Mixtures of organic micropollutants exacerbated in vitro neurotoxicity of prymnesins and contributed to aquatic toxicity during a toxic algal bloom

Beate I. Escher, Jörg Ahlheim, Alexander Böhme, Dietrich Borchardt, Werner Brack, Georg Braun, John K. Colbourne, Janek Paul Dann, Joern Gessner, Annika Jahnke, Maria König, Nils Klüver, Martin Krauss, Jungeun Lee, Xiaojing Li, Stefan Lips, Luisa Orsini, Karsten Rinke, Mechthild Schmitt-Jansen, Stefan Scholz, Tobias Schulze, Stephanie Spahr, Nadin Ulrich, Markus Weitere, Elisabeth Varga
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Abstract

Prymnesins produced by an algal bloom of Prymnesium parvum led to the death of several hundred tons of freshwater fish in the Oder River in summer 2022. We investigated effects on aquatic life and human cell lines from exposure to extracts of contaminated water collected during the fish kill. We detected B-type prymnesins and >120 organic micropollutants. The micropollutants occurred at concentrations that would cause the predicted mixture risk quotient for aquatic life to exceed the acceptable threshold. Extracts of water and filters (biomass and particulates) induced moderate effects in vivo in algae, daphnids and zebrafish embryos but caused high effects in a human neuronal cell line indicating the presence of neurotoxicants. Mixture toxicity modelling demonstrated that the in vitro neurotoxic effects were mainly caused by the detected B-type prymnesins with minor contributions by organic micropollutants. Complex interactions between natural and anthropogenic toxicants may underestimate threats to aquatic ecosystems. In summer 2022 an enormous fish kill was observed in the Oder River as a consequence of prymnesins produced by an algal bloom. An investigation of the exposure of aquatic life and human cells to the contaminated Oder water revealed the presence of neurotoxicants, which are attributed to B-type prymnesins, with minor contributions by organic micropollutants.

Abstract Image

Abstract Image

有机微污染物混合物加剧了胰蛋白酶的体外神经毒性,并在有毒藻类大量繁殖期间加剧了水生毒性
2022 年夏季,奥得河藻华产生的藻红蛋白导致数百吨淡水鱼死亡。我们研究了鱼类死亡期间收集的受污染水提取物对水生生物和人类细胞系的影响。我们检测到了 B 型 prymnesins 和 120 种有机微污染物。微污染物的浓度会导致预测的水生生物混合物风险商数超过可接受的阈值。水和过滤器的提取物(生物量和微粒)对藻类、水蚤和斑马鱼胚胎的体内影响适中,但对人类神经细胞系的影响较大,表明存在神经毒性物质。混合物毒性模型显示,体外神经毒性效应主要由检测到的 B 型胰蛋白酶引起,有机微污染物的影响较小。自然和人为毒物之间的复杂相互作用可能会低估对水生生态系统的威胁。
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