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复杂现实生活混合物的混合物风险评估 - PANORAMIX 项目。

Mixture Risk Assessment of Complex Real-Life Mixtures-The PANORAMIX Project.

机构信息

Department of Cell Toxicology, Helmholtz Centre for Environmental Research-UFZ, DE-04318 Leipzig, Germany.

Environmental Toxicology, Department of Geoscience, Eberhard Karls University Tübingen, DE-72076 Tübingen, Germany.

出版信息

Int J Environ Res Public Health. 2022 Oct 11;19(20):12990. doi: 10.3390/ijerph192012990.

Abstract

Humans are involuntarily exposed to hundreds of chemicals that either contaminate our environment and food or are added intentionally to our daily products. These complex mixtures of chemicals may pose a risk to human health. One of the goals of the European Union's Green Deal and zero-pollution ambition for a toxic-free environment is to tackle the existent gaps in chemical mixture risk assessment by providing scientific grounds that support the implementation of adequate regulatory measures within the EU. We suggest dealing with this challenge by: (1) characterising 'real-life' chemical mixtures and determining to what extent they are transferred from the environment to humans via food and water, and from the mother to the foetus; (2) establishing a high-throughput whole-mixture-based strategy for screening of real-life complex mixtures of organic chemicals extracted from humans using integrated chemical profiling (suspect screening) together with effect-directed analysis; (3) evaluating which human blood levels of chemical mixtures might be of concern for children's development; and (4) developing a web-based, ready-to-use interface that integrates hazard and exposure data to enable component-based mixture risk estimation. These concepts form the basis of the Green Deal project PANORAMIX, whose ultimate goal is to progress mixture risk assessment of chemicals.

摘要

人类会不可避免地接触到数以百计的化学物质,这些化学物质要么污染了我们的环境和食物,要么是被故意添加到我们的日常产品中。这些复杂的化学物质混合物可能对人类健康构成威胁。欧盟绿色协议和无毒环境的零污染目标之一是通过提供支持在欧盟内实施适当监管措施的科学依据,解决化学混合物风险评估中现有的差距。我们建议通过以下方式应对这一挑战:(1)描述“现实生活”中的化学混合物,并确定它们在多大程度上通过食物和水从环境转移到人类体内,以及从母亲转移到胎儿体内;(2)建立一种基于高通量全混合物的策略,使用整合化学分析(可疑筛选)和定向分析,从人类身上提取的有机化学物质的真实复杂混合物进行筛选;(3)评估哪些人体血液中的化学混合物水平可能对儿童发育产生影响;(4)开发一个基于网络的、即用型的界面,集成危害和暴露数据,以实现基于成分的混合物风险估计。这些概念构成了 PANORAMIX 绿色协议项目的基础,其最终目标是推进化学混合物风险评估。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9508/9602166/147446b0820e/ijerph-19-12990-g001.jpg

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