Menéndez-Pedriza Albert, Gual Marta, Molina-Millán Lidia, Heeren Ron M A, Barata Carlos, Navarro-Martín Laia
Department of Environmental Chemistry, Institute of Environmental Assessment and Water Research (IDAEA-CSIC), Jordi Girona 18, 08034 Barcelona, Spain.
The Maastricht MultiModal Molecular Imaging Institute (M4i), Division of Imaging Mass Spectrometry, Maastricht University, Universiteitssingel 50, 6229 ER Maastricht, The Netherlands.
MethodsX. 2024 Sep 20;13:102973. doi: 10.1016/j.mex.2024.102973. eCollection 2024 Dec.
Microplastic pollution poses a significant environmental threat due to its persistence, widespread distribution, and inherent toxic potential. Despite the increasing number of publications in this field, a standardized protocol for the laboratory intake of microplastics by has yet to be established. In this study, we introduce a verified protocol designed to facilitate the ingestion of microplastic particles (MPs) by , ranging in size from 5-55 µm. This protocol can be further applied to evaluate the toxicity of MPs on , a crucial organism model in ecotoxicology. Furthermore, this protocol can be used to assess toxicity of MPs in other aquatic species, such as fish, by using daphnids as a vehicle for ensuring the ingestion of these particles. Consequently, this protocol can be applied to study also one of the most pressing concerns regarding exposure to MPs, the transfer of MPs through different trophic levels, which has a great potential for ecotoxicological studies.•The influence of MPs concentration, duration and exposure dynamics and age/size in MPs intake were tested.•We have determined the optimal conditions for promoting microplastic ingestion by .
微塑料污染因其持久性、广泛分布和内在毒性潜力而对环境构成重大威胁。尽管该领域的出版物数量不断增加,但尚未建立关于实验室中[具体生物]摄入微塑料的标准化方案。在本研究中,我们引入了一种经过验证的方案,旨在促进[具体生物]摄入尺寸范围为5 - 55微米的微塑料颗粒(MPs)。该方案可进一步应用于评估MPs对[具体生物]的毒性,[具体生物]是生态毒理学中的关键生物模型。此外,通过使用水蚤作为确保摄入这些颗粒的载体,该方案可用于评估MPs对其他水生物种(如鱼类)的毒性。因此,该方案还可应用于研究与MPs暴露相关的最紧迫问题之一,即MPs通过不同营养级的转移,这在生态毒理学研究中具有巨大潜力。•测试了MPs浓度、持续时间、暴露动态以及[具体生物]年龄/大小对MPs摄入的影响。•我们确定了促进[具体生物]摄入微塑料的最佳条件。