Leibniz-Institute of Freshwater Ecology and Inland Fisheries, Müggelseedamm 310, D-12587 Berlin, Germany.
Center for Applied Geosciences, Eberhard Karls Universität Tübingen, Hölderlinstraße 12, D-72074 Tübingen, Germany.
Int J Environ Res Public Health. 2018 Feb 6;15(2):280. doi: 10.3390/ijerph15020280.
Microplastics can have direct physical effects on organisms in freshwater systems, and are considered as vectors for absorbed environmental pollutants. It is still under discussion if microplastics are relevant pollutant vectors for uptake into aquatic organisms in comparison to further uptake pathways, e.g., via water or sediment particles. We analyzed how the presence of microplastics (polyamide particles, PA) modifies acute effects of the environmental pollutant bisphenol A (BPA) on freshwater zooplankton (). Daphnids were exposed to PA particles and BPA alone, before combining them in the next step with one concentration of PA and varying concentrations of BPA. The PA particles themselves did not induce negative effects, while the effects of BPA alone followed a typical dose-dependent manner. Sorption of BPA to PA particles prior to exposure led to a reduction of BPA in the aqueous phase. The combination of BPA and PA led to decreased immobilization, although PA particles loaded with BPA were ingested by the daphnids. Calculations based on physiochemistry and equilibrium assumptions indicated lower BPA body burden of daphnids in the presence of PA particles. These results confirm model-based studies, and show that investigated microplastic concentrations are negligible for the overall pollutant uptake of daphnids with water as additional uptake pathway.
微塑料会对淡水系统中的生物产生直接的物理影响,并且被认为是吸收环境污染物的载体。目前仍在讨论微塑料是否是水生生物吸收的相关污染物载体,与其他吸收途径(例如通过水或沉积物颗粒)相比。我们分析了微塑料(聚酰胺颗粒,PA)的存在如何改变环境污染物双酚 A(BPA)对淡水浮游动物的急性影响()。在下一步将 PA 颗粒和 BPA 组合之前,先将水蚤暴露于 PA 颗粒和 BPA 单独中,然后再将它们组合在一起,PA 颗粒本身不会产生负面影响,而 BPA 的单独作用则遵循典型的剂量依赖性方式。在暴露之前,BPA 被吸附到 PA 颗粒上,导致水相中 BPA 的减少。BPA 和 PA 的组合导致固定化减少,尽管载有 BPA 的 PA 颗粒被水蚤摄入。基于物理化学和平衡假设的计算表明,在存在 PA 颗粒的情况下,水蚤体内的 BPA 负担较低。这些结果证实了基于模型的研究,并表明在所研究的微塑料浓度下,通过水作为额外吸收途径,水蚤对整体污染物的吸收可以忽略不计。