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AN IN SITU TOXICITY IDENTIFICATION AND EVALUATION WATER ANALYSIS SYSTEM: LABORATORY VALIDATION

机译:现场毒性鉴定和评估水分析系统:实验室验证

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It is difficult to assess the toxicity of a single stressor and establish a strong stressor-causality link when multiple stressors coexist. Toxicity identification evaluation (TIE) methodology uses a series of chemical and physical manipulations to fractionate compounds within a matrix and systematically identify potential toxicants. The current US Environmental Protection Agency application of TIE can provide valuable information but often lacks ecological realism and is subject to laboratory-related artifacts. An in situ TIE device (iTIED) was designed to assess the sources of toxicity in aquatic ecosystems. For this laboratory validation, each unit was equipped with a sorbent resin chamber, an organism exposure chamber, a water collection container, and a peristaltic pump. Chemical analyses of water processed by each iTIED unit were compared with both lethal and sublethal molecular responses of the organisms. The compound removal effectiveness of different sorbent resins was also compared. In addition to successfully fractionating diverse chemical mixtures, the iTIED demonstrated a potential for early detection of molecular biomarkers, which could identify chronic toxicity that may go unnoticed in traditional TIE assays. Utilizing this novel in situ system will reduce the uncertainty associated with laboratory-based simulations and aid management efforts in targeting compounds that pose the greatest threat. (C) 2016 SETAC
机译:当多个应激源共存时,很难评估单个应激源的毒性并建立强有力的应激源因果关系。毒性鉴定评估(TIE)方法使用一系列化学和物理操作来分离基质中的化合物并系统地鉴定潜在的有毒物质。美国环境保护署当前对TIE的应用可以提供有价值的信息,但通常缺乏生态现实性,并且容易受到实验室相关伪影的影响。设计了现场TIE设备(iTIED)来评估水生生态系统的毒性来源。为了进行实验室验证,每个单元都配备了吸附树脂室,生物暴露室,集水容器和蠕动泵。将每个iTIED单元处理过的水的化学分析与生物的致死和亚致死分子响应进行了比较。还比较了不同吸附剂树脂的化合物去除效果。除了成功地分离各种化学混合物外,iTIED还展示了早期检测分子生物标记物的潜力,该分子标记物可以识别传统TIE分析中可能未注意到的慢性毒性。利用这种新颖的原位系统将减少与基于实验室的模拟相关的不确定性,并帮助管理人员针对可能带来最大威胁的化合物。 (C)2016年SETAC

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