Analytical testing strategy for identification and in silico toxicity assessment of non-intentionally added substances in repeatedly recycled flexible mono-plastic food contact material

IF 10.6 1区 农林科学 Q1 FOOD SCIENCE & TECHNOLOGY Food Packaging and Shelf Life Pub Date : 2025-03-01 Epub Date: 2025-02-12 DOI:10.1016/j.fpsl.2025.101456
Bina Bhattarai, Eva Bay Wedebye, Nikolai Georgiev Nikolov, Tommy Licht Cederberg, Lisbeth Krüger Jensen, Kit Granby, Gitte Alsing Pedersen
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Abstract

Polyethylene terephthalate (PET) is a polymer approved for recycling for food grade applications in the EU. Recycling PET for food grade applications is desirable from sustainability perspective; however, its safety assessment is a challenge due to the potential presence of different types of non-intentionally added substances (NIAS). Identification of NIAS is important for risk assessment and devising appropriate exposure limits. An analytical testing strategy based on high-resolution LC-MS has been presented and applied to food contact materials of virgin PET (vPET) and repeatedly recycled PET (rPET) produced using Starlinger Decon technology. We devised an analytical strategy using data-dependent acquisition technique and used InChI strings to identify the peaks with a high level of confidence. We identified 23 peaks in the samples by using the developed analytical testing strategy that were largely oligomers of different series and lengths, acids, and cyclic monomer. We semi-quantified the peaks and did not notice any statistically significant difference between vPET and repeatedly recycled PET samples. The identified substances were screened for potential Carcinogenicity, Mutagenicity and Reproductive toxicity (CMR); and for endocrine potential models of action represented as Estrogen, Androgen, Thyroid, Steroidogenic – and Retinoic acid (EATS-R) related modalities using the Danish quantitative structure activity relationship (QSAR) Database. The QSAR screening showed predicted flags for CMR and EATS-R for some of the substances. As the experimental information on the toxicity of PET oligomers is very limited, there is a need for in vitro testing, followed up with further testing depending on the findings, to perform hazard characterization.
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反复循环使用的柔性单塑料食品接触材料中非故意添加物质的鉴定和硅毒性评价的分析试验策略
聚对苯二甲酸乙二醇酯(PET)是一种在欧盟被批准用于食品级应用的聚合物。从可持续性的角度来看,回收PET用于食品级应用是可取的;然而,由于可能存在不同类型的非故意添加物质(NIAS),其安全性评估是一项挑战。识别NIAS对于风险评估和制定适当的暴露限值很重要。提出了一种基于高分辨率LC-MS的分析测试策略,并将其应用于Starlinger Decon技术生产的原生PET (vPET)和重复回收PET (rPET)食品接触材料。我们设计了一种使用数据依赖采集技术的分析策略,并使用InChI字符串以高置信度识别峰值。我们使用开发的分析测试策略在样品中鉴定了23个峰,这些峰主要是不同系列和长度、酸和环状单体的低聚物。我们对峰值进行了半量化,并没有注意到vPET和重复回收的PET样品之间有任何统计学上的显著差异。对鉴定出的物质进行潜在致癌性、诱变性和生殖毒性(CMR)筛查;以及使用丹麦定量结构活性关系(QSAR)数据库的雌激素、雄激素、甲状腺、类固醇和视黄酸(EATS-R)相关模式的内分泌潜在作用模型。QSAR筛选显示了一些物质的CMR和EATS-R的预测标志。由于关于PET低聚物毒性的实验信息非常有限,因此需要进行体外测试,并根据结果进行进一步测试,以进行危害表征。
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来源期刊
Food Packaging and Shelf Life
Food Packaging and Shelf Life Agricultural and Biological Sciences-Food Science
CiteScore
14.00
自引率
8.80%
发文量
214
审稿时长
70 days
期刊介绍: Food packaging is crucial for preserving food integrity throughout the distribution chain. It safeguards against contamination by physical, chemical, and biological agents, ensuring the safety and quality of processed foods. The evolution of novel food packaging, including modified atmosphere and active packaging, has extended shelf life, enhancing convenience for consumers. Shelf life, the duration a perishable item remains suitable for sale, use, or consumption, is intricately linked with food packaging, emphasizing its role in maintaining product quality and safety.
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