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从分散涂料的其他化合物中分离出初级纳米塑料的生物效应。

Disentangling biological effects of primary nanoplastics from dispersion paints' additional compounds.

机构信息

Macromolecular Chemistry and Bavarian Polymer Institute, University of Bayreuth, D-95440 Bayreuth, Germany.

Department of Animal Ecology I and BayCEER, University of Bayreuth, D-95440 Bayreuth, Germany.

出版信息

Ecotoxicol Environ Saf. 2022 Sep 1;242:113877. doi: 10.1016/j.ecoenv.2022.113877. Epub 2022 Jul 16.

Abstract

Microplastic particles (MP) and nanoplastic particles (NP) as persistent anthropogenic pollutants may impact environmental and human health. A relevant potential source of primary MP and NP is water-based dispersion paint which are commonly used in any household. Given the worldwide high application volume of dispersion paint and their diverse material composition MP and NP may enter the environment with unforeseeable consequences. In order to understand the relevance of these MP and NP from paint dispersion we investigated the components of two representative wall paints and analyzed their composition in detail. The different paint components were then investigated for their impact on the model organism Daphnia magna and on a murine cell line. Plastic NP, dissolved polymers, titanium dioxide NPs, and calcium carbonate MPs demonstrated adverse effects in both biological test systems, indicating detrimental consequences of several typical components of wall paints upon release into the environment. The outcome of this study may form the basis for the evaluation of impact on other organisms, environmental transport and impact, other related technical materials and for the development of strategies for the prevention of potential detrimental effects on organisms.

摘要

微塑料颗粒 (MP) 和纳米塑料颗粒 (NP) 作为持久性人为污染物,可能会影响环境和人类健康。水基分散漆是一种主要的 MP 和 NP 的潜在来源,这种漆在家庭中普遍使用。鉴于分散漆在世界范围内的高应用量及其多样化的材料组成,MP 和 NP 可能会以不可预见的方式进入环境。为了了解这些来自油漆分散的 MP 和 NP 的相关性,我们研究了两种代表性墙壁涂料的成分,并详细分析了它们的组成。然后研究了不同的油漆成分对模式生物大型溞和小鼠细胞系的影响。塑料 NP、溶解聚合物、二氧化钛 NPs 和碳酸钙 MPs 在这两个生物测试系统中都表现出了不良影响,表明墙壁涂料的几种典型成分在释放到环境中后会产生有害后果。这项研究的结果可能为评估对其他生物的影响、环境迁移和影响、其他相关技术材料以及制定预防对生物产生潜在有害影响的策略提供基础。

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