Single and mixture effect of cyanobacterial metabolites, cylindrospermopsin, anabaenopeptin-A, microginin-FR1 and aeruginosin 98-A, on behaviour, food uptake, oxygen consumption and muscular F-actin degradation of Thamnocephalus platyurus

IF 4.2 3区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES Environmental toxicology and pharmacology Pub Date : 2025-04-01 Epub Date: 2025-03-21 DOI:10.1016/j.etap.2025.104677
Małgorzata Adamczuk, Adam Bownik, Barbara Pawlik-Skowrońska
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Abstract

This study showed that single cyanobacterial metabolites had various effects on the tested parameters. Among them, only cylindrospermopsin was lethal to the animals; cylindrospermopsin was also the most potent inhibitor of the remaining parameters. Cylindrospermopsin in binary mixtures with the other tested metabolites displayed antagonistic or additive effects for survival, movement, food uptake and oxygen consumption and synergistic effect for F-actin degradation. Aeruginosin 98 A at lower concentrations displayed an enhanced effect on movement, food uptake and oxygen consumption while inhibiting these parameters at higher concentrations. Anabaenopeptin-A at higher concentrations (> 250 µg/L) had a significant inhibitory effect on T. platyurus. Microginin-FR1 had the lowest impact on T. platyurus, but produced mainly synergistic effects in a binary mixture with aeruginosin 98 A and mostly antagonistic or additive effects in a mixture with anabaenopeptin-A. Quaternary mixtures of metabolites had mostly antagonistic effects on the examined parameters.
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蓝藻代谢产物柱精子素、anabaenopeptin-A、microginin-FR1和aeruginosin 98-A对鸭嘴兽行为、食物摄取、氧气消耗和肌肉F-actin降解的单一和混合影响
本研究表明,单个蓝藻代谢产物对测试参数有不同的影响。其中,只有柱精子蛋白酶对动物有致死作用;柱精子蛋白酶也是其余参数最有效的抑制剂。柱精子素与其他代谢物的二元混合物对存活、运动、食物摄取和氧气消耗具有拮抗或加性作用,对f -肌动蛋白降解具有协同作用。低浓度的绿脓杆菌素98A对运动、食物摄取和氧气消耗的影响增强,而高浓度的绿脓杆菌素98A则抑制这些参数。较高浓度(250µg/L)的鱼腥素a对鸭嘴兽有显著的抑制作用。Microginin-FR1对鸭嘴兽的影响最小,但在与铜绿球蛋白98A的二元混合中主要产生增效作用,而在与鱼腥素a的混合中主要产生拮抗或加性作用。第四代混合代谢物对所测参数主要有拮抗作用。
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来源期刊
CiteScore
7.00
自引率
4.70%
发文量
185
审稿时长
34 days
期刊介绍: Environmental Toxicology and Pharmacology publishes the results of studies concerning toxic and pharmacological effects of (human and veterinary) drugs and of environmental contaminants in animals and man. Areas of special interest are: molecular mechanisms of toxicity, biotransformation and toxicokinetics (including toxicokinetic modelling), molecular, biochemical and physiological mechanisms explaining differences in sensitivity between species and individuals, the characterisation of pathophysiological models and mechanisms involved in the development of effects and the identification of biological markers that can be used to study exposure and effects in man and animals. In addition to full length papers, short communications, full-length reviews and mini-reviews, Environmental Toxicology and Pharmacology will publish in depth assessments of special problem areas. The latter publications may exceed the length of a full length paper three to fourfold. A basic requirement is that the assessments are made under the auspices of international groups of leading experts in the fields concerned. The information examined may either consist of data that were already published, or of new data that were obtained within the framework of collaborative research programmes. Provision is also made for the acceptance of minireviews on (classes of) compounds, toxicities or mechanisms, debating recent advances in rapidly developing fields that fall within the scope of the journal.
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