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发展和评价鱼类中离子型有机化学品的机械性生物浓缩模型。

Development and evaluation of a mechanistic bioconcentration model for ionogenic organic chemicals in fish.

机构信息

Department of Physical & Environmental Sciences, University of Toronto at Scarborough, Toronto, Ontario, Canada.

出版信息

Environ Toxicol Chem. 2013 Jan;32(1):115-28. doi: 10.1002/etc.2020. Epub 2012 Nov 21.

Abstract

A mechanistic mass balance bioconcentration model is developed and parameterized for ionogenic organic chemicals (IOCs) in fish and evaluated against a compilation of empirical bioconcentration factors (BCFs). The model is subsequently applied to a set of perfluoroalkyl acids. Key aspects of model development include revised methods to estimate the chemical absorption efficiency of IOCs at the respiratory surface (E(W) ) and the use of distribution ratios to characterize the overall sorption capacity of the organism. Membrane-water distribution ratios (D(MW) ) are used to characterize sorption to phospholipids instead of only considering the octanol-water distribution ratio (D(OW) ). Modeled BCFs are well correlated with the observations (e.g., r(2)  = 0.68 and 0.75 for organic acids and bases, respectively) and accurate to within a factor of three on average. Model prediction errors appear to be largely the result of uncertainties in the biotransformation rate constant (k(M) ) estimates and the generic approaches for estimating sorption capacity (e.g., D(MW) ). Model performance for the set of perfluoroalkyl acids considered is highly dependent on the input parameters describing hydrophobicity (i.e., log K(OW) of the neutral form). The model applications broadly support the hypothesis that phospholipids contribute substantially to the sorption capacity of fish, particularly for compounds that exhibit a high degree of ionization at biologically relevant pH. Additional empirical data on biotransformation and sorption to phospholipids and subsequent incorporation into property estimation approaches (e.g., k(M) , D(MW) ) are priorities with respect to improving model performance.

摘要

建立并参数化了用于鱼类中离子型有机化学品(IOCs)的机制物质平衡生物浓缩模型,并将其与经验生物浓缩因子(BCF)的汇编进行了评估。该模型随后应用于一组全氟烷基酸。模型开发的关键方面包括改进的方法来估计 IOC 在呼吸表面的化学吸收效率(E(W))和使用分配比来描述生物体的整体吸附能力。膜-水分配比(D(MW))用于描述与磷脂的吸附,而不仅仅考虑辛醇-水分配比(D(OW))。模型化的 BCF 与观察值高度相关(例如,有机酸和碱基的 r(2)分别为 0.68 和 0.75),平均误差在三倍以内。模型预测误差似乎主要是由于生物转化速率常数(k(M))估计的不确定性和用于估计吸附能力的通用方法(例如,D(MW))所致。所考虑的全氟烷基酸组的模型性能高度依赖于描述疏水性的输入参数(即,中性形式的 log K(OW))。模型应用广泛支持了这样一种假设,即磷脂对鱼类的吸附能力有很大贡献,特别是对于在生物学相关 pH 下表现出高度电离的化合物。关于改进模型性能,生物转化和与磷脂的吸附以及随后纳入性质估算方法(例如 k(M)、D(MW))的更多经验数据是优先事项。

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