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Birds and flame retardants: A review of the toxic effects on birds of historical and novel flame retardants

机译:鸟类和阻燃剂:历史和新型阻燃剂对鸟类的毒害作用综述

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摘要

Flame retardants (FRs) are a diverse group of chemicals, many of which persist in the environment and bioaccumulate in biota. Although some FRs have been withdrawn from manufacturing and commerce (e.g., legacy FRs), many continue to be detected in the environment; moreover, their replacements and/or other novel FRs are also detected in biota. Here, we review and summarize the literature on the toxic effects of various FRs on birds. Birds integrate chemical information (exposure, effects) across space and time, making them ideal sentinels of environmental contamination. Following an adverse outcome pathway (AOP) approach, we synthesized information on 8 of the most commonly reported endpoints in avian FR toxicity research: molecular measures, thyroid-related measures, steroids, retinol, brain anatomy, behaviour, growth and development, and reproduction. We then identified which of these endpoints appear more/most sensitive to FR exposure, as determined by the frequency of significant effects across avian studies. The avian thyroid system, largely characterized by inconsistent changes in circulating thyroid hormones that were the only measure in many such studies, appears to be moderately sensitive to FR exposure relative to the other endpoints; circulating thyroid hormones, after reproductive measures, being the most frequently examined endpoint. A more comprehensive examination with concurrent measurements of multiple thyroid endpoints (e.g., thyroid gland, deiodinase enzymes) is recommended for future studies to more fully understand potential avian thyroid toxicity of FRs. More research is required to determine the effects of various FRs on avian retinol concentrations, inconsistently sensitive across species, and to concurrently assess multiple steroid hormones. Behaviour related to courtship and reproduction was the most sensitive of all selected endpoints, with significant effects recorded in every study. Among domesticated species (Galliformes), raptors (Accipitriformes and Falconiformes), songbirds (Passeriformes), and other species of birds (e.g. gulls), raptors seem to be the most sensitive to FR exposure across these measurements. We recommend that future avian research connect biochemical disruptions and changes in the brain to ecologically relevant endpoints, such as behaviour and reproduction. Moreover, connecting in vivo endpoints with molecular endpoints for non-domesticated avian species is also highly important, and essential to linking FR exposure with reduced fitness and population-level effects.
机译:阻燃剂(FRs)是多种化学物质,其中许多在环境中持续存在并在生物群中生物累积。尽管某些FR已从制造和商业中撤回(例如,传统FR),但仍在环境中继续发现许多FR。此外,他们的替代品和/或其他新颖的阻燃剂也在生物区系中被检测到。在这里,我们回顾并总结有关各种阻燃剂对鸟类的毒性作用的文献。鸟类整合了跨时空的化学信息(接触,影响),使其成为理想的环境污染标志。遵循不良结局途径(AOP)的方法,我们综合了有关禽FR毒性研究中8个最常报告的终点的信息:分子测量,甲状腺相关测量,类固醇,视黄醇,脑解剖结构,行为,生长发育和繁殖。然后,我们确定了哪些终点对FR暴露更敏感/最敏感,这取决于整个禽类研究的显着频率。禽甲状腺系统的主要特征是循环甲状腺激素的变化不一致,这是许多此类研究中唯一的措施,相对于其他终点,它似乎对FR暴露具有中等敏感性。生殖措施后,循环甲状腺激素是最常检查的终点。建议进行更全面的检查并同时测量多个甲状腺终点(例如,甲状腺,脱碘酶),以进一步研究,以更全面地了解FRs对禽甲状腺的潜在毒性。需要进行更多的研究来确定各种FR对禽视黄醇浓度的影响,不同物种间的敏感性不一致,并同时评估多种类固醇激素。在所有选定的终点中,与求爱和生殖有关的行为最为敏感,每项研究均记录到显着影响。在这些测量中,在驯养的物种(鸡形目),猛禽(Actricitriformes和Falconiformes),鸣禽(Passeriformes)和其他鸟类(例如海鸥)中,猛禽似乎对FR暴露最敏感。我们建议未来的禽类研究将大脑中的生化破坏和变化与生态相关的终点(例如行为和繁殖)联系起来。此外,将体内端点与非驯养鸟类物种的分子端点连接起来也非常重要,并且对于将FR暴露与降低的适应性和种群水平影响联系起来至关重要。

著录项

  • 来源
    《Environmental research》 |2017年第4期|398-424|共27页
  • 作者单位

    Environment and Climate Change Canada, Canada Centre for Inland Waters, 867 Lakeshore Road, Burlington, Ontario, Canada L7S 1A1, Department of Natural Resource Sciences, Faculty of Agricultural and Environmental Sciences, McGill University, 21 111 Lakeshore Road, Sainte-Anne-de-Bellevue, Quebec, Canada H9X 3V9;

    Environment and Climate Change Canada, Canada Centre for Inland Waters, 867 Lakeshore Road, Burlington, Ontario, Canada L7S 1A1;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Flame retardants; Bird; In vivo; In vitro; Adverse outcome pathway; Toxic effects;

    机译:阻燃剂;鸟;体内;体外;不良结果途径;毒性作用;

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