Department of Ecological Science, Faculty of Earth and Life Science, Vrije Universiteit, De Boelelaan 1085, 1081 HV Amsterdam, The Netherlands.
Department of Ecological Science, Faculty of Earth and Life Science, Vrije Universiteit, De Boelelaan 1085, 1081 HV Amsterdam, The Netherlands.
Environ Pollut. 2017 Jun;225:534-541. doi: 10.1016/j.envpol.2017.02.070. Epub 2017 Mar 17.
The aim of the present study was to link Pb toxicokinetics to toxicodynamics in Enchytraeus crypticus. The enchytraeids were exposed for 14 d to different Pb concentrations (uptake phase) in natural Lufa 2.2 soil, followed by a 14-d elimination phase in clean soil. Pb accumulation and enchytraeid mortality were determined at different time intervals. At each exposure concentration, internal Pb concentration increased with exposure time and achieved equilibrium in approximately 7 d. Median lethal concentration (LC50) based on total Pb concentration in soil decreased with exposure time, but did not reach a steady-state level. Pb toxicity, therefore, showed a delay compared to accumulation in E. crypticus. LC50s based on internal Pb concentrations in the surviving animals did reach steady state in approx.14 d, suggesting that linking toxicokinetics to toxicodynamics may reduce the effects of time. This study highlighted that exposure time, as an important factor in metal uptake and toxicity, should be taken into account in ecotoxicological tests for risk assessment.
本研究旨在将 Pb 的毒代动力学与生态毒理学联系起来,以研究食颤蚓(Enchytraeus crypticus)。在天然卢法 2.2 土壤中,食颤蚓暴露于不同 Pb 浓度下 14 天(吸收阶段),然后在清洁土壤中进行 14 天的消除阶段。在不同时间间隔测定 Pb 积累和食颤蚓死亡率。在每个暴露浓度下,内部 Pb 浓度随暴露时间的增加而增加,约 7 天达到平衡。基于土壤中总 Pb 浓度的半数致死浓度 (LC50) 随暴露时间的延长而降低,但未达到稳定水平。因此,与 Pb 在 E. crypticus 中的积累相比,Pb 毒性表现出延迟。基于幸存动物体内 Pb 浓度的 LC50 在约 14 天达到稳定状态,这表明将毒代动力学与毒效动力学联系起来可能会减少时间的影响。本研究强调,在金属吸收和毒性的生态毒理学测试中,应考虑暴露时间这一重要因素,以进行风险评估。