Global migration of non-volatile substances and specific migration of €-caprolactam in polyamide 6 casings with Ag+-Zn++ ions

Authors

DOI:

https://doi.org/10.5281/zenodo.13994642

Keywords:

polyamide 6, global migration, ɛ-caprolactam, active packaging, food safety, food simulants

Abstract

Food packaging plays a key role in preserving the quality and safety of meat products. In this context, packaging materials, such as polyamide casings, must comply with migration regulations that ensure food safety. This study evaluated the total migration of non-volatile substances and the specific migration of the monomer ɛ-caprolactam in polyamide 6 casings used for meat products, with and without the addition of silver (Ag+) and zinc (Zn++) ions. Food simulants were used to represent real processing and storage conditions of sausages, applying total immersion, pouch, and cell. The results indicated that the global migration of the casings, both under control conditions and with additives, complied with international regulations (limits of 50-60 mg/kg). Furthermore, the specific migration of ɛ-caprolactam was below the regulatory limit (15 mg/kg), with no significant differences between casings with and without additives. The highest values were obtained with the ethanol (95%) simulant.

References

AIMPLAS. Instituto Tecnológico del Plástico. (2006). Envase activo e inteligente. Fecha de consulta: enero 2008. Disponible en: www.observatorioplastico.com

Alamri, M.S., Qasem, A.A.A., Mohamed, A.A., Hussain, S., Ibraheem, M.A., Shamlan, G., Alqah, H.A., & Qasha, A.S. (2021). Food packaging's materials: A food safety perspective. Saudi Journal of Biological Sciences, 28(8), 4490-4499. https://doi.org/10.1016/j.sjbs.2021.04.047

Ariosti, A. (2011). Seminario Internacional de Envases y Embalaje. Universidad Católica de Argentina.

Ariosti, S., Catalá, R., & Gavara, R. (2010). Interactions between water and EVOH food packaging films. Food Science and Technology International, 6(2), 159-164. https://doi.org/10.1177/1082013209349930

Brody, A.L., Strupinsky, E.R., & Kline, L.R. (2012). Active packaging for food applications. Technomic Publishing Co. Inc.

Catalá, R., & Gavara, R. (2011). Nuevos envases. De la protección pasiva a la defensa activa de alimentos envasados. Arbor, CLXVIII(661), 109-127.

Catalá, R., Nerin, C., & Gavara, R. (2012). Aplicaciones de envases activos. CSIC, 4, 34-45.

Gavara, R., Auras, R., & Catalá, R. (2011). A new technique to prevent the main post-harvest diseases in berries during storage: Inclusion complexes beta-cyclodextrin-hexanal. International Journal of Food Microbiology, 118(2), 164-172. https://doi.org/10.1016/j.ijfoodmicro.2007.07.019

Grob, R. (2007). Properties or volatility of plastics. Exposure assessment of chemicals from packaging materials. Repositorio UCP.

Helmroth, E., Rijk, R., Dekker, M., & Jongen, W. (2002). Predictive modelling of migration from packaging materials into food products for regulatory purposes. Trends in Food Science & Technology, 13(3), 102-109. https://doi.org/10.1016/S0924-2244(02)00031-6

Lagaron, J.M., Yam, K.L., & Piergiovanni, L. (2006). Food packaging science and technology. CABI Publishing.

López-Rubio, A., Almenar, E., Hernández-Muñoz, P., Lagaron, J.M., Catalá, R., & Gavara, R. (2006). Overview of active polymer-based packaging technologies for food applications. Food Reviews International, 20(4), 357-387. https://doi.org/10.1080/87559120601021709

Mercosur. (2012). Límites de migración global y específica para materiales en contacto con alimentos. Resolución 834/1.

Osváth, Z., Szőke, A., Pásztor, S., Szarka, G., Závoczki, L.B., & Iván, B. (2020). Post-polymerization heat effect in the production of polyamide 6 by bulk quasiliving anionic ring-opening polymerization of ε-caprolactam with industrial components: A green processing technique. Processes, 8(7), 856. https://doi.org/10.3390/pr8070856

Patiño, J.H., Henríquez, L.E., Restrepo, D.A., Lantero, M.I., & García, M.A. (2022). Influence of polyamide composite casings with silver–zinc crystals on the quality of beef and chicken sausages during their storage. Journal of Food Science and Technology, 59, 75-85. https://doi.org/10.1007/s13197-021-04983-z

Patiño, J., Henríquez, L., Mendoza, M.P., Lantero, M.I., & García, M. (2014). Evaluation of polyamide composite casings with silver-zinc crystals for sausage packaging. Food Packaging and Shelf Life, 1, 3-9. https://doi.org/10.1016/j.fpsl.2014.09.003

Pocas, D., Salafranca, J., & Nerin, C. (2011). Determination of the antioxidant capacity of active food packagings by in situ gas-phase hydroxyl radical generation and high-performance liquid chromatography-fluorescence detection. Journal of Chromatography A, 1178(1-2), 126-133. https://doi.org/10.1016/j.chroma.2007.11.066

Rardniyom, T., & Bruhn, C. (2008). Food labelling: Consumer needs. In: Ralph, I. J. (Ed.), Food labelling. Woodhead Publishing Limited.

Sablani, S.S., Bhunia, K., & Rahman, M.S. (2020). Food-packaging interactions. In Handbook of Food Preservation (pp. 923-942). CRC Press.

Sendon, D., & Schaich, K.M. (2005). Metals and lipid oxidation - Contemporary issues. Lipids, 27(3), 209-218. https://doi.org/10.1007/s11745-005-1491-3

Song, H.J., Chang, Y., Lyu, J.S., Yon, M.Y., Lee, H.S., Park, S.J., Choi, J.C., Kim, M., & Han, J. (2018). Migration study of caprolactam from polyamide 6 sheets into food simulants. Food Science and Biotechnology, 27(6), 1685-1689. https://doi.org/10.1007/s10068-018-0403-4

Stoffers, E.C., Suloff, J.E., Marcy, J.E., Blakistone, B.A., Duncan, S.E., Long, T.E., & O'Keefe, S.F. (2005). Sorption behavior of selected aldehyde-scavenging agents in poly(ethylene terephthalate) blends. Journal of Food Science, 68(6), 2028-2033. https://doi.org/10.1111/j.1365-2621.2003.tb10188.x

Zigoura, L., & Pascal, M. (2011). Active, controlled and intelligent packaging market set to soar. Plastics Additives & Compounding, May/June.

Published

2023-07-15

Data Availability Statement

The datasets used and/or analyzed during the current study are available from the corresponding author on reasonable request.

Issue

Section

Original articles

How to Cite

Patiño, J. H., Henríquez, L. E., & Lantero, M. I. (2023). Global migration of non-volatile substances and specific migration of €-caprolactam in polyamide 6 casings with Ag+-Zn++ ions. Journal of Food Science and Gastronomy, 1(2), 1-6. https://doi.org/10.5281/zenodo.13994642

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