异构体特异性生态毒性和布洛芬的发生:水生生态系统中被低估的风险。

IF 11.3
Journal of hazardous materials Pub Date : 2025-09-15 Epub Date: 2025-08-04 DOI:10.1016/j.jhazmat.2025.139430
Ping Ge, Na Liu, Yeyao Wang, John P Giesy, Xiaowei Jin
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引用次数: 0

摘要

布洛芬(IBU)作为外消旋混合物使用,尽管对映体的药理学差异。然而,其在水生生态系统中的立体选择性研究仍不充分,导致潜在的环境风险不确定性。本研究对水生环境中IBU的对位选择性生态毒性、环境命运和生态风险进行了全面、综合、多层次的评价。用D. magna和重组酵母核受体进行的慢性毒性试验表明,S-IBU在环境相关浓度下的毒性效力是R-IBU的8倍。根据我们的实验和文献中的手性特异性毒性数据,S-IBU的预测无效应浓度(PNEC)明显低于外消旋IBU和R-IBU。温榆河流域环境监测结果显示,流域内IBU污染普遍存在,检出率为96.8% %,最大浓度为431.7 ng/L,地表水和污水处理厂出水以S-IBU为主,对映体分数为0.57 ~ 1.0。生态风险评价表明,IBU对水生生态系统构成中度至重度风险,93.5% %的站点超过PNEC。这些发现表明,仅使用外消旋IBU的传统风险评估大大低估了生态危害。这突出了手性化学品风险管理中对映选择性毒性评估和监测的必要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Isomer-specific ecotoxicity and occurrence of ibuprofen: Underestimated risks in aquatic ecosystems.

Ibuprofen (IBU) is used as a racemic mixture despite enantiomeric pharmacological differences. However, its stereoselectivity in aquatic ecosystems remains inadequately characterized, leading to potential environmental risk uncertainties. This study presents a comprehensive, integrated, multi-tiered evaluation of the enantioselective ecotoxicity, environmental fate, and ecological risk of IBU in aquatic environments. Chronic toxicity tests with D. magna and recombinant yeast nuclear receptor assays demonstrated significant enantio-selective effects, with S-IBU exhibiting as much as 8-fold greater toxic potency than R-IBU at environmentally relevant concentrations. Using chiral-specific toxicity data from our experiments and the literature, the predicted no-effect concentration (PNEC) for S-IBU was significantly less than those for racemic IBU and R-IBU. Environmental monitoring across the Wenyu River basin revealed prevalent IBU contamination with a detection rate of 96.8 % and maximum concentration of 431.7 ng/L, with predominance of S-IBU with an enantiomeric fraction of 0.57-1.0 in surface waters and wastewater treatment plant effluents. Ecological risk assessment indicated that IBU posed moderate to great risks to aquatic ecosystems, with 93.5 % of sites exceeding PNEC. These findings demonstrate that conventional risk assessments using only racemic IBU substantially underestimate ecological hazards. This highlights the necessity for enantioselective toxicity assessment and monitoring in chiral chemicals risk management.

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