a Department of Environmental Engineering , Technical University of Denmark , Kgs. Lyngby , Denmark.
b European Commission-Joint Research Centre , Ispra , Italy.
J Toxicol Environ Health B Crit Rev. 2015;18(6):299-326. doi: 10.1080/10937404.2015.1074969. Epub 2015 Sep 23.
Selecting appropriate ways of bringing engineered nanoparticles (ENP) into aqueous dispersion is a main obstacle for testing, and thus for understanding and evaluating, their potential adverse effects to the environment and human health. Using different methods to prepare (stock) dispersions of the same ENP may be a source of variation in the toxicity measured. Harmonization and standardization of dispersion methods applied in mammalian and ecotoxicity testing are needed to ensure a comparable data quality and to minimize test artifacts produced by modifications of ENP during the dispersion preparation process. Such harmonization and standardization will also enhance comparability among tests, labs, and studies on different types of ENP. The scope of this review was to critically discuss the essential parameters in dispersion protocols for ENP. The parameters are identified from individual scientific studies and from consensus reached in larger scale research projects and international organizations. A step-wise approach is proposed to develop tailored dispersion protocols for ecotoxicological and mammalian toxicological testing of ENP. The recommendations of this analysis may serve as a guide to researchers, companies, and regulators when selecting, developing, and evaluating the appropriateness of dispersion methods applied in mammalian and ecotoxicity testing. However, additional experimentation is needed to further document the protocol parameters and investigate to what extent different stock dispersion methods affect ecotoxicological and mammalian toxicological responses of ENP.
选择将工程纳米粒子(ENP)引入水相分散体的适当方法是测试的主要障碍,因此也是理解和评估其对环境和人类健康的潜在不利影响的主要障碍。使用不同的方法来制备(储备)相同 ENP 的分散体可能是测量毒性时出现差异的一个来源。需要对应用于哺乳动物和生态毒性测试的分散方法进行协调和标准化,以确保数据质量具有可比性,并最大限度地减少在分散体制备过程中对 ENP 进行改性产生的测试假象。这种协调和标准化还将增强不同类型 ENP 的测试、实验室和研究之间的可比性。本综述的范围是批判性地讨论 ENP 分散体协议中的基本参数。这些参数是从各个科学研究中确定的,也是从更大规模的研究项目和国际组织中达成的共识中确定的。提出了一种逐步的方法来开发针对 ENP 的生态毒理学和哺乳动物毒理学测试的定制分散协议。本分析的建议可作为研究人员、公司和监管机构在选择、开发和评估应用于哺乳动物和生态毒性测试的分散方法的适当性时的指南。然而,需要进行更多的实验来进一步记录方案参数,并研究不同的储备分散方法在多大程度上影响 ENP 的生态毒理学和哺乳动物毒理学反应。