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改进农药混合物的毒性评估:在微藻毒性测试中使用极性被动采样装置提取物

Improving Toxicity Assessment of Pesticide Mixtures: The Use of Polar Passive Sampling Devices Extracts in Microalgae Toxicity Tests.

作者信息

Kim Tiam Sandra, Fauvelle Vincent, Morin Soizic, Mazzella Nicolas

机构信息

Institut National de Recherche en Sciences et Technologies pour l'Environnement et l'Agriculture UR EABX, Cestas, France.

出版信息

Front Microbiol. 2016 Sep 9;7:1388. doi: 10.3389/fmicb.2016.01388. eCollection 2016.

Abstract

Complexity of contaminants exposure needs to be taking in account for an appropriate evaluation of risks related to mixtures of pesticides released in the ecosystems. Toxicity assessment of such mixtures can be made through a variety of toxicity tests reflecting different level of biological complexity. This paper reviews the recent developments of passive sampling techniques for polar compounds, especially Polar Organic Chemical Integrative Samplers (POCIS) and Chemcatcher® and the principal assessment techniques using microalgae in laboratory experiments. The progresses permitted by the coupled use of such passive samplers and ecotoxicology testing as well as their limitations are presented. Case studies combining passive sampling devices (PSD) extracts and toxicity assessment toward microorganisms at different biological scales from single organisms to communities level are presented. These case studies, respectively, aimed (i) at characterizing the "toxic potential" of waters using dose-response curves, and (ii) at performing microcosm experiments with increased environmental realism in the toxicant exposure in term of cocktail composition and concentration. Finally perspectives and limitations of such approaches for future applications in the area of environmental risk assessment are discussed.

摘要

为了对生态系统中释放的农药混合物相关风险进行恰当评估,需要考虑污染物暴露的复杂性。此类混合物的毒性评估可通过各种反映不同生物复杂程度的毒性试验来进行。本文综述了极性化合物被动采样技术的最新进展,尤其是极性有机化学综合采样器(POCIS)和Chemcatcher®,以及在实验室实验中使用微藻的主要评估技术。介绍了联合使用此类被动采样器和生态毒理学测试所取得的进展及其局限性。还介绍了结合被动采样装置(PSD)提取物以及在从单细胞生物到群落水平的不同生物尺度上对微生物进行毒性评估的案例研究。这些案例研究的目的分别是:(i)使用剂量反应曲线来表征水体的“潜在毒性”;(ii)在毒物暴露方面,就混合物组成和浓度而言,开展具有更高环境真实性的微观实验。最后讨论了此类方法在未来环境风险评估领域应用的前景和局限性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1552/5016515/eafe4898d9e2/fmicb-07-01388-g0001.jpg

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