Miniaturizing Nanotoxicity Assays in Daphnids

Animals Pub Date : 2024-07-12 DOI:10.3390/ani14142046
Dimitrios Kakavas, Konstantinos Panagiotidis, Keith D. Rochfort, K. Grintzalis
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Abstract

The rapid progress of the modern world has resulted in new materials and products created at an accelerating pace. As such, nanoparticles have widespread applications and often find their way into the aquatic ecosystem. In the case of freshwater ecosystems, one of the commonly used bioindicators species used for pollution assessment is Daphnid magna. The Organization for Economic Co-operation and Development (OECD), and other organizations such as the European Chemicals Agency (ECHA) and Environmental Protection Agency (EPA), have set guidelines for acute toxicity testing in daphnids that are severely lacking in terms of information on the characteristics of the exposure vessel when studying the adverse effects of nanoparticles (NPs). Understanding the toxicity mechanisms of nanomaterials is imperative given the scarcity of information on their adverse effects. Furthermore, miniaturization of nanotoxicity assays can reduce the number of daphnids used, as well as the cost and nanomaterial waste, and provide results even at the individual animal level with enhanced reproducibility of testing. In this study, the impact of the exposure vessel on the observed physiological changes of daphnids was investigated for a silver nano ink. Exposures in eleven commercially available vessels; nine made of plastic and two made of glass were compared for 24 h. The effect of surface to volume ratio of the exposure vessel and the animal number or “crowding” during exposure was investigated in the context of miniaturizing biomarker assays as alternatives to traditional experimental setups in Daphnid magna. Toxicity curves showed differences depending on the vessel used, while a novel feeding rate assay and the activity of key enzymes were assessed as physiology endpoints.
水蚤纳米毒性测定的微型化
现代社会的飞速发展使得新材料和新产品的创造速度不断加快。因此,纳米粒子应用广泛,并经常进入水生生态系统。在淡水生态系统中,用于污染评估的常用生物指标物种之一是大型水蚤。经济合作与发展组织(OECD)以及欧洲化学品管理局(ECHA)和美国环保署(EPA)等其他组织制定了水蚤急性毒性测试指南,但在研究纳米粒子(NPs)的不利影响时,这些指南严重缺乏有关暴露容器特征的信息。鉴于有关纳米材料不良影响的信息匮乏,了解纳米材料的毒性机制势在必行。此外,纳米毒性试验的微型化可以减少水蚤的数量、成本和纳米材料的浪费,甚至可以在动物个体水平上提供结果,提高试验的可重复性。本研究调查了银纳米墨水的暴露容器对观察到的水蚤生理变化的影响。在对大型水蚤进行微型化生物标志物检测以替代传统实验设置的背景下,研究了暴露容器的表面体积比和暴露期间动物数量或 "拥挤 "的影响。毒性曲线显示,所使用的容器不同,毒性也不同,同时还评估了作为生理终点的新型摄食率测定法和关键酶的活性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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