, Áustria. URL https://www.R-project.org/. 2017.
Rodriguez-Amaya, D. B. A. (2001). A guide to carotenoid analysis in foods. Washington, ILSE Press. http://beauty-review.nl/wp-content/uploads/2014/11/A-guide-to-carotenoid-analysis-in-foods.pdf
Russo, V. C., Daiuto, E. R., Santos, B. L., Lozano, M. G.,Vieites, R. L. & Vieira, M. R. S. (2012). Qualidade de abóbora minimamente processada armazenada em atmosfera modificada ativa. Semina: Ciências Agrárias, 33(3), 1071-1084. doi.org/10.5433/1679-0359.2012v33n3p1071
Salimi, F., Shafaghat, A., Sahebalzamani H. & Habibzadeh, H. (2011). Analysis and comparison of chemical composition of essential oils from Stachy byzantina C. Koch. wet and dried. Archives of Applied Science Research, 3(5), 381-383.
Santos, J. S. & Oliveira, M. B. P. P. (2012). Revisão: alimentos frescos minimamente processados embalados em atmosfera modificada. Brazilian Journal of Food Technology, 15(1), 1-14. doi.org/10.1590/S1981-67232012000100001
Silva, J. M., Ongarelli, M. das G., Aguila, J. S. del, Sasaki, F. F. & Kluge, R. A. (2007). Métodos de determinação de clorofila em alface e cebolinha minimamente processadas. Revista Iberoamericana de Tecnología Postcosecha, 8(2), 53-59. http://www.redalyc.org/pdf/813/81311221001.pdf
Souza, H. R. S. de, Carvalho, M. G. de, Santos, A. M., Ferreira, I. M. & Silva, A. M. O. (2018). Compostos bioativos e estabilidade de geleia mista de umbu (Spondias tuberosa arr. c.) e mangaba (Hancornia speciosa g.). Revista Brasileira de Higiene e Sanidade Animal, 12(2), 236-248. http://dx.doi.org/10.5935/1981-2965.20180023
Stagnari, F., Galieni, A., D’egidio, S., Pagnani, G., Ficcadenti, N. & Pisante, M. (2018). Defoliation and S nutrition on radish: growth, polyphenols and antiradical activity. Horticultura Brasileira, 36(3), 313-319. https://doi.org/10.1590/s0102-053620180305
Viana, M. M. S., Carlos, L. A., Silva, E. C., Pereira, S. M. F., Oliveira, D. B. & Assis, M. L. V. (2015). Composição fitoquímica e potencial antioxidante de hortaliças não convencionais. Horticultura Brasileira, 33(4), 504-509. https://doi.org/10.1590/S0102-053620150000400016
Vieites, R. L., Daiuto, E. R. & Fumes, J. G. F. (2012). Capacidade antioxidante e qualidade pós-colheita de abacate ‘Fuerte’. Revista Brasileira de Fruticultura, 34(2), 336-348, https://doi.org/10.1590/S0100-29452012000200005
Wang, R., Wang, L., Yuan, S., Li, Q., Pan, H., Cao, J. & Jiang, W. (2018). Compositional modifications of bioactive compounds and changes in the edible quality and antioxidant activity of ‘Friar’ plum fruit during flesh reddening at intermediate temperatures. Food Chemistry, 254, 26-35. https://doi.org/10.1016/j.foodchem.2018.01.169
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Copyright (c) 2021 Gabriela Conceição de Oliveira e Silva; Antonio Henrique de Souza; Marinalva Woods Pedrosa; Ernani Clarete da Silva; Ana Paula Coelho Madeira Silva; Washington Azevedo da Silva; Lanamar de Almeida Carlos
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