Yang Lanpeng, Feng Jianfeng, Gao Yongfei, Zhu Lin
Key Laboratory of Pollution Process and Environmental Criteria of Ministry of Education and Tianjin Key Laboratory of Environmental Remediation and Pollution Control, College of Environmental Science and Engineering, Nankai University, Tianjin 300071, P. R. China.
Environ Sci Technol. 2021 Jul 6;55(13):8965-8976. doi: 10.1021/acs.est.0c08725. Epub 2021 Jun 15.
Given the persistence and toxic potencies of metal contaminants in ecosystems, animals, and human beings, they are considered to be hazardous global pollutants. While the lethality of metal toxicities (e.g., LC) can significantly vary, even within the same species, the underlying mechanisms are less well-understood. In this study, we developed a subcellular two-compartment toxicokinetic-toxicodynamic (TK-TD) model for zebrafish larvae when exposed to four metals (cadmium, lead, copper, and zinc) to reveal whether differences in metal toxicity (LC values) were dominated by the TK or TD processes. Results showed that the subcellular TK and TD parameters of the four metals were significantly different, and the bioconcentration factor (BCF) value of copper was higher than those of the other metals. We also found that the TD parameter internal threshold concentration () was significantly positively correlated to the LC values ( = 0.7), suggesting a dominant role of TD processes in metal toxicity. Furthermore, the combined parameter /BCF for a metal-sensitive fraction (BCF), which linked exposure to effects through the TK-TD approach, explained up to 89% of the variation in toxicity to the four metals. The present study suggests that the observed variation in toxicity of these four metals was mainly determined by TD processes but that TK processes should not be ignored, especially for copper.
鉴于金属污染物在生态系统、动物和人类中的持久性和毒性强度,它们被视为全球有害污染物。虽然金属毒性的致死率(例如LC)可能有很大差异,即使在同一物种内也是如此,但其潜在机制却了解得较少。在本研究中,我们针对斑马鱼幼体暴露于四种金属(镉、铅、铜和锌)的情况开发了一种亚细胞两室毒代动力学-毒效动力学(TK-TD)模型,以揭示金属毒性差异(LC值)是由TK还是TD过程主导。结果表明,四种金属的亚细胞TK和TD参数存在显著差异,铜的生物富集因子(BCF)值高于其他金属。我们还发现,TD参数内部阈值浓度()与LC值显著正相关( = 0.7),表明TD过程在金属毒性中起主导作用。此外,通过TK-TD方法将暴露与效应联系起来的金属敏感部分的组合参数/BCF解释了四种金属毒性变化的89%。本研究表明,这四种金属观察到的毒性差异主要由TD过程决定,但TK过程也不应被忽视,尤其是对于铜。