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6PPD-醌对湖红点鲑幼鱼期的急性和亚慢性毒性()

Acute and Subchronic Toxicity of 6PPD-Quinone to Early Life Stage Lake Trout ().

作者信息

Roberts Catherine, Lin Junyi, Kohlman Evan, Jain Niteesh, Amekor Mawuli, Alcaraz Alper James, Hogan Natacha, Hecker Markus, Brinkmann Markus

机构信息

Toxicology Centre, University of Saskatchewan, Saskatoon S7N 5B3, Canada.

Department of Animal and Poultry Science, College of Agriculture and Bioresources, University of Saskatchewan, Saskatoon, Saskatchewan S7N 5A8, Canada.

出版信息

Environ Sci Technol. 2025 Jan 14;59(1):791-797. doi: 10.1021/acs.est.4c09090. Epub 2025 Jan 3.

Abstract

-(1,3-Dimethylbutyl)-'-phenyl--phenylenediamine-quinone (6PPD-Q) is a rubber-tire derivative which leaches into surface waters from roadway runoff, from tire particles and has been identified as a possible driver of urban runoff mortality syndrome in coho salmon. Sensitivity to this toxicant is highly variable across fish species and life stages. With environmental concentrations meeting or exceeding toxicity thresholds in sensitive fishes, the potential for ecologically relevant effects is significant. There is currently no data regarding the sensitivity of lake trout () to 6PPD-Q. As early life stages of fishes are typically more sensitive than adults, the goal of this study was to evaluate the acute and subchronic toxicity of 6PPD-Q to early life stage lake trout. Alevins exposed from hatch until 45 days posthatch (dph) to time-weighted average 6PPD-Q concentrations ranging from 0.22 to 13.5 μg/L exhibited a 45 day median lethal dose (LC) of 0.39 μg/L. Deformities throughout growth were observed, with a unique pooling of blood observed in the caudal fin and eye. A subsequent acute study with exogenously feeding lake trout fry determined a 96 h LC of 0.50 μg/L. From this study we can conclude that lake trout alevins and exogenously feeding fry are sensitive to 6PPD-Q, which underscores the relevance of this chemical to inland freshwater ecosystems.

摘要

-(1,3 - 二甲基丁基)-对苯二胺 - 醌(6PPD - Q)是一种橡胶轮胎衍生物,可通过道路径流、轮胎颗粒渗入地表水,并且已被确定为银大麻哈鱼城市径流死亡综合征的一个可能驱动因素。不同鱼类物种和生命阶段对这种有毒物质的敏感性差异很大。由于环境浓度达到或超过敏感鱼类的毒性阈值,因此产生生态相关影响的可能性很大。目前尚无关于湖鳟对6PPD - Q敏感性的数据。由于鱼类的早期生命阶段通常比成鱼更敏感,本研究的目的是评估6PPD - Q对湖鳟早期生命阶段的急性和亚慢性毒性。从孵化后直到孵化后45天(dph)暴露于时间加权平均浓度范围为0.22至13.5μg/L的6PPD - Q的初孵仔鱼,其45天半数致死剂量(LC)为0.39μg/L。在整个生长过程中观察到畸形,在尾鳍和眼睛中观察到独特的血液积聚。随后对外源摄食的湖鳟鱼苗进行的急性研究确定96小时LC为0.50μg/L。从这项研究中我们可以得出结论,湖鳟初孵仔鱼和外源摄食的鱼苗对6PPD - Q敏感,这突出了这种化学物质与内陆淡水生态系统的相关性。

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