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Ecotoxicology. 2019 Mar;28(2):242-250. doi: 10.1007/s10646-019-02018-0. Epub 2019 Feb 13.
The aquatic toxicity profiles of synthetic pyrethroid insecticides are remarkably similar, and results for a large number of species can be combined across compounds in Species Sensitivity Distributions (SSDs). Normalizing acute toxicity values (median lethal concentrations, LC50s) for each species and each pyrethroid to the LC50 of the same pyrethroid to the freshwater amphipod Hyalella azteca (the most sensitive species to all pyrethroids tested) enabled expression of LC50s as Hyalella equivalents that can be pooled across pyrethroids. The resulting normalized LC50s (geometric means for each species across pyrethroids) were analyzed using SSDs. Based on tests with measured exposure concentrations, the fifth percentiles (Hazard Concentrations, HC5s) of the SSDs were 4.8 Hyalella equivalents for arthropods (36 species) and 256 Hyalella equivalents for fish (24 species). HC5 values are useful as effects metrics for screening-level risk assessments, and the full SSDs can be integrated with estimated exposure distributions for higher-level risk characterization. The combined pyrethroid SSDs provide a more taxonomically representative and statistically robust basis for risk characterization than data for the most sensitive single species or SSDs based on data for a single pyrethroid alone, and are especially useful for pyrethroids that have been tested with smaller numbers of species.
合成拟除虫菊酯杀虫剂的水生毒性特征非常相似,并且可以将大量物种的结果结合在物种敏感性分布(SSD)中。将每种化合物对每种拟除虫菊酯的急性毒性值(半数致死浓度,LC50)归一化为淡水桡足类 Hyalella azteca(所有测试的拟除虫菊酯中最敏感的物种)的 LC50,使 LC50 可以用 Hyalella 等效物表示,并且可以在拟除虫菊酯之间进行汇总。使用 SSD 对归一化后的 LC50(每种拟除虫菊酯的物种的几何平均值)进行了分析。基于测试的实测暴露浓度,SSD 的第五个百分位数(危险浓度,HC5)为节肢动物(36 种)的 4.8 Hyalella 等效物和鱼类(24 种)的 256 Hyalella 等效物。HC5 值可作为筛选水平风险评估的效应指标,并且完整的 SSD 可以与估计的暴露分布结合使用,以进行更高水平的风险特征描述。与最敏感的单一物种的数据或仅基于单一拟除虫菊酯的数据的 SSD 相比,综合拟除虫菊酯 SSD 为风险特征描述提供了更具分类代表性和统计稳健性的基础,并且特别适用于测试物种数量较少的拟除虫菊酯。