Exposure to the Polychlorinated biphenyl mixture Aroclor 1254 elicits neurological and cardiac developmental effects in early life stage zebrafish (Danio rerio).

Chemosphere Pub Date : 2025-02-01 Epub Date: 2025-01-03 DOI:10.1016/j.chemosphere.2024.144023
Corey S Green, Jeffrey M Morris, Jason T Magnuson, Rachel R Leads, Claire R Lay, Michel Gielazyn, Lisa Rosman, Daniel Schlenk, Aaron P Roberts
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Abstract

The goal of this study was to compare the bioaccumulation of the PCB mixture Aroclor 1254 in zebrafish to cardiac and neurologic outcomes. The establishment of effect concentrations (ECs) for cardiac and neurotoxic effects of PCBs in early life stage fish is challenging due to a lack of measured PCB concentrations in test media (e.g., fish tissue), the lack of standard exposure methods, and the propensity of PCBs to adsorb to test glassware and materials resulting in discrepancies in ECs from different studies with similar endpoints. Reporting tissue concentrations in test organisms will allow for standardization across different tests and thus may improve estimations of effect thresholds. Early life stage zebrafish (Danio rerio) are a common environmental toxicological model well represented within the literature, making them ideal for comparisons across multiple studies. Embryos were exposed at 6 h post fertilization (hpf) to aqueous Aroclor 1254 for 96 h with or without renewal in addition to a PCB 126 positive control for cardiotoxicity. PCB concentrations were measured in both exposure solutions and tissue samples. Measured concentrations of Aroclor 1254 in test solutions ranged from 8.7% to 870% of nominal concentrations. Heart rate, pericardial edema, and neurological endpoints (eye tremors) were measured in 102 hpf larvae. Pericardial edema was not present in Aroclor 1254-treated zebrafish but was observed in those exposed to PCB-126. Concentration-dependent bradycardia was observed in zebrafish exposed to Aroclor 1254 and PCB-126. Similarly, a concentration-dependent increase in eye tremor behavior was observed in embryos exposed to Aroclor 1254. Data produced by this study demonstrate novel toxicological effects of Aroclor 1254 and highlight the importance of measuring PCBs in both exposure and receptor media.

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暴露于多氯联苯混合物AROCLOR 1254会引起早期生命阶段斑马鱼神经和心脏发育的影响。
本研究的目的是比较多氯联苯混合物Aroclor 1254在斑马鱼体内的生物积累与心脏和神经系统的结果。由于缺乏测试介质(例如,鱼组织)中PCB浓度的测量,缺乏标准暴露方法,以及PCB对测试玻璃器皿和材料的吸附倾向,导致不同研究中具有相似终点的ECs存在差异,因此在生命早期阶段建立PCBs心脏和神经毒性效应浓度(ECs)具有挑战性。报告受试生物体中的组织浓度将允许在不同的测试中实现标准化,从而可以改进对效应阈值的估计。早期生活阶段的斑马鱼(Danio rerio)是一种常见的环境毒理学模型,在文献中有很好的代表,使它们成为跨多个研究比较的理想选择。胚胎在受精后6小时(hpf)暴露于Aroclor 1254水溶液中96小时,除PCB 126阳性对照外,还有或没有更新。测量了暴露溶液和组织样品中的多氯联苯浓度。测试溶液中Aroclor 1254的测量浓度范围为标称浓度的8.7%至870%。测量102只hpf幼虫的心率、心包水肿和神经终点(眼震颤)。经Aroclor 1254处理的斑马鱼不存在心包水肿,但暴露于多氯联苯-126的斑马鱼却存在心包水肿。在暴露于Aroclor 1254和PCB-126的斑马鱼中观察到浓度依赖性心动过缓。同样,在暴露于Aroclor 1254的胚胎中,观察到眼球震颤行为的浓度依赖性增加。本研究产生的数据证明了Aroclor 1254的新毒理学效应,并强调了在暴露和受体介质中测量多氯联苯的重要性。
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