Migration of Phthalates and Bisphenol A from Polyethylene Terephthalate Bottles into Beer During Storage at Controlled Temperatures
Abstract
1. Introduction
2. Materials and Methods
2.1. Sample Preparation
2.2. Determination of Phthalates
2.3. Determination of Bisphenol A
2.4. Statistical Analysis
3. Results and Discussion
Sample | Storage Time | Original Extract (°Plato) | Alcohol (mL/100 mL) | pH | Color (EBC) | Bitterness (BU) | Polyphenols (mg/L) |
---|---|---|---|---|---|---|---|
P1 | 0 days | 10.97 | 4.4 | 4.3 | 6.4 i | 22 a | 84 d |
P2 | 14 days | 10.97 | 4.4 | 4.3 | 7.2 h | 22 a | 89 c |
P3 | 10.97 | 4.4 | 4.3 | 7.3 h | 22 a | 90 bc | |
P4 | 1 month | 10.97 | 4.4 | 4.3 | 7.8 g | 21 b | 90 bc |
P5 | 10.97 | 4.4 | 4.3 | 8.0 f | 22 a | 90 bc | |
P6 | 2 months | 10.97 | 4.4 | 4.3 | 8.4 e | 20 c | 91 ab |
P7 | 10.97 | 4.4 | 4.3 | 8.9 d | 20 c | 91 ab | |
P8 | 3 months | 10.97 | 4.4 | 4.3 | 9.5 c | 20 c | 91 ab |
P9 | 10.97 | 4.4 | 4.3 | 11.0 b | 19 d | 92 a | |
P10 | 4 months | 10.97 | 4.4 | 4.3 | 10.0 c | 19 d | 91 |
P11 | 10.97 | 4.4 | 4.3 | 12.0 a | 19 d | 92 a |
4. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
References
- Giuliani, A.; Zuccarini, M.; Cichelli, A.; Khan, H.; Reale, M. Critical Review on the Presence of Phthalates in Food and Evidence of Their Biological Impact. Int. J. Environ. Res. Public Health 2020, 17, 5655. [Google Scholar] [CrossRef]
- Bisphenol A (BPA). Available online: https://www.niehs.nih.gov/health/topics/agents/sya-bpa (accessed on 31 January 2024).
- Holadová, K.; Prokůpková, G.; Hajšlová, J.; Poustka, J. Headspace solid-phase microextraction of phthalic acid esters from vegetable oil employing solvent-based matrix modification. Anal. Chim. Acta 2007, 582, 24–33. [Google Scholar] [CrossRef] [PubMed]
- Iftikhar, A.; Qaiser, Z.; Sarfraz, W.; Ejaz, U.; Aqeel, M.; Rizvi, Z.F.; Khalid, N. Understanding the leaching of plastic additives and subsequent risks to ecosystems. Water Emerg. Contam. Nanplast. 2024, 3, 5. [Google Scholar] [CrossRef]
- Heudorf, U.; Mersch-Sundermann, V.; Angerer, J. Phthalates: Toxicology and exposure. Int. J. Hyg. Environ. Health 2007, 210, 623–634. [Google Scholar] [CrossRef] [PubMed]
- Schettler, T. Human exposure to phthalates via consumer products. Int. J. Androl. 2006, 29, 134–139. [Google Scholar] [CrossRef]
- Sharma, V.; Jain, D.; Rai, A.; Kumari, P.; Nagar, V.; Kaur, A.; Singh, A.; Verma, R.; Pandey, H.; Singh, S.M. Toxicological assessment and concentration analysis of Bisphenol A in food grade plastics: A systematic review. Mater. Today Proc. 2023, 95, 18–25. [Google Scholar] [CrossRef]
- Rudel, R.A.; Perovich, L.J. Endocrine disrupting chemicals in indoor and outdoor air. Atmos. Environ. 2009, 43, 170–181. [Google Scholar] [CrossRef]
- US Environmental Protection Agency. Phthalates Action Plan. Revised 03/14/2012. Available online: https://19january2017snapshot.epa.gov/sites/production/files/2015-09/documents/phthalates_actionplan_revised_2012-03-14.pdf (accessed on 1 November 2022).
- Jurica, K.; Uršulin-Trstenjak, N.; Vukić Lušić, D.; Lušić, D.; Smit, Z. Exposure to phthalates and their presence in alcoholic beverages. Arh. Hig. Rada Toksikol. 2013, 64, 317–325. [Google Scholar] [CrossRef]
- Cao, X.I. Phthalate esters in foods: Sources, occurrence and analytical methods. Compr. Rev. Food Sci. Food Saf. 2010, 9, 21–43. [Google Scholar] [CrossRef]
- Chatonnet, P.; Boutou, S.; Plana, A. Contamination of wines and spirits by phthalates: Types of contaminants present, contamination sources and means of prevention. Food Addit. Contam. Part A 2014, 31, 1605–1615. [Google Scholar] [CrossRef]
- Jurica, K.; Brcic, K.I.; Lasic, D.; Vukic, L.D.; Anic, J.S.; Lusic, D. Determination of phthalates in plum spirit and their occurrence during plum spirit production. Acta Aliment. 2016, 45, 141–148. [Google Scholar] [CrossRef]
- Pellegrino Vidal, R.; Ibañez, G.; Escandar, G. A green method for the quantification of plastics-derived endocrine disruptors in beverages by chemometrics-assisted liquid chromatography with simultaneous diode array and fluorescent detection. Talanta 2016, 159, 336–343. [Google Scholar] [CrossRef]
- Bogdanović, D.S.; Anđelković, T.D.; Kostić, I.S.; Kocić, G.M. Simultaneous Determination of Five Phthalates in White Spirits Using Liquid-Liquid Extraction Followed by Gas Chromatography-Mass Spectrometry. Adv. Technol. 2019, 8, 59–64. [Google Scholar] [CrossRef]
- Horák, T.; Olšovská, J. Phthalates in Beverages—A Review. Kvas. Prum. 2020, 66, 264–269. [Google Scholar] [CrossRef]
- Sendón, R.; Sanches-Silva, A.; Bustos, J.; Martín, P.; Martínez, N.; Cirugeda, M. Detection of migration of phthalates from agglomerated cork stoppers using HPLC-MS/MS. J. Sep. Sci. 2012, 35, 1319–1326. [Google Scholar] [CrossRef]
- Fasano, E.; Bono-Blay, F.; Cirillo, T.; Montuori, P.; Lacorte, S. Migration of phthalates, alkylphenols, bisphenol a and di(2-ethylhexyl) adipate from food packaging. Food Control. 2012, 27, 132–138. [Google Scholar] [CrossRef]
- Bisphenol-A. Available online: https://www.healthandenvironment.org/docs/ToxipediaBPAPageArchive.pdf (accessed on 3 April 2024).
- Groshart, C.P.; Okkerman, P.C.; Pijnenburg, A.M.C.M. Chemical Study on Bisphenol A; Ministerie van Verkeer en Waterstaa, Report: RIKZ/2001.027 1; RWS: Bengaluru, Karnataka, 2001. [Google Scholar]
- Gagula, G.; Mastanjević, K.; Mastanjević, K.; Krstanović, V.; Horvat, D.; Magdić, D. The influence of packaging material on volatile compounds of pale lager beer. Food Packag. Shelf Life 2020, 24, 100496. [Google Scholar] [CrossRef]
- Hunt, P.K. Los Microplásticos en el Agua Potable “No Parecen Representar un Riesgo para la Salud”, dice la OMS. 2019. Available online: https://cnnespanol.cnn.com/2019/08/22/los-microplasticos-en-el-agua-potable-no-parecen-representar-un-riesgo-para-la-salud-dice-la-oms#:~:text=Ciencia%20Tech%20Video-,Los%20micropl%C3%A1sticos%20en%20el%20agua%20potable%20%22no%20parecen%20representar%20un,la%20salud%22%2C%20dice%20la%20OMS&text=(CNN)%20%E2%80%93%20Puede%20que%20est%C3%A9n,un%20riesgo%20para%20nuestra%20salud (accessed on 6 April 2022).
- Kosuth, M.; Mason, S.A.; Wattenberg, E.V. Anthropogenic contamination of tap water, beer, and sea salt. PLoS ONE 2018, 13, e0194970. [Google Scholar] [CrossRef]
- Rist, S.; Carney Almroth, B.; Hartmann, N.B.; Karlsson, T.M. A critical perspective on early communications concerning human health aspects of microplastics. Sci. Total Environ. 2018, 626, 720–726. [Google Scholar] [CrossRef]
- Wright, S.L.; Kelly, F.J. Plastic and Human Health: A Micro Issue? Environ. Sci. Technol. 2017, 51, 6634–6647. [Google Scholar] [CrossRef]
- Habschied, K.; Mastanjević, K.; Šibalić, M.; Krstanović, V.; Galić, V. A Survey on Detection of Plastic-Related Chemicals in Beer Packaged in PET Using FT-IR Technology. Beverages 2022, 8, 73. [Google Scholar] [CrossRef]
- What’s the Difference Among Microplastics, Phthalates, BPA, and PFAS? Available online: https://www.consumerreports.org/toxic-chemicals-substances/microplastics-phthalates-bpa-pfas-a1059022044/ (accessed on 22 July 2025).
- Nurlatifah; Nakata, H. Monitoring of polymer type and plastic additives in coating film of beer cans from 16 countries. Sci. Rep. 2021, 11, 22115. [Google Scholar] [CrossRef]
- European Commission (EC). Commission Regulation (EU) No 10/2011 of 14 January 2011 on Plastic Materials and Articles Intended to Come into Contact with Food. Available online: http://eur-lex.europa.eu/legal-content/EN/ALL/?uri=CELEX%3A32011R0010 (accessed on 7 December 2022).
- Bisphenol A in Food Is a Health Risk. Available online: https://www.efsa.europa.eu/en/news/bisphenol-food-health-risk (accessed on 1 January 2025).
- Re-Evaluation of the Risks to Public Health Related to the Presence of Bisphenol A (BPA) in Foodstuffs. Available online: https://www.efsa.europa.eu/en/efsajournal/pub/6857 (accessed on 1 January 2025).
- Bičak, D. BiH Najveći Uvoznik Piva, Zbog Krize Svuda Raste Prodaja u PET Ambalaži. Available online: https://www.poslovni.hr/svijet-i-regija/bih-najveci-uvoznik-piva-zbog-krize-svuda-raste-prodaja-u-pet-ambalazi-254488 (accessed on 1 November 2022).
- Habschied, K.; Kartalović, B.; Lazić, D.; Krstanović, V.; Mastanjević, K. Survey on Phthalates in Beer Packaged in Aluminum Cans, PET and Glass Bottles. Fermentation 2023, 9, 125. [Google Scholar] [CrossRef]
- Kartalović, B.; Vranešević, J.; Petrović, J.; Đurđević, B.; Ratajac, R. Detekcija ostataka mikroplastike—Razvoj metode za ftalate u medu. Arh. Vet. Med. 2021, 14, 19–33. [Google Scholar]
- Bamforth, C.W. Handbook of Alcoholic Beverages Series: Beer a Quality Perspective; Elsevier: Burlington, MA, USA, 2009. [Google Scholar]
- Koren, D.; Hegyesné Vecseri, B.; Kun-Farkas, G.; Urbin, Á.; Nyitrai, Á.; Sipos, L. How to Objectively Determine the Color of Beer? J. Food Sci. Technol. 2020, 57, 1183–1189. [Google Scholar] [CrossRef]
- Vanderhaegen, B.; Neven, H.; Verachtert, H.; Derdelinckx, G. The chemistry of beer aging—A critical review. Food Chem. 2006, 95, 357–381. [Google Scholar] [CrossRef]
- Cao, L.; Zhou, G.; Guo, P.; Li, Y. Influence of Pasteurising Intensity on Beer Flavour Stability. J. Inst. Brew. 2011, 117, 587–592. [Google Scholar] [CrossRef]
- Jongberg, S.; Andersen, M.L.; Lund, M.N. Characterisation of protein-polyphenol interactions in beer during forced aging. J. Inst. Brew. 2020, 126, 371–381. [Google Scholar] [CrossRef]
- Benc, D. Contamination of Malt with Phthalates. Master’s Thesis, University of Osijek, Osijek, Croatia, 30 September 2022. [Google Scholar]
- Pereira, C.; Cunha, S.C.; Fernandes, J.O. Commercial beers: A source of phthalates and di-ethylhexyl adipate. Food Chem. X 2023, 19, 100768. [Google Scholar] [CrossRef]
- Fan, Y.-Y.; Zheng, J.-L.; Ren, J.-H.; Luo, J.; Cui, X.-Y.; Ma, L.Q. Effects of storage temperature and duration on release of antimony and bisphenol a from polyethylene terephthalate drinking water bottles of China. Environ. Pollut. 2014, 192, 113–120. [Google Scholar] [CrossRef]
- Dreolin, N.; Aznar, M.; Moret, S.; Nerin, C. Development and validation of a LC–MS/MS method for the analysis of bisphenol a in polyethylene terephthalate. Food Chem. 2019, 274, 246–253. [Google Scholar] [CrossRef]
- Aneck-Hahn, N.H.; Van Zijl, M.C.; Swart, P.; Truebody, B.; Genthe, B.; Charmier, J.; Jager, C.D. Estrogenic activity, selected plasticizers and potential health risks associated with bottled water in South Africa. J. Water Health 2018, 16, 253–262. [Google Scholar] [CrossRef]
Sample | Temperature (°C) | Time |
---|---|---|
P1 | / | / |
P2 | 4 | 14 days |
P3 | 20 | |
P4 | 4 | 1 month |
P5 | 20 | |
P6 | 4 | 2 months |
P7 | 20 | |
P8 | 4 | 3 months |
P9 | 20 | |
P10 | 4 | 4 months |
P11 | 20 |
Dimethyl Phthalate | Diethyl Phthalate | Diisobutyl Phthalate | DBP | BBP | DEHP | Di-n-octyl Phthalate | Bisphenol A | |
---|---|---|---|---|---|---|---|---|
LOQ (µg/mL) | 0.0047 | 0.0010 | 0.0010 | 0.0010 | 0.0011 | 0.0011 | 0.0011 | 0.0011 |
LOD (µg/mL) | 0.0014 | 0.0003 | 0.0003 | 0.0003 | 0.0003 | 0.0003 | 0.0003 | 0.0003 |
R2 | 0.997 | 0.999 | 0.997 | 0.998 | 0.993 | 0.997 | 0.996 | 0.996 |
Sample | Diisobutyl Phthalate | DBP | DEHP | Diethyl Phthalate |
---|---|---|---|---|
Unit | µg/L ± SD | |||
P1 | 2.707 a ± 0.022 | 10.079 c ± 0.109 | 6.425 e ± 0.389 | 44.761 d ± 0.128 |
P2 | 2.249 b ± 0.015 | 7.709 f ± 0.035 | 5.705 g ± 0.560 | 34.021 e ± 0.268 |
P3 | 0.355 g ± 0.011 | 4.907 j ± 0.030 | 5.132 i ± 0.017 | 31.895 f ± 0.634 |
P4 | 1.293 e ± 0.112 | 9.452 d ± 0.210 | 21.852 c ± 0.784 | 51.549 c ± 0.568 |
P5 | 0.000 i ± 0.002 | 27.142 a ± 0.120 | 57.295 a ± 0.634 | 164.814 a ± 0.078 |
P6 | 1.788 d ± 0.017 | 6.514 i ± 0.003 | 5.479 h ± 0.278 | 30.644 g ± 0.082 |
P7 | 2.218 b ± 0.019 | 6.767 g ± 0.378 | 8.317 d ± 0.178 | 18.492 h ± 0.186 |
P8 | 1.922 c ± 0.020 | 9.321 e ± 0.014 | 5.465 h ± 0.345 | 18.315 h ± 0.176 |
P9 | 0.406 f ± 0.004 | 10.835 b ± 0.078 | 28.181 b ± 0.632 | 126.669 b ± 0.584 |
P10 | 0.115 h ± 0.005 | 3.936 k ± 0.026 | 4.765 j ± 0.127 | 30.632 g ± 0.146 |
P11 | 1.737 d ± 0.018 | 6.647 h ± 0.038 | 5.961 f ± 0.548 | 11.821 i ± 0.008 |
Sample | BPA µg/L ± SD |
---|---|
P1 | 0.020 i ± 0.003 |
P2 | 0.033 h ± 0.005 |
P3 | 0.029 g ± 0.012 |
P4 | 0.042 f ± 0.011 |
P5 | 0.060 d ± 0.019 |
P6 | 0.052 e ± 0.006 |
P7 | 0.061 d ± 0.003 |
P8 | 0.065 c ± 0.006 |
P9 | 0.066 bc ± 0.04 |
P10 | 0.068 b ± 0.017 |
P11 | 0.087 a ± 0.015 |
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Mastanjević, K.; Kartalović, B.; Kovačević, D.; Krstanović, V.; Habschied, K. Migration of Phthalates and Bisphenol A from Polyethylene Terephthalate Bottles into Beer During Storage at Controlled Temperatures. Foods 2025, 14, 2689. https://doi.org/10.3390/foods14152689
Mastanjević K, Kartalović B, Kovačević D, Krstanović V, Habschied K. Migration of Phthalates and Bisphenol A from Polyethylene Terephthalate Bottles into Beer During Storage at Controlled Temperatures. Foods. 2025; 14(15):2689. https://doi.org/10.3390/foods14152689
Chicago/Turabian StyleMastanjević, Krešimir, Brankica Kartalović, Dragan Kovačević, Vinko Krstanović, and Kristina Habschied. 2025. "Migration of Phthalates and Bisphenol A from Polyethylene Terephthalate Bottles into Beer During Storage at Controlled Temperatures" Foods 14, no. 15: 2689. https://doi.org/10.3390/foods14152689
APA StyleMastanjević, K., Kartalović, B., Kovačević, D., Krstanović, V., & Habschied, K. (2025). Migration of Phthalates and Bisphenol A from Polyethylene Terephthalate Bottles into Beer During Storage at Controlled Temperatures. Foods, 14(15), 2689. https://doi.org/10.3390/foods14152689