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食品接触材料中的纳米材料;风险评估考量

Nanomaterials in food contact materials; considerations for risk assessment.

作者信息

Ćwiek-Ludwicka Kazimiera, Ludwicki Jan Krzysztof

机构信息

National Institute of Public Health - National Institute of Hygiene, Warsaw, Poland

National Institute of Public Health - National Institute of Hygiene, Department of Toxicology and Risk Assessment, Warsaw, Poland

出版信息

Rocz Panstw Zakl Hig. 2017;68(4):321-329.

Abstract

Nanotechnology applications in the food industry, including food contact materials, offer many potential benefits for consumers and manufacturers alike. The article discusses the migration of nanoparticles from food contact materials and the possible health risks associated with in the context of insufficient knowledge of the potential exposure to nanomaterial. The importance of gaps in the general knowledge on the behaviour and biological interactions of nanomaterials in biological systems becomes crucial for risk assessment. The article also discussed numerous doubts concerning the measurements of biological reactions in animal tests and the need for new approaches in the interpretation of data from nanoparticles studies in vivo. The article underlines the need to develop predictive and validated toxicological tests that can be used to screen for potential hazards, and also to develop new methodology for measuring nanoparticles in biological matrices to assess human exposure. Further studies should focus on understanding the mechanisms of action. Nanoparticles exhibit chemical and physical properties that significantly differ from those substances at a large size. Different properties of nanoparticles may lead to different toxicological properties. From that reason nanoparticles, in each case, are individually assessed by the European Food Standard Agency (EFSA) in terms of health risk before the European Commission authorizes them to be used in food contact materials.

摘要

纳米技术在食品工业中的应用,包括食品接触材料,为消费者和制造商都带来了许多潜在益处。本文讨论了纳米颗粒从食品接触材料中的迁移情况,以及在对纳米材料潜在暴露了解不足的背景下与之相关的可能健康风险。纳米材料在生物系统中的行为和生物相互作用方面的常识空白对于风险评估至关重要。本文还讨论了动物试验中生物反应测量方面的诸多疑问,以及体内纳米颗粒研究数据解读中采用新方法的必要性。本文强调需要开发可用于筛查潜在危害的预测性和经过验证的毒理学测试,还需要开发用于测量生物基质中纳米颗粒以评估人体暴露的新方法。进一步的研究应专注于理解作用机制。纳米颗粒具有与大尺寸物质显著不同的化学和物理性质。纳米颗粒的不同性质可能导致不同的毒理学性质。因此,在欧盟委员会授权纳米颗粒用于食品接触材料之前,欧洲食品安全局(EFSA)会针对每种纳米颗粒的健康风险进行单独评估。

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