Department of Biological and Environmental Sciences, University of Gothenburg, Gothenburg, Sweden.
Department of Science and Environment, Roskilde University, Roskilde, Denmark.
J Hazard Mater. 2021 Aug 5;415:125652. doi: 10.1016/j.jhazmat.2021.125652. Epub 2021 Mar 13.
Microplastics (MPs) have been identified as a threat to global ecosystems. Current projections indicate that the negative impacts of MPs will increase in the environment. Traditional toxicity testing does not account for the diversity of MP particles, the inherent diversity in potential exposure routes, and complex impacts in exposed organisms. Here we present and discuss factors influencing organismal exposure to MPs driven by fate and behavior of MPs in different environmental matrices and organisms behavioral niches. We then provide a structured classification of potential effects of MPs, chemical or particulate, generic or specific to MPs. Using these analyses, we discuss appropriateness and limitations of applying traditional, chemical-based ecotoxicity testing for the study of MPs, and propose practical recommendations and guidelines. Future laboratory based studies can be improved to increase understanding of potential real world effects of MPs by careful selection of appropriate exposure systems and conditions, test organism, MP characteristics, endpoints and required controls. We build upon recommendations provided in previous publications and complement them with a list of parameters and practical information that should be checked and/or reported in MP studies.
微塑料(MPs)已被确定为对全球生态系统的威胁。目前的预测表明,MPs 在环境中的负面影响将会增加。传统的毒性测试没有考虑 MPs 颗粒的多样性、潜在暴露途径的固有多样性以及暴露生物的复杂影响。在这里,我们介绍并讨论了受 MPs 在不同环境基质中的命运和行为以及生物体行为生态位驱动的生物体对 MPs 的暴露的影响因素。然后,我们对 MPs 的潜在影响进行了结构化分类,包括化学或颗粒物质、一般或特定于 MPs 的影响。使用这些分析,我们讨论了应用传统的基于化学的生态毒性测试来研究 MPs 的适当性和局限性,并提出了实际的建议和指南。未来的实验室基础研究可以通过仔细选择适当的暴露系统和条件、测试生物、MP 特征、终点和所需的对照来提高对 MPs 潜在实际影响的理解。我们在以前的出版物中提供的建议的基础上进行扩展,并补充了一份在 MPs 研究中应检查和/或报告的参数和实用信息列表。