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化学污染物暴露:我们能从两栖动物毒理学文献中的生殖和发育终点中学到什么?

Exposures to chemical contaminants: What can we learn from reproduction and development endpoints in the amphibian toxicology literature?

机构信息

Univ. Lille, CNRS, INRA, UMR 8576, UGSF, Unité de Glycobiologie Structurale et Fonctionnelle, F-59000, Lille, France; Univ. Lille, EA 4515 - LGCgE - Laboratoire Génie Civil et Géo-Environnement, Cité Scientifique, SN3, F-59655, Villeneuve D'Ascq, France.

Univ. Lille, CNRS, INRA, UMR 8576, UGSF, Unité de Glycobiologie Structurale et Fonctionnelle, F-59000, Lille, France.

出版信息

Environ Pollut. 2019 May;248:478-495. doi: 10.1016/j.envpol.2019.02.014. Epub 2019 Feb 4.

Abstract

Environmental contamination is one of the major factors or cofactors affecting amphibian populations. Since 2000, the number of studies conducted in laboratory conditions to understand impacts of chemical exposures increased. They aimed to characterize biological effects on amphibians. This review proposes an overview of biological responses reported after exposures to metals, phytopharmaceuticals or emerging organic contaminants and focuses on endpoints relating to reproduction and development. Due to amphibian peculiar features, these periods of their life cycle are especially critical to pollutant exposures. Despite the large range of tested compounds, the same model species are often used as biological models and morphological alterations are the most studied observations. From the results, the laboratory-to-field extrapolation remained uneasy and exposure designs have to be more elaborated to be closer to environmental conditions. Few studies proposed such experimental approaches. Lastly, gametes, embryos and larvae constitute key stages of amphibian life cycle that can be harmed by exposures to freshwater pollutants. Specific efforts have to be intensified on the earliest stages and notably germ cells.

摘要

环境污染是影响两栖动物种群的主要因素或协同因素之一。自 2000 年以来,在实验室条件下进行了大量研究,以了解化学暴露的影响。这些研究旨在描述对两栖动物的生物影响。本综述概述了接触金属、植物药或新兴有机污染物后报告的生物反应,并重点介绍了与繁殖和发育有关的终点。由于两栖动物的特殊特征,其生命周期的这些阶段对污染物暴露特别关键。尽管测试的化合物范围很广,但通常使用相同的模式物种作为生物模型,并且形态改变是最受研究的观察结果。结果表明,实验室到现场的推断仍然不容易,并且需要更详细地设计暴露实验,以更接近环境条件。很少有研究提出这种实验方法。最后,配子、胚胎和幼虫是两栖动物生命周期的关键阶段,可能会受到淡水污染物的伤害。必须加强对早期阶段特别是生殖细胞的关注。

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