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Screening and Testing for Endocrine Disruption in Fish - Biomarkers As 'Signposts,'Not 'Traffic Lights,' in Risk Assessment

机译:鱼类内分泌干扰的筛选和测试-在风险评估中将生物标志物标记为“路标”而不是“交通灯”

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Biomarkers are currently best used as mechanistic "signposts"rather than as "traffic lights"in the environmental risk assessment of endocrine-disrupting chemicals (EDCs).In field studies,biomarkers of exposure [e.g.,vitellogenin (VTG)induction in male fish] are powerful tools for tracking single substances and mixtures of concern.Biomarkers also provide linkage between field and laboratory data,thereby playing an important role in directing the need for and design of fish chronic tests for EDCs.It is the adverse effect end points (e.g.,altered development,growth,and/or reproduction)from such tests that are most valuable for calculating ~(adverse)NOEC (no observed effect oncentration) or ~(adverse)EC_(10)(effective concentration for a 10% response)and subsequently deriving predicted no effect concentrations (PNECs).With current uncertainties,~(biomarker)NOEC or ~(biomarker)EC_(10)data should not be used in isolation to derive PNECs.In the future,however,there may be scope to increasingly use biomarker data in environmental decision making,if plausible linkages can be made across levels of organization such that adverse outcomes might be envisaged relative to biomarker responses.For biomarkers to fulfil their potential,they should be mechanistically relevant and reproducible (as measured by interlaboratory comparisons of the same protocol).VTG is a good example of such a biomarker in that it provides an insight to the mode of action (estrogenicity)that is vital to fish reproductive health.Interlaboratory reproducibility data for VTG are also encouraging;recent comparisons (using the same immunoassay protocol)have provided coefficients of variation (CVs)of 38-55% (comparable to published CVs of 19-58% for fish survival and growth end points used in regulatory test guidelines).While concern over environmental xenoestrogens has led to the evaluation of reproductive biomarkers in fish,it must be remembered that many substances act via diverse mechanisms of action such that the environmental risk assessment for EDCs is a broad and complex issue.Also,biomarkers such as secondary sexual characteristics,gonadosomatic indices,plasma steroids,and gonadal histology have significant potential for guiding interspecies assessments of EDCs and designing fish chronic tests.To strengthen the utility of EDC biomarkers in fish,we need to establish a historical control database (also considering natural variability)to help differentiate between statistically detectable versus biologically significant responses.In conclusion,as research continues to develop a range of useful EDC biomarkers,environmental decision-making needs to move forward,and it is proposed that the "biomarkers as signposts"approach is a pragmatic way forward in the current risk assessment of EDCs.
机译:生物标志物目前最适合在破坏内分泌的化学物质(EDC)的环境风险评估中用作机制的“路标”,而不是“交通信号灯”。在田间研究中,暴露的生物标志物(例如雄鱼中的玻璃黄素(VTG)诱导)生物标记物还提供了田间数据与实验室数据之间的联系,从而在指导对EDC的鱼类慢性试验的需求和设计中发挥了重要作用。这是不利影响的终点(例如,改变了发育,生长和/或繁殖的方法,这些方法对于计算〜(不良)NOEC(未观察到浓度效应)或〜(不良)EC_(10)(10%反应的有效浓度)最有价值在目前的不确定性下,〜(biomarker)NOEC或〜(biomarker)EC_(10)数据不应该单独用于得出PNEC。但是,将来可能存在范围增加如果可以在组织的各个层面之间建立合理的联系,从而可以设想相对于生物标志物反应的不良结果,则可以在环境决策中使用生物标志物数据。为使生物标志物发挥其潜能,它们应具有机械相关性和可重复性(通过实验室间的测量) VTG是此类生物标志物的一个很好的例子,因为它提供了对鱼类生殖健康至关重要的作用方式(雌激素)的洞察力.VTG的实验室间可复制性数据也令人鼓舞;最近的比较(使用相同的免疫分析方法)提供的变异系数(CV)为38-55%(与法规测试指南中使用的鱼类存活率和生长终点的公布CV相比为19-58%)。在评估鱼类生殖生物标志物时,必须记住,许多物质通过多种作用机制起作用,例如EDCs的环境风险评估是一个广泛而复杂的问题。此外,生物标记物(如继发性特征,性腺激素指数,血浆类固醇和性腺组织学)在指导EDCs的种间评估和设计鱼类慢性试验方面也具有巨大潜力。 EDC生物标记物在鱼类中的用途,我们需要建立一个历史对照数据库(还考虑自然变异性),以帮助区分统计学上可检测的反应和生物学上重要的反应。总之,随着研究不断开发出一系列有用的EDC生物标记物,环境决策因此,建议在当前的EDC风险评估中,“以生物标志物为标志”方法是一种务实的方法。

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