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通过饮食暴露研究斑马鱼对 TiO2 纳米颗粒的生物积累和消除:使用单颗粒 ICP-MS 进行的粒径和数浓度分辨分析。

Bioaccumulation and depuration of TiO nanoparticles by zebrafish through dietary exposure: Size- and number concentration-resolved analysis using single-particle ICP-MS.

机构信息

Department of Environmental Engineering, National Cheng Kung University, Tainan City 70101, Taiwan.

Department of Environmental and Occupational Health, College of Medicine, National Cheng Kung University, Tainan City 70101, Taiwan.

出版信息

J Hazard Mater. 2022 Mar 15;426:127801. doi: 10.1016/j.jhazmat.2021.127801. Epub 2021 Nov 21.

Abstract

The bioaccumulation and depuration of TiO nanoparticles (TiONPs) by zebrafish via the dietary exposure following the OECD Test Guideline 305 (OECD TG305) was evaluated using particle size- and number concentration-resolved analysis based on single-particle ICP-MS (spICP-MS). We found that using enzymatic digestion without HO or excessive heating can recover 84.0 ± 4.0% and 94.5 ± 3.5% of TiONP mass and number concentrations from fish tissue, respectively, without altering the size distribution of parent TiONPs. OECD TG305 can allow for the evaluation of bioaccumulation and depuration of TiONPs by fish based on the particle mass and number dose metrics. The toxicokinetic modeling can reasonably describe the mass- and number-based measurement data with the derived absorption efficiency α at ~0.2, depuration rate at ~0.5 d, and kinetic biomagnification factor (BMF) at ~0.007 comparable with available data. The mass concentration- and number concentration-based bioaccumulation metrics including body burdens are correlated for TiONPs that remained nano-sized in vivo and exhibited marginal physicochemical alterations upon uptake by fish. The result indicates that the traditional mass concentration metric may be used to represent the fish bioaccumulation potential for chemically inert NPs like TiO.

摘要

采用基于单颗粒电感耦合等离子体质谱(spICP-MS)的粒径和数浓度分辨分析,评估了通过经口暴露于 OECD 测试指南 305(OECD TG305)的斑马鱼对 TiO 纳米颗粒(TiONPs)的生物累积和消除。我们发现,使用酶消化而不进行 HO 或过度加热,可以分别从鱼类组织中回收 84.0 ± 4.0%和 94.5 ± 3.5%的 TiONP 质量和数浓度,而不会改变母体 TiONPs 的粒径分布。OECD TG305 可以基于颗粒质量和数剂量指标评估鱼类对 TiONPs 的生物累积和消除。毒代动力学模型可以合理地描述基于质量和数的测量数据,得出的吸收效率 α 约为 0.2,消除率约为 0.5d,动力学生物放大因子(BMF)约为 0.007,与现有数据相当。对于体内仍保持纳米尺寸且在被鱼类吸收后表现出微小理化性质变化的 TiONPs,其质量浓度和数浓度的生物累积指标(包括体内负荷)具有相关性。结果表明,传统的质量浓度指标可用于代表 TiO 等化学惰性 NPs 的鱼类生物累积潜力。

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